Professor of Chemical
Engineering
Fax: (662) 915-7023
Email: cmsadana@olemiss.edu
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EDUCATION
Ph.
D., Chemical Engineering,
M. Chem. E., Chemical Engineering,
B.
Tech., Chemical Engineering, Indian Institute of Technology,
RESEARCH
INTERESTS
Antigen-Antibody
and Analyte-Receptor Binding Kinetics for Biosensors and Cell-Surface
Interactions
Fractal
Analysis of ECGs and EEGs
Applied
Mathematics and Modeling of Biological Systems
Interfacial
Biological Reactions
Protein
Folding and Misfolding- Biomedical Implications and
Onset of Diseases
ACADEMIC
EXPERIENCE
Professor,
Associate Professor,
Adjunct Associate Professor, University of Rhode Island,
1984-1987.
Visiting Associate Professor, Auburn University, 1980-1981.
NON-ACADEMIC
EXPERIENCE
Research
Fellow, Cardiology Division, National Heart, Lung, and Blood
Institute,
NIH,
Research
Fellow, ORISE, Oak Ridge National Laboratory, Oak Ridge, TN, Summer 1994, 1995,
1996, 1997,1998, and 2000.
Distinguished
Fellow, NAVY/ASEE, Naval Research Laboratory,
Senior
Fellow, NAVY/ASEE, Naval Research Laboratory,
Visiting
Research Scientist, E.I. DuPont de Nemours &
Senior Scientific Officer, National Chemical Laboratory, Poona,
India, 1975-1980.
Project Engineer, Enviroengineering,
Inc., Somerville, NJ, 1974-1975.
BOOKS
"Binding and Dissociation Kinetics for Different Biosensor
Applications," Elsevier,
“Fractal
Binding and Dissociation Kinetics for Different Biosensor Applications,”
Elsevier,
"Biosensors: Kinetics of Binding and Dissociation Using
Fractals," Elsevier,
"Engineering Biosensors: Kinetics and Design
Applications," Academic Press,
"Bioseparations of Proteins: Unfolding/Folding And Validations," Academic Press,
"Biocatalysis: Fundamentals of
Enzyme Deactivation Kinetics," Prentice Hall,
HONORS
2004
Senior Faculty Research Award
Listed
in American Men and Women of Science
Who's
Who in the South and Southwest
Who's
Who Among Asian Americans
International
Directory of Distinguished Leadership
Most
Admired Men and Women of the Year
Who's
Who in the World
Who's
Who in Science and Engineering
Who's
Who in American Education
Dictionary
of International Biography
Men
of Achievement
International
Who's Who of Contemporary Achievement
International
Cultural Diploma of Honor
Who's
Who in Finance and Industry
1996
Man of the Year
Five
Hundred Leaders of Influence
Research
Fellow, American Biographical Institute
Five
Thousand Personalities of the World
CONSULTANT
First
Chemical Corporation,
National
Institutes of Health (NIH),
NBID
Associates,
PUBLICATIONS
1.
Doke, A.M., Mathur, S.K., and
Sadana, A., “Identification of Hair Cycle-Associated
Genes from Time-Course Gene Expression Profile Using Fractal Analysis,” International
Journal of Bioinformatics Research and its Applications, (in press).
2.
Doke, A.M. and Sadana, A.,
“Fractal Analysis of Heart-Related Compounds,” Journal of Receptors and
Signal Transduction, (in press).
3.
Sadana, A. and Vo-Dinh, T., “A
Fractal Analysis of Glucose and Related Analytes,” Nanotechnology
in Biology and Medicine, ed. Vo-Dinh, T., CRC Press,
4.
Doke, A.M., and Sadana, A.
,”A Fractal Analysis of the Binding Kinetics of the Heat Shock Protein
Chaperone DnaK on a SPR Biosensor Surface,” Encyclopedia
of Sensors, Eds., M.V. Pishko and C.A. Grimes,
American Scientific Publishers, California (in press)
5.
Sadana, A., Vo-Dinh, T., and
6.
Doke, A. M., and Sadana, A.,
“Detection of Glucose and Related Analytes by
Biosensors: A Fractal Analysis,” Journal of Receptors and Signal
Transduction, 26(1-2), 35-59 (2006).
7.
Doke, A. M., and Sadana, A.,
“Detection of Glucose and Related Analytes by
Biosensors: A Fractal Analysis,” Biotechnology Progress, 22(1), 14-23
(2006).
8.
Sadana, A., Butala, H., Vo-Dinh, T., and Ramakrishnan, A.,
“Biosensor Surface Phenomenon,” Encyclopedia of Surface and Colloid Science,
Ed. P. Somasundaran, Taylor and Francis, New York,
NY, 2005, pp. 1-14.
9.
Ramakrishnan, A., Tan, Y., and Sadana,
A., “A Kinetic Study Of Analyte-Receptor Binding And
Dissociation For Surface Plasmon Resonance Biosensor
Applications,” IEEE Sensors Journal, 5(3), 356-364 (2005).
10.
Morris,
B. A., and Sadana, A., “A fractal analysis for the
binding of riboflavin binding protein to riboflavin immobilized on a SPR
biosensor,” Sensors and Actuators, B: Chemical, B106(2),
498-505 (2005).
11.
Morris,
B. A., and Sadana, A., “A fractal analysis of
pathogen detection by biosensors,” Biophysical Chemistry, 113(1), 67-81
(2005).
12.
Jeyshekhar,
N., Sadana, A., and Vo-Dinh,
T., “Pathological Implications of Misfolded
Proteins: Amyloidoses,” Protein
Nanotechnology Protocols, Methods in Molecular Biology, ed. Vo-Dinh, T., The Humana Press, Inc., Totowa, New Jersey, 2005; 300(Protein
Nanotechnology), pp. 416-435.
13.
Butala, H.D., Tan, Y., and Sadana,
A., “Analyte-Receptor Binding On
SPR Biosensors: A Fractal Analysis of Cre-loxP
Interactions and the Influence of Cl, O, and S, on
Drug/Liposome Interactions,” Analytical Biochemistry, 332(1), 10-22
(2004).
14.
Butala, H.D., and Sadana, A.,
“Binding and Dissociation Kinetics Using Fractals: an Analysis of Electrostatic
Effects and Randomly Coupled and Oriented Coupled Receptors on Biosensor
Surfaces” Biosensors & Bioelectronics, 19(8), 933-944 (2004).
15.
Butala, H.D., and Sadana, A.,
“Fractal Analysis of Binding Kinetics on Biosensor Surfaces,” Encyclopedia
of Nanoscience and Nanotechnology, Eds., James A.
Schwarz, C. Contescu, and K. Putyera,
Marcel Dekker, New York, NY, 2004; pp.
1191-1202.
16.
Jeyshekhar,N.S., and Sadana, A.,
"Kinetic Versus Thermodynamic Perspectives of Protein Folding Mechanisms
and Drug Therapy," AIChE Annual Meeting,
Conference Proceedings, San Francisco, CA (2003), pp. 20-34, American Institute
of Chemical Engineers (publisher), New York, NY.
17.
Butala, H.D., Ramakrishnan, A.,
and Sadana, A., “A Fractal Analysis of
Analyte-estrogen Receptor Binding and Dissociation Kinetics Using Biosensors:
Environmental and Biomedical Effects,” Biosystems
70, 255-270 (2003).
18.
Butala, H.D., and Sadana, A., “A Fractal Analysis of
Analyte-estrogen Receptor Binding and Dissociation Kinetics Using Biosensors:
Environmental Effects,” Journal of Colloid & Interface Sci. 263, 420-431 (2003).
19.
Sadana, A., “A Fractal Analysis Of Protein To DNA Binding
Kinetics Using Biosensors,” Biosensors & Bioelectronics, 18(8),
985-997 (2003).
20.
Butala, H.D., Ramakrishnan, A.,
and Sadana, A., ‘A Mathematical Analysis Using
Fractals For Binding Interactions Of Estrogen Receptors To Different Ligands On
Biosensor Surfaces,” Sensors & Actuators B, 85, 266-280
(2003).
21.
Ramakrishnan, A., and Sadana,
A., “A Kinetic Study of Analyte-Receptor Binding And
Dissociation Kinetics For Biosensor Applications: A Fractal Analysis For Two
Different DNA Systems,” Biosystems, 66(3),
165-177 (2002).
22.
Butala, H.D., Ramakrishnan, A.,
and Sadana, A., “A Fractal Analysis Of
Analyte-Receptor Binding And Dissociation Kinetics On Microcantilever
Biosensors,” American Institute of Chemical Engineers Sensors Technology
Conference Proceedings, eds., C.C. Liu, H.B. Martin, and J.C. Angus, New
York, NY, pp. 31-39, November 3-8, 2002.
23.
Butala, H.D., Ramakrishnan, A.,
and Sadana, A., “A Kinetic Analysis Of Analyte-Receptor
Binding And Dissociation Using Biosensors For Biomedical Applications, ” American
Institute of Chemical Engineers Sensors Technology Conference Proceedings,
eds., C.C. Liu, H.B. Martin, and J.C. Angus, New York, NY, pp. 93-101, November
3-8, 2002.
24.
Ramakrishnan, A., and Sadana,
A., “A Kinetic Study Of Analyte-Receptor Binding And Dissociation For Biosensor
Applications: A Fractal Analysis For Cholera Toxin And Peptide-Protein
Interactions,” Sensors
& Actuators B, 85, 61-72 (2002).
25.
Ramakrishnan, A. and Sadana,
A., “A Mathematical Analysis Using Fractals And Biosensors For Binding
Interactions Of Nuclear Estrogen Receptors (ER),” Anal. Biochem., 303(1), 78-92 (2002).
26.
English,
M.J. and Sadana, A., “A Fractal Analysis Of
Analyte-Receptor Binding And Dissociation Kinetics In Microcantilever
Biosensors, “ Sensors & Actuators B,
4148, 1 (2002).
27.
Ramakrishnan, A. and Sadana,
A., “Biosensors: An Emerging Tool In Analytical
Research. A Kinetic Analysis Of The Analyte-Receptor Interactions In Biosensors,” in Methods
For Affinity Based Separations For Enzymes And Proteins, M.N. Gupta, ed.,
28.
Sadana,
A. and Ramakrishnan, A., “A Kinetic Study Of
Analyte-Receptor Binding And Dissociation For Surface Plasmon
Resonance Biosensor Applications,” Proceedings IEEE Sensors 2002, Vol.
1, paper 38.1, June 11-14, 2002, Orlando, Florida.
29.
Sadana, A., "A Fractal Analysis Approach For The
Evaluation Of Hybridization Kinetics In Biosensors," Journal of Colloid
& Interface Sci., 234, 9 (2001).
30.
Sadana, A. and Vo-Dinh, T.,
“Biomedical Implications Of Protein Folding And Misfolding,”
Biotechnol. & Appl.
Biochemistry, 33, 7 (2001).
31.
Sadana, A. and Vo-Dinh, T., “A
Kinetic Analysis Using Fractals Of Cellular Analyte-Receptor Binding And
Dissociation,“ Biotechnol.
& Appl. Biochem., 33,
17 (2001).
32.
Sadana, A., ”A Kinetic Study Of
Analyte-Receptor Binding And Dissociation, And Dissociation Alone, For
Biosensor Applications: A Fractal Analysis,” Anal. Biochem., 291(1), 34 (2001).
33.
Ramakrishnan, A. and Sadana,
A., "A Single Fractal Analysis Of Cellular Analyte-Receptor Binding
Kinetics Utilizing Biosensors,” Biosystems,
59(1), 35 (2001).
34.
Ramakrishnan, A. and Sadana,
A., “A Fractal Analysis For Cellular Analyte-Receptor
Binding Kinetics: Biosensor Applications,” Automedica,
20 (3-4), 313 (2001).
35.
Sadana, A., “A Fractal Analysis For Analyte-Receptor
Binding Kinetics For Biosensor Applications,” Biotechnology & Genetic
Engineering Reviews, Vol. 18, Chapter 2, S.E. Harding, Ed., Intercept Limited,
Andover, Hampshire, U.K., pp. 29-48 (2001).
36.
Ramakrishnan, A. and Sadana,
A., “Analyte-Receptor Binding And Dissociation
Kinetics For Biosensor Applications: A Fractal Analysis,” Biosensors & Bioelectron., 15 (11-12), 651 (2000).
37.
Sadana, A., Ramakrishnan, A.,
and Vontel, S., "An Evaluation Of Hybridization
Kinetics In Biosensors Using A Single Fractal Analysis," Biotechnology
& Applied Biochemistry, 31(2), 161 (2000).
38.
Sadana, A. and Ramakrishnan,
A., "A Predictive Approach Using Fractal Analysis For Analyte-Receptor
Binding And Dissociation Kinetics For Surface Plasmon
Resonance Biosensor Applications," J. of Colloid & Interface Sci., 229, 628 (2000).
39.
Ramakrishnan, A. and Sadana,
A., “An Evaluation Of Cellular Analyte-Receptor Binding Kinetics Utilizing
Biosensors: A Fractal Analysis,” J. Colloid & Interface Sci., 224, 219 (2000).
40.
Sadana, A., "Analysis Of The Kinetics Of
Antigen-Antibody Interactions And The Fractal Dimension In Biosensors,"
In Biosensors And Their Applications,
eds., Ngo, T.T. and Yang, V.C., Chapter 2, Kluwer
Academic/Plenum Publishing, New York, NY, pp.25-33 (2000).
41.
Ramakrishnan, A. and Sadana,
A., "Economics Of Bioseparation Processes,"
Handbook of Bioseparations, Ahuja, S., ed., Separation Science & Technology Series,
Academic Press, San Diego, CA, Chapter 18, pp. 667-685 (2000).
42.
Price,
R. and Sadana, A., "Engineering Process Control
Of Bioseparation Processes," Handbook of Bioseparations, Ahuja, S.,
ed., Separation Science & Technology Series, Academic Press, San Diego, CA
, Chapter 17, pp. 659-665 (2000).
43.
Sadana, A. "In-vitro and In-vivo
Protein Folding Mechanisms," Methods in Non-Aqueous Enzymology,
Gupta, M.N., ed., Birkhauser-Verlag, Basel,
Switzerland, Chapter 12, pp. 195-211 (2000).
44.
Sadana, A. and Ramakrishnan, A.
"Analyte-Receptor Binding Kinetics For Different
Types Of Biosensors. A Fractal
Analysis," Appl. Biochem.
& Biotechnol., 81(3),161 (1999).
45.
Sadana, A., "A Single- And A Dual-Fractal Analysis
Of Antigen-Antibody Binding Kinetics For Different Biosensor Applications, " Biosensors & Bioelectron.14, 515-531
(1999).
46.
Ramakrishnan, A. and Sadana,
A., "An Analysis Of Analyte-Receptor Binding
Kinetics For Biosensor Applications: Influence Of The Fractal Dimension On The
Surface On The Binding Rate Coefficient," Biotechnology and Appl. Biochem., 29 (1)
45 (1999).
47.
Ramakrishnan, A. and Sadana,
A., "A Single And A Dual-Fractal Analysis Of Analyte-Receptor Binding
Kinetics For Surface Plasmon Resonance Biosensor
Applications, J. Colloid & Interface Sci.,
213, 465-478 (1999).
48.
Ramakrishnan, A. and Sadana,
A., "Analyte-Receptor Binding Kinetics For
Biosensor Applications: A Single-Fractal
And A Dual-Fractal Analysis Of The Influence Of The Fractal Dimension On The
Binding Rate Coefficient," J. Colloid & Interface Sci., 208, 455 (1998).
49.
Sadana, A., "An Analysis Of
Analyte-Receptor Binding Kinetics For Biosensor Applications: Influence Of The
Fractal Dimension On The Binding Rate Coefficient," Biosensors & Bioelectron., 13, 1127 (1998).
50.
Sadana, A., "An Analysis Of Analyte-Receptor Binding
Kinetics For Biosensor Applications:
Influence Of The Fractal Dimension On The Binding Rate Coefficient,"
J. Colloid & Interface Sci., 198,
164 (1998).
51.
Sadana, A., "Analyte-receptor Binding Kinetics For Biosensor Applications: An Analysis Of The Influence Of
The Fractal Dimension On the Binding Rate Coefficient," Applied Biochem. & Biotechnol., 73(2-3), 89 (1998).
52.
Sadana, A. and Vo-Dinh, T.,
"Single- and Dual-Fractal Analysis of Hybridization Binding Kinetics: Biosensor Applications," Biotechnol. Progr.
, 14, 782-790 (1998).
53.
Sutaria, M. and Sadana, A.,
"Dual-Fractal Analysis For Antigen-Antibody
Binding Kinetics For Biosensor Applications, "Biotechnol.
Progr., 13,
464 (1997).
54.
Sadana, A., "Binding Kinetics For Biosensor
Applications Utilizing Fractals: A Categorization," J. Colloid &
Interface Sci., 190, 232 (1997).
55.
Sadana, A. and Sutaria, M.,
"Antigen-Antibody Binding Kinetics For Biosensor
Applications: A Dual-Fractal
Analysis," Appl. Biochem.
& Biotechnol.,
62(2-3), 275 (1997).
56.
Sadana, A. and Vo-Dinh, T.,
"Antibody-Antigen Binding Kinetics. A Model For
Multi-Valency Antibodies For Large Antigen
Systems," Appl. Biochem.
& Biotechnol.,
67(1), 1 (1997).
57.
Sadana, A. and Sutaria, M.,
"Influence Of Diffusion To Fractal Surfaces On The Binding Kinetics For
Antibody-Antigen, Analyte-Receptor, And Analyte-Receptorless
(Protein) Systems, Biophys. Chem., 65,
29 (1997).
58.
Milum, J. and Sadana, A.
"Influence Of Different Parameters On A
Dual-Fractal Analysis For Antigen-Antibody Binding Kinetics For Biosensor
Applications," J. Colloid & Interface Sci.,
187, 128 (1997).
59.
Sadana, A., Alarie, J.P., and
Vo-Dinh, T., "Antigen-Antibody Diffusion-Limited
Binding Kinetics For Biosensors: A Fractal
Analysis," Sensors & Actuators B, 32, 195 (1996).
60.
Sadana, A., and Beelaram, A.,
"Antigen-Antibody Binding Kinetics For Biosensor
Applications: Changes In The Fractal
Dimension (Surface Roughness) And In The Binding Rate Coefficient," Appl. Biochem. & Biotechnol., 60(2),
123 (1996).
61.
Sadana, A. and Beelaram, A.
"Antigen-Antibody Diffusion-Limited Binding Kinetics For
Biosensors: A Fractal Analysis," Appl. Biochem. & Biotechnol., 59,
259 (1996).
62.
Sadana, A. and Chen, Z., "Influence Of Non-Specific Binding On Antigen-Antibody Binding Kinetics
For Biosensor Applications, "Biosens.
& Bioelectron.,
11, 17 (1996).
63.
Sadana, A. and Chen, Z., "A Fractal Analysis Of The
Influence Of Non-Specific Binding On Antigen-Antibody Binding Kinetics For
Biosensor Applications," Biosensors & Bioelectron.,
11, 769 (1996).
64.
Chen,
Z. and Sadana, A., "An Analysis Of
Antigen-Antibody Binding Kinetics For Biosensor Applications Utilized As A
Model System: Influence Of Non-Specific
Binding," Biophys. Chem., 57,
177 (1996).
65.
Sadana, A. and Vo-Dinh, T.,
"Fractal Analysis For The Development Of Chemical Sensors For
Environmental Monitoring, "European Symposium On Optics For
Environmental & Public Safety Proceedings, eds., Vo-Dinh,
T. and Werner, C., 19-23 June, 1995, Munich, FR Germany, SPIE Proceedings
Series, Bellingham, WA (1995), p.480-485.
66.
Sadana, A., Alarie, J.P., and
Vo-Dinh, T., "A β-cyclodextrin
Based Fiber-Optic Chemical Sensor: A
Fractal Analysis," Talanta, 42,
1567 (1995).
67.
Sadana, A., "Protein Refolding And
Inactivation During Bioseparation: Bioprocessing
Implications," Proceedings of 'Recovery of Biological Products VII',
68.
Sadana, A. and Beelaram, A.,
"Antigen-Antibody Diffusion-Limited Binding Kinetics For Biosensors: A Fractal Analysis," Biosensors & Bioelectron., 10, 301 (1995).
69.
Sadana, A., "Antigen-Antibody Binding Kinetics For
Biosensors: The Fractal Dimension And The Binding Rate Coefficient," Biotechnol.
Progr., 11,
50 (1995).
70.
Sadana, A. and Beelaram, A.,
"High Resolution Fractionation Processes:
Chromatographic Techniques," Isolation and Purification, 2,
45 (1994).
71.
Sadana, A. and Beelaram, A.,
"Economics of Bioseparation: Some Case
Studies," Bioseparation, 4, 221
(1994).
72.
Sadana, A. and Beelaram, A.,
"A Fractal Analysis Of Antigen-Antibody Binding
Kinetics: Biosensor Applications," Biotechnology
Progress, 10, 291 (1994).
73.
Sadana, A., "Bioseparation Steps In Processing
Proteins And Other Biological Processes. Part 2," BioPharm,
7(3), 34 (1994).
74.
Sadana, A., "Bioseparation Steps In Processing
Proteins And Other Biological Processes. Part 1,"
BioPharm, 7(2), 26 (1994).
75.
Sadana, A., "Protein Inactivations
During Novel Bioseparation
Techniques," Bioseparation, 4, 39
(1994).
76.
Sadana, A. and Madagula, A.,
"A Fractal Analysis Of The Influence Of A Time-Dependent Adsorption Rate
Coefficient On External Diffusion Limited First-Order Kinetics For The Binding
Of Antigen By Immobilized Antibody," Biosensors and Bioelectronics,
9, 45 (1994).
77.
Sadana, A., "Interfacial Protein Adsorption And Inactivation," Bioseparation,
3, 297 (1993).
78.
Sadana, A. and Madagula, A.
"Binding Kinetics Of Antigen By Immobilized
Antibody: Influence Of Lateral Interactions And Variable Rate Coefficients,"
Biotechnology Progress, 9, 259 (1993).
79.
Sadana, A. and Raju, R.R.,
"Effect Of Chemical Modification On Enzyme Activities And
Stabilities," in Biocatalyst Design For Stability And Specificity,
eds. M.E. Himmel and G. Georgiou, Chapter 24, p. 296,
ACS, Washington, DC (1993).
80.
Sadana, A., "Inactivation Of Proteins And Other
Biological Macromolecules During Chromatographic Methods Of Bioseparation, " Bioseparation, 3,
145 (1992).
81.
Sadana, A. and Sii, D., "
Binding Kinetics Of Antigen By Immobilized Antibody:
Influence Of Reaction Order And External Diffusional Limitations," Biosensors
and Bioelectronics, 7, 559 (1992).
82.
Sadana, A., "Protein Adsorption and Inactivation on
Surfaces. Influence of Heterogeneities," Chem. Rev., 92,
1799 (1992).
83.
Sadana, A., "Models Of Enzyme Deactivation," in
Thermostability of Enzymes, ed. M.N.
Gupta, Chapter 4, pp. 84-93, Narosa, New Delhi, 1992.
84.
Sadana, A. and Sii, D.,
"The Binding Of Antigen To Immobilized Antibody:
Influence Of A Variable Adsorption Rate Coefficient On External Diffusion
Limited Kinetics," J. Colloid Interface Sci.,
151(1), 166 (1992).
85.
Sii, D. and Sadana, A.,
"Adsorption Of Proteins At Interfaces," J. of Microbial Biotechnol., 6(2),
16 (1991).
86.
Sadana, A., "Bioseparations Using Affinity
Techniques," J. Biotech., 19, 83 (1991).
87.
Sadana, A. and Raju, R. R.,
"Protein/Enzyme Inactivation During Different
Chromatographic Methods Of Separation," Bioseparations,
1, 119 (1990).
88.
Malhotra, A. and Sadana, A.,
"Role Of The
89.
Sadana, A. and Malhotra, A.,
"Effect Of Enzyme Microheterogeneity On First-Order Deactivation And Conversion In Enzyme
Reactors," J. Of Microbial Biotechnology, 4(1), 1 (1990).
90.
Sadana, A. and Raju, R.R.,
"Bioseparation And Purification Of Proteins: An
Analysis Of Novel Techniques And Inactivating Influences," Biopharm, 3(5), 53 (1990).
91.
92.
Sadana, A. and Raju,
R.R.," Stability Index For Enzymes Deactivating By Different
Mechanisms," J. Biotechnol., 12,
327 (1989).
93.
Raju, R.R., Shahin, E., and Sadana, A.," A Stability Index For Enzyme
Deactivations," J. Biotechnol., 12,
135 (1989).
94.
Chitnis, A. and Sadana, A.,
"pH-Dependent Enzyme Deactivation Models," Biotech. Bioengg., 34,
804 (1989).
95.
Malhotra, A. and Sadana, A.,
"Influence Of Diffusion On First-Order Deactivation Of Microheterogeneous
Enzyme Samples," Biotech. Bioengg.,
34(5) 725 (1989).
96.
Sadana, A., "Protein Inactivation During
Downstream Separation, Part II: The Parameters," Int. J. Pharm. Tech. Prod. Manuf. Pharm. Tech. Internat., 1(3),
34 (1989) (invited paper); Biopharm, 2(4),
20 (1989) (invited paper).
97.
Sadana, A., "Protein Inactivation During Downstream Separation,Part I: The
Processes," Int. J. Pharm. Tech. Prod. Manuf. Pharm. Tech. Internat., 1(2), 29 (1989); Biopharm,
2(4)14 (1989) (invited paper).
98.
Sadana, A., "Enzyme Deactivation In Reactors," Biocatalysis, 2, 175 (1989).
99.
Malhotra, A. and Sadana, A.,
"Enzyme Microheterogeneity And
Deactivation," Proceedings Of The International Conference On Advances
In Chemical Engineering,
100.
Sadana, A., "Protease Inactivation During Downstream
Processing," Biotechnology
Research And Applications, Proceedings of CANBIOCON 88, Elsevier,
101.
Sadana, A. and Malhotra, A.,
"Effect Of Enzyme Microheterogeneity On First-Order Deactivation And On Conversion In Enzyme
Reactors," Enzyme Engineering IX Conference Proceedings, N.Y. Acad. of Sci., 542, 312 (1988).
102.
Sadana, A., "Enzyme Inactivations,"
Biotech. Advances, 6, 349 (1988).
103.
Sadana, A. and
104.
Sadana, A. and Malhotra, A.,
"Effect Of Enzyme Microheterogeneity Of Initial
Enzyme States On First-Order Deactivation And On Conversion In Enzyme
Reactors," Proceedings Of The 9th Symposium On Biotechnology For Fuels
And Chemicals, Boulder, CO, ed. C.D. Scott, 17, Applied
Biochemistry and Biotechnology, p. 335 (1988).
105.
Sadana, A., "Assessing Disguised Kinetics In Enzyme Deactivations," Trends In Biotechnology,
6(5), 84 (1988).
106.
Sadana, A., and Henley, J.P. "Influence Of pH On
Enzyme Stabilization. An Analysis Using A Series-Type Mechanism," Journal
Of Biotech., 7, 95 (1988).
107.
Sadana, A., "Enzyme Folding/Unfolding," Journal
Of Biotech., 6, 107 (1987).
108.
Malhotra, A. and Sadana, A.,
"Single-Step Unimolecular First-Order Enzyme
Deactivation Kinetics," Biotech. Bioengg., 30, 717 (1987).
109.
Malhotra, A. and Sadana, A.,
"Effect Of Activation Energy Microheterogeneity
On First-Order Deactivation," Biotech. Bioengg., 30, 108 (1987).
110.
Henley,
J. P. and Sadana, A., "Influence Of Modifying
Agents On Enzyme Inactivation Studies. An Analysis Using A Series Mechanism And
Hill-Type Equations," Biotech. Advances, 5, 271 (1987).
111.
Sadana, A., and
112.
113.
Sadana, A. and Henley, J.P., "Deactivation-Disguised
Kinetics," J. Biotech., 5, 67 (1987).
114.
Henley,
J.P. and Sadana, A., "On The
Influence Of Severe Internal Diffusional Limitations On The Optimum Temperature
Operations Criterion And Policies In Deactivating Fixed-Bed And Batch
Reactors," Chem. Engg. Commun., 49(4-6),
291 (1987).
115.
Malhotra, A. and Sadana, A.
"Microheterogeneity Of Enzymes And
Deactivation," Biotechnol. Bioengg.,
30, 1041 (1986).
116.
Sadana, A. and Henley, J.P., "Influence Of
Modification On Enzyme Inactivation Kinetics And
Stability," Biotech. Adv., 4, 22 (1986).
117.
Sadana, A. and
118.
119.
Henley,
J.P. and Sadana, A., "Analysis Of The Effect Of
Chemical Modification On The Activity And Stability Of Enzymes," 7th
Symposium On Biotechnology For Fuels And Chemicals, ed. C.D. Scott., J.
Wiley & Sons, p. 477 (1986).
120.
121.
Sadana, A. and Henley, J.P., "Effect Of Chemical
Modification On Enzyme Activities And
Stabilities," Biotech. Bioengg.,
Biotech. Report, 28, 256 (1986).
122.
123.
124.
Sadana, A. and Henley, J.P., "A Mathematical
Analysis Of Aging Influences On Enzyme
Deactivation/Activation Kinetics. Examples Of The
Influence Of Regional Brain Development And Drugs In Rats," Mech. Of
Aging And Development, 30, 201 (1985).
125.
Sadana, A. and
126.
127.
Henley,
J.P. and Sadana, A.," Series-Type Enzyme
Deactivation Kinetics. Influence Of Immobilization,
Chemical Modifiers, And Enzyme Aging,"
128.
Henley,
J.P. and Sadana, A., "An Analysis Of Enzyme
Deactivation By A Series-Type Mechanism," Proceedings Of The IEEE 1984
Frontiers Of Engineering In Health Care Conference, eds. J.L. Semmlow and Welkowitz, Alliance
For Engg. In Medicine And
Biology, Publishers,
129.
Henley,
J.P. and Sadana, A., "Series-Type Enzyme
Deactivations," Cell And Molec.
Biol. Of Plant Stress, UCLA Symposium Series, 2, 64 (1984).
130.
131.
Henley,
J.P. and Sadana, A., "Series-Type Enzyme Deactivations.
Influence Of Intermediate Activity On Deactivation
Kinetics," Enzyme And Microb. Tech., 6(1),
35 (1984).
132.
Henley,
J.P. and Sadana, A., "Influence Of Intermediate
Activity On Series-Type Enzyme Deactivation Kinetics," Proceedings Of
The Fifth Symposium On Biotechnology For Fuels And Chemicals, ed. C.D.
Scott, J. Wiley & Sons, NY, p. 277 (1984).
133.
Henley,
J.P. and Sadana, A., "Influence Of Intermediate
Activity On Series-Type Enzyme Deactivations. Biomedical Applications," Proceedings
Of The Second Southern Biomedical Engineering Conference, ed. William C.
Hall, Pergamon Press, NY, p. 143 (1983).
134.
Sadana, A., "Influence Of Optimum Temperature
Operations Policies On Deactivation And
Reaction," Proceedings Of The IASTED International Symposium: ASM 83-
Applied Simulation And Modeling, San Francisco, Acta
Press,
135.
Sadana, A., "A Deactivation Model Involving A Grace
Period For Immobilized And Soluble Enzymes," Enzyme And Microbial
Technology, 4(1), 44 (1982).
136.
Sadana, A., "The Optimum Temperature Policy For A Deactivating Catalytic Packed-Bed Reactor. An Improved
Method Of Operations," Chem. Engg. Sci., 37(3), 492
(1982).
137.
Patwardhan, V.S. and Sadana,
A., "An Optimum Temperature Policy For A Deactivating Immobilized Enzyme
Fixed-Bed Reactor," Chem. Engg. Commun., 15(1-4),
169 (1982).
138.
Sadana, A., "On A Simple Probabilistic Approach To Enzyme Deactivations," Ind. Engg.
Chem. Fundamentals, 20(4), 336 (1981).
139.
Kulkarni, B.D., Sadana, A., and Ramachandran, P.A., "Analysis Of
Multiple Steady-States Of Complex Biochemical Reactions," J. Appl. Chem. Biotech., 31(9), 546 (1981).
140.
Sadana, A., "A Theoretical Analysis Of The Deactivation Of An Immobilized Enzyme In Multi-Enzyme
Reactions In Fixed- And Fluid-Bed Reactors," J. Appl.
Chem. Biotech., 31(9), 553 (1981).
141.
Sadana, A., "Catalytic Oxidation Of
Maleic Acid In Aqueous Solution," Ind. Engg. Chem. Proc. Des. Develop., 20,
397 (1981).
142.
Sadana, A., "Critical Catalyst Concentration In Liquid-Phase Hydrocarbon Oxidations," Ind. Engg. Chem. Proc. Des. Develop. 20, 397 (1981).
143.
Sadana, A., "A Deactivation Protection Model For
Immobilized And Soluble Enzymes," Enzyme And Microbial Technology, 3,
357 (1981).
144.
Sadana, A., Kulkarni, B.D., and
Ramachandaran, P.A., "Criteria For Multiple Steady-States For Allosteric
Enzyme Systems," Chem. Engg. Commun., 7(6),
389 (1980).
145.
Sadana, A., "The Optimum Temperature Operations
Policy For A Deactivating Moving-Bed Reactor," Proceedings
Of The 4th National Symposium On
146.
Sadana, A., "Deactivation Model For
Immobilized And Soluble Enzymes," Biotechnology Letters, 2(6),
279 (1980).
147.
Sadana, A., "On Critical Catalyst Concentration In Aqueous-Phase Phenol Oxidation," Ind. Engg. Chem. Proc. Des. Develop.,
19(2), 324 (1980).
148.
Sadana, A., "On Optimum Temperature Operations In
Deactivating Fixed-Bed Reactors," Chem. Engg.
Commun., 4(1),
51 (1980).
149.
Sadana, A., "A Generalized Optimum Temperature
Operations Criterion For Deactivating Immobilized Enzyme Batch Reactors," AIChE J., 25(3), 535 (1979).
150.
Sadana, A., "An Analysis Of
the Heterogeneously-Catalyzed Free-Radical Oxidation Of Phenol In Aqueous
Solution," Ind. Engg. Chem. Proc. Des. Develop., 18, 50 (1979).
151.
Sadana, A., "A pH-Dependent Deactivation Model For
Immobilized And Soluble Enzymes," Biotech.
Letters, 1(11), 465 (1979).
152.
Levenspiel, O. and Sadana,
A., "An Optimum Temperature Policy For A
Deactivating Fixed-Bed Reactor. A Reply," Chem. Engg.
Sci., 34, 1177 (1979).
153.
Sadana, A., "Intra-Particle Diffusion Effects In Heterogeneously-Catalyzed Aqueous-Phase Phenol
Oxidation,"
154.
Sadana, A., "Effect Of
Immobilized Enzyme Deactivation In Fixed-, Moving-, And Fluid-Bed Reactors,"
Biotech. Bioengg., 20(6), 781 (1978).
155.
Levenspiel, O. and Sadana,
A., "The Optimum Temperature Policy For A
Deactivating Catalytic Packed-Bed Reactor," Chem. Engg.
Sci., 33(10), 1393 (1978).
156.
Katzer, J.R., Sadana, A., and Ficke, H.H., "Evaluation Of Catalytic Oxidation As A
Wastewater Treatment Technique," J. Water Pollution Control Feder.,
48, 920 (1975).
157.
Sadana, A. and Katzer, J.R.,
"Involvement Of Free Radicals In The
Heterogeneously-Catalyzed Oxidation Of Phenol In Aqueous Solution," J. Catal., 35, 140 (1974).
158.
Sadana, A. and Katzer, J.R.,
"Catalytic Oxidation Of Phenol In Aqueous
Solution," Ind. Engg. Chem. Fundam., 13, 127 (1974).
159.
Sadana, A. and Doraiswami,
L.K., "Effect Of Catalyst Fouling In Fixed-, Moving-, And Fluid-Bed
Reactors," J. Catal., 23, 147
(1971).
160.
Sadana, A. and Doraiswami,
L.K., "A Generalized Effectiveness Factor Plot For
Second-Order Reactions," Chem. Age Of
PAPERS
PRESENTED
1.
Doke, A.M., Morris, B.A., and Sadana,
A., “A Fractal Analysis of Pathogen Detection,” Defense and Security Symposium,
An SPIE Event,
2.
Doke, A.M., and Sadana, A., “Fractal
Binding and Dissociation Kinetics of Heart-Related Compounds on Biosensor
Surfaces,” Defense and Security Symposium, An SPIE
Event,
3.
Doke, A.M., and Sadana, A.,
"Fractal Binding and Dissociation Kinetics of Heart-Related Compounds on
Biosensor Surfaces,” Eleventh Annual Institute of Biological Engineering
Meeting, Tucson, Arizona, March 10-12, 2006.
4.
Doke, A.M., and Sadana, A.,
“Binding Kinetics of Free- and Total-Prostate Specific Antigen by Biosensors
Using Fractal Analysis,” Eleventh Annual Institute of Biological Engineering
Meeting, Tucson, Arizona, March 10-12, 2006.
5.
Sadana, A., and Doke, A.M.,
“Detection of Glucose and Related Analytes by
Biosensors: a Fractal Analysis” Annual AIChE Meeting,
6.
Sadana, A., and Doke, A.M.,
“Fractal Analysis of Heparin-Protein Interaction Studies Occurring on Biosensor
Surfaces” Annual AIChE Meeting,
7.
Sadana, A., and Doke, A.M., “A
Fractal Analysis of Binding and Dissociation Kinetics of Glucose and Related Analytes on Biosensor Surfaces,” Tenth Annual Institute of
Biological Engineering Meeting,
8.
Morris,
B.A., and Sadana, A. “Binding and Dissociation
Kinetics Using Fractals to Analyze Electrostatic Effects and Randomly Coupled
and Oriented Coupled Receptors on Biosensor Surfaces: Implications in
Autoimmune Diseases” 12th International Congress of Immunology and 4th
Annual Conference of FOCIS,
9.
Morris,
B.A., and Sadana, A. “A Kinetic Study of
Analyte-Receptor Binding and Dissociation for Surface Plasmon
Resonance Biosensor Applications”, The 11th
International Conference on Human Antibodies & Hybridomas,
1.
Tan,
Y., Butala, H.D., and Sadana,
A., "Analyte-Receptor Binding On SPR
Biosensors: A Fractal Analysis of Cre-loxP
Interactions and the Influence of Cl, O, and S, on
Drug/Liposome Interactions," Annual AIChE
Meeting,
2.
Tan,
Y., and Sadana, A., “Analyte-Receptor Binding
Kinetics on Microarrays: Environmental Applications”
Annual AIChE Meeting,
3.
Jeyshekhar, N. and Sadana,
A., “Pathological Implications of Misfolded
Proteins-Amyloidosis”, Annual AIChE Meeting,
4.
Jeyshekhar, N. and Sadana,
A., “Kinetic Versus Thermodynamic Perspective of Protein Folding Mechanisms and
Drug Therapy”, Annual AIChE Meeting,
5.
Gir, S., Ramakrishnan, A.,
and Sadana, A. “Binding and Dissociation Kinetics
Using Fractals: an Analysis of Electrostatic Effects and Randomly Coupled and
Oriented Coupled Receptors on Biosensors Surface” Annual AIChE
Meeting,
6.
Ramakrishnan, A., and Sadana,
A. “Evaluation Of Hybridization Kinetics For biosensor
Applications: A Fractal Analysis,”
Annual AIChE Meeting,
7.
Ramakrishnan, A. and Sadana,
A., “A Fractal Analysis Of Analyte-Receptor Binding
And Dissociation Kineics In Microcantilever
Biosensors,” Annual AIChE Meeting,
8.
Ramakrishnan, A., Butala,
H.D., and Sadana, A., “A Kinetic Analysis For Binding
Interactions Of Nuclear Estrogen Receptors Occurring On Biosensor Surfaces,”
Annual AIChE Meeting,
9.
Ramakrishnan, A., Gir, S., and
Sadana, A., “ An Analysis Of
Cell-Ligand And Ligand-Receptor Interactions Occurring In Parallel Using
Biosensors,” Annual AIChE Meeting,
10.
Ramakrishnan, A., Butala,
H.D., and Sadana, A., “A Kinetic Analysis Of
Analyte-Estrogen Receptor Binding And Dissociation Using Biosensors For
Biomedical Applications,” Annual AIChE Meeting,
11.
Ramakrishnan, A. and Sadana,
A., “A Kinetic Study Of Analyte-Receptor Binding And Dissociation For DNA
Biosensor Systems, “ Annual AIChE
Meeting,
12.
Butala, H.D., Ramakrishnan, A.,
and Sadana, A., “A Fractal Analysis Of
Analyte-Estrogen Receptor Binding And Dissociation Kinetics Using Biosensors:
Environmental Effects,”
13.
Ramakrishnan, A., and Sadana,
A., “A Single-Fractal Analysis Of Cellular
Antigen-Antibody Binding Kinetics (Immunokinetics)
Utilizing Biosensors,” Annual AIChE Meeting,
14.
Ramakrishnan, A., and Sadana,
A., “Protein Folding and Misfolding: Biomedical
Implications,” Annual AIChE Meeting,
15.
Ramakrishnan, A., and Sadana,
A., “A Kinetic Study Of Analyte-Receptor Binding And Dissociation For (DNA)
Biosensor Applications,“ Annual AIChE
Meeting,
16.
Ramakrishnan, A., and Sadana,
A., “Evaluation Of Hybridization Kinetics For
Biosensor Applications: A Fractal Analysis,” Annual AIChE
Meeting,
17.
Ramakrishnan, A., and Sadana,
A., “A Kinetic Study Of Binding And Dissociation Of Cholera Toxin And
Peptide-Protein Interactions For Biosensor Applications,“
Annual AIChE Meeting,
18.
Ramakrishnan, A. and Sadana,
A., “A Single and a Dual-Fractal Analysis Of
Analyte-Receptor Binding Kinetics For Surface Plasmon
Resonance Biosensor Applications”, 11th International Conference on Immunology,
19.
Ramakrishnan, A., and Sadana, A.,
“Evaluation of Hybridization Kinetics In Biosensors Using A Single-Fractal
Analysis,“ 11th International Conference on
Immunology,
20.
Ramakrishnan, A. and Sadana,
A., “A Kinetic Analysis Using Fractals Of Analyte-Receptor Binding And
Dissociation For Biosensor Applications,” 11th International Conference on
Immunology,
21.
Sadana, A., Fananapazir, L.,
and Ramakrishnan, A., “Risk Stratification Of Family Members At Risk of Hypertrophic
Cardiomyopathy: A Fractal Analysis,” Inverse Problems
in Engineering Symposium, Texas A & M University, June 14-16, 2001.
22.
Sadana, A. and Ramakrishnan, A., ”Analyte-Receptor (Drug-Receptor) Interactions Utilizing
Biosensors,” Annual AIChE meeting,
23.
Sadana, A. and Ramakrishnan,
A., “A Fractal Analysis for Evaluating Hybridization Kinetics in Biosensors,”
Annual AIChE meeting,
24.
Sadana, A. and Ramakrishnan,
A., “A Biomedical Diagnosis Predictive Approach Using Fractal Analysis: Study
of Cardiac Recordings,“ Annual AIChE
meeting,
25.
Sadana, A. and Ramakrishnan,
A., “A Fractal Analysis for Analyte-Receptor Binding and Dissociation Kinetics
for Surface Plasmon Resonance Biosensor
Applications,” Annual AIChE meeting,
26.
Sadana, A. and Ramakrishnan,
A., “Analysis of Cellular Analyte-Receptor Interactions for Biosensor
Applications: A Fractal Approach,“ Annual AIChE meeting,
27.
Sadana, A. and Ramakrishnan,
A., “Analyte-Receptor Binding and Dissociation Kinetics for Biosensor and
Biomedical Applications,“ Annual AIChE
meeting,
28.
Sadana, A. and Ramakrishnan,
A., "A Fractal Analysis For Cellular Analyte-Receptor Binding Kinetics
Utilizing Biosensors," Annual AIChE Meeting,
29.
Sadana, A. and Ramakrishnan,
A., "A Fractal Analysis Of Analyte-Receptor
Binding Kinetics For Surface Plasmon Resonance
Biosensor Applications," Annual AIChE Meeting,
30.
Sadana, A. and Vo-Dinh, T.,
"A Fractal Analysis Of Hybridization Kinetics In
Biosensors," Annual AIChE Meeting,
31.
Sadana, A. and Ramakrishnan,
A., "An Evaluation Of Cellular Analyte-Receptor Binding Kinetics Utilizing
Biosensors: A Fractal Analysis,"
Annual AIChE Meeting,
32.
Sadana, A. and Vo-Dinh, T.,
"Evaluation Of The Hybridization Kinetics In Biosensors Using
Fractals," Annual AIChE Meeting,
33.
Sadana, A., "Importance Of The Medium For In-Vitro
and In-Vivo Protein Folding Mechanisms," Annual AIChE
Meeting,
34.
Sadana, A., "Adsorption And
Inactivation Of Proteins During Bioseparation,"
National Seminar on Bioprocessing And Recombinant
Technology, Central Drug Research Institute,
35.
Sadana, A., "An Analysis Of
Analyte-Receptor Binding Kinetics For Biosensor Applications: Influence Of The Fractal Dimension On The
Binding Rate Coefficient," National Seminar on Bioprocessing
And Recombinant Technology, Central Drug Research Institute,
36.
Sadana, A., "A Categorization Of
Antigen-Antibody Binding Kinetics At Solid-Liquid Interfaces. Applications Of Fractals To Biosensors," Annual AIChE
Meeting,
37.
Sadana, A., "Antigen-Antibody Binding Kinetics At
Solid-Liquid
Interfaces: A
Categorization For Biosensor Applications Using Fractals," Annual AIChE Meeting,
38.
Sadana, A. and Milum, J., "Influence
Of Different Parameters On A Dual-Fractal Analysis For
Antigen-Antibody Binding Kinetics For Biosensor Applications," Annual AIChE Meeting,
39.
Sadana, A., "A Categorizaton
Of Antigen-Antibody Binding Kinetics At Solid-Liquid
Interfaces: Applications Of Fractals To
Biosensors," Transport at Interfaces Symposium, Annual AIChE
Meeting,
40.
Sadana, A., "Binding Kinetics For Biosensor
Applications Utilizing Fractals: A
Categorization," Topical Conference on Separation Science &
Technologies, Annual AIChE Meeting,
41.
Sadana, A. and Sutaria, M.,
"Influence Of Diffusion To Fractal Surfaces On
The Binding Kinetics For Antibody-Antigen, Analyte-Receptor, And Analyte-Receptorless (Protein) Systems," Annual AIChE Meeting,
42.
Sadana, A. and Chen, Z., "A Fractal Analysis Of The
Influence Of Non-Specific Binding On Antigen-Antibody Binding Kinetics For
Biosensor Applications," Annual AIChE Meeting,
43.
Sadana, A., "High-Resolution Fractionation
Processes: Chromatographic Techniques," Annual AIChE
Meeting,
44.
Sadana, A., "Antigen-Antibody Binding Kinetics For Biosensors: Changes In The Fractal Dimension (Surface
Roughness) And In The Binding Rate Coefficient," Annual AIChE Meeting,
45.
Sadana, A., "Antigen-Antibody Binding Kinetics For Biosensors: The
Fractal Dimension And The Binding Rate Coefficient," Annual AIChE Meeting,
46.
Sadana, A. and Chen, Z., "Influence Of Non-Specific
Binding On Antigen-Antibody Binding Kinetics For Fiber-Optic Biosensor
Applications," Annual AIChE Meeting,
47.
Sadana, A. and Chen, Z., "A Fractal Analysis Of The
Influence Of Non-Specific Binding On Antigen-Antibody Binding Kinetics For
Fiber-Optic Biosensor Applications," Annual AIChE
Meeting,
48.
Sadana, A. and Beelaram, A.,
"Antigen-Antibody Diffusion-Limited Binding Kinetics For
Biosensors: A Fractal Analysis,"
Annual AIChE Meeting,
49.
Sadana, A., "High-Resolution Fractionation
Processes," Annual AIChE Meeting,
50.
Sadana, A., Alarie, J.P., and
Vo-Dinh, T., "Fractal Analysis For The Development Of Chemical Sensors For Environmental
Monitoring," European Symposium on Optics For Environmental And Public
Safety,"
51.
Sadana, A. and Beela Ram, A.,
"Antigen-Antibody Binding Kinetics For Biosensor
Applications: A Fractal And Engineering
Analysis," Annual AIChE Meeting,
52.
Sadana, A. and Beela Ram, A.,
"Antigen-Antibody Binding Kinetics For Biosensor
Applications. An Analysis Using The Nyikos-Pajkossy Equation For Diffusion Towards Fractal
Surfaces," Annual AIChE Meeting,
53.
Sadana, A., "Protein Refolding Strategies,"
Annual AIChE Meeting,
54.
Sadana, A., "Protein Refolding And
Inactivation During Bioseparation: Bioprocessing
Implications," Recovery of Biological Products VII,
55.
Sadana, A. and Beela Ram, A.,
"Antigen-Antibody Binding Kinetics For Biosensor Applications: An Analysis Using The Nyikos-Pajkossy
Equation For Diffusion Towards Fractal Surfaces," Biosensors 94,
56.
Sadana, A., "Protein Adsorption And
Inactivation On Surfaces. Influence of Heterogeneities On
Blood Protein Adsorption," Annual AIChE Meeting,
57.
Sadana, A., "Binding Kinetics Of
Antigen By Immobilized Antibody Or Of Antibody By Immobilized Antigen:
Influence Of Lateral Interaction And Variable Rate Coefficients," Annual AIChE Meeting,
58.
Sadana, A., "Protein Adsorption On
Biomaterials," Annual AIChE Meeting,
59.
Sadana, A., "Protein Conformational And Activity Changes During Adsorption. Bioseparation
Implications," Annual AIChE Meeting,
60.
Sadana, A., "A Fractal Analysis Of External
Diffusion Limited First-Order Kinetics For The Binding Of Antigen By
Immobilized Antibody," Annual AIChE Meeting,
61.
Sadana, A., "Protein Adsorption And
Inactivation At Interfaces. Influence Of Heterogeneities," Annual AIChE Meeting,
62.
Sadana, A., "Inactivation Of
Proteins And Other Biological Macromolecules During Chromatographic Methods Of Bioseparation" Annual AIChE
Meeting,
63.
Sadana, A. and Sii, D.,
"Binding Kinetics Of Antigen By Immobilized
Antibody: Influence Of Reaction Order And External Diffusional
Limitations," Annual AIChE Meeting,
64.
Sadana, A., "The Binding Kinetics Of
Antigen By Immobilized Antibody Or Of Antibody By Immobilized Antigen.
Influence Of Lateral Interactions," Annual AIChE Meeting,
65.
Sadana, A. and Sii, D.,
"The Binding Kinetics Of Antigen By Immobilized
Antibody: Influence Of A Variable Rate Coefficient On External Diffusion
Limited Kinetics," Annual AIChE Meeting,
66.
Sadana, A. and Sii, D.,
"Influence Of Diffusional Limitations On The
Binding Kinetics Of Antibody In Solution By Immobilized Antigen" Annual AIChE Meeting,
67.
Sadana, A. and Raju, R.R.,
"Bioseparation And Purification Of Proteins: An
Analysis Of Novel Techniques And Inactivating Influences," Annual AIChE Meeting,
68.
Sadana, A. and Raju, R.R.,
"Protein/Enzyme Inactivation During Different
Chromatographic Methods Of Separation," Annual AIChE
Meeting,
69.
Malhotra, A. and Sadana, A.,
"Role Of The Initial State Distribution On First-Order Deactivation Of Microheterogeneous Enzyme Samples," Annual AIChE Meeting, Chicago, IL, November 11-16, 1990.
70.
Sadana, A., "Protease Inactivation During Downstream Separation," Annual
71.
Sadana, A., "Inactivation Of
Proteins and Enzymes During Bioseparation,"
Annual
72.
Malhotra, A. and Sadana, A.,
"Influence Of Microheterogeneity On Enzyme Deactivation," Annual
73.
Sadana, A., "Proteins/Enzymes Inactivation At
Air-Liquid And Gas-Liquid Interfaces," Annual
74.
Sadana, A., "Protease Inactivation During Downstream
Processing," CANBIOCON 88,
75.
Sadana, A. and Malhotra, A.,
"Effect Of Enzyme Microheterogeneity And Distribution Of Initial Enzyme States On First-Order
Deactivation And Conversion In Enzyme Reactors," 9th Symposium On
Biotechnology For Fuels And Chemicals, Boulder, CO,
76.
Sadana, A. and Henley, J.P., "Effect Of Enzyme Microheterogeneity On First-Order
Deactivation And On Conversion In Enzyme Reactors," Ninth International
Conference On Enzyme Engineering,
77.
Sadana, A., "Effect Of Severe Intra-Particle
Diffusional Limitations On Optimum Temperature Operations Policies In
Deactivating Fixed-Bed Reactors," Annual
78.
Sadana, A. and
79.
Sadana, A. and Henley, J.P., "Influence Of Chemical
Modification On Enzyme Inactivation Kinetics And
Stability," 8th Symposium On Biotechnology For Fuels And Chemicals,
80.
Sadana, A. and Henley, J.P., "Deactivation
Theory," National AIChE Meeting,
81.
Sadana, A. and
82.
Sadana, A. and
83.
Sadana, A. and
84.
Sadana, A. and Henley, J.P., "Analysis Of The Effect
Of Chemical Modification On The Activity And Stability Of Enzymes," 7th
Symposium On Biotechnology For Fuels And Chemicals, Gatlinburg, TN, May 15-18,
1985.
85.
86.
87.
Henley,
J.P. and Sadana, A., "Influence Of External Mass
Transfer Limitations On Optimum Temperature Operations Policies In Deactivating
Fixed-Bed Reactors," National AIChE Meeting,
88.
Henley,
J.P. and Sadana, A., "A Categorization Of Enzyme
Deactivations Using A Series-Type Mechanism," VII International
Biotechnology Symposium,"
89.
Henley,
J.P. and Sadana, A., "Influence Of Intermediate
Activity On Series-Type Enzyme Deactivations. Biomedical Applications,"
Second Southern Biomedical Engineering Conference,
90.
91.
Henley,
J.P. and Sadana, A., "Modeling Of Series-Type
Enzyme Deactivations. Influence Of Precursor
(Intermediate) Activity On Inactivation Kinetics," AIChE
Summer National Meeting, Denver, CO,
92.
Henley,
J.P. and Sadana, A., "Modeling Of Series-Type
Enzyme Deactivations. A Simple Probabilistic Approach," AIChE Summer National Meeting, Denver, CO,
93.
94.
Sadana, A., "On The Influence Of Optimum Temperature
Operations Policies On The Intrinsic Order Of Deactivation And Reaction In
Fixed-Bed And Batch Reactors," IASTED International Symposium On Applied
Simulation And Modeling, ASM 83, San Francisco, CA, May 16-18, 1983.
95.
Sadana, A., "Improved Optimum Temperature Operations
In Deactivating Fixed-Bed Reactors," 1983 AIChE
Spring National Meeting,
96.
Sadana, A., "Simple Probabilistic Approach To Enzyme Deactivations. Effect Of
Enzyme Defects And Aging On Kinetics," Annual AIChE
Meeting,
97.
Sadana, A., "Effect Of
Enzyme Defects And Aging On Enzyme Deactivation Kinetics. A Simple
Probabilistic Approach," AIChE National Meeting,
98.
Sadana, A., "On A Simple Probabilistic Approach To Disguised Kinetics In Enzyme Deactivation," Fourth
Symposium On Biotechnology In Energy Production And Conservation, Gatlinburg,
TN, May 11-14, 1982.
99.
Sadana, A., "Probability Theory Applied to Enzyme
Deactivations," AIChE National Meeting, Orlando, FL, February
28-March 3, 1982.
100.
Sadana, A., "Intra-Particle Diffusion Effects In
Liquid-Phase Hydrocarbon Oxidations," AIChE
National Meeting, Orlando, FL, February 28-March 3, 1982.
101.
Sadana, A., "An Optimum Temperature Policy In
Deactivating Fixed-Bed Reactors," 32nd Annual IIChE
Meeting, Indian Institute Of Technology,
102.
Sadana, A., "On Critical Catalyst Concentration In Liquid-Phase Hydrocarbon Oxidations," 32nd Annual IIChE Meeting, Indian Institute Of Technology,
103.
Sadana, A., "On An Optimum Temperature Operation
Criterion For Deactivating Immobilized Enzyme Fixed-Bed And Batch
Reactors," 31st Annual
104.
Sadana, A., "Intra-Particle Diffusion Effects In
Aqueous-Phase Phenol Oxidation," The 4th National Symposium On Catalysis,
Indian Institute Of Technology,
105.
Sadana, A., "An Optimum Temperature Operations
Policy For A
Deactivating Moving-Bed Reactor," 4th National Symposium On
Catalysis, Indian Institute Of Technology,
106.
Sadana, A., "Multi-Effect Evaporation And Pyrolyzation Of Waste-Water
Residues And Energy Recovery," Conference On "Zero Discharge Of
Wastewater Residues," Sponsored By EPA,
107.
Sadana, A. and Katzer, J.R.,
"Catalytic Oxidation Of Phenol In Aqueous Solution," Fourth Environmental
Engineering And Science Conference, Speed Scientific School,
108.
Ficke, H.H., Katzer, J.R., and
Sadana, A., "An Economic Analysis Of Heterogeneously-Catalyzed Aqueous-Phase Oxidation Of
Phenol," Annual Industrial Wastes Conference,
109.
Sadana, A. and Katzer, J.R.,
"Catalytic Oxidation Of Phenol In Aqueous
Solution," Catalysis Club Of
INVITED
LECTURES