Robert R. Swezey, PhD

Affiliations: 
Drug Metabolism and Pharmacokinetics SRI, Vita, Maharashtra, India 
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"Robert Swezey"
Bio:

http://www.sri.com/biosciences/SRIInternationalsBiosciencesDivisionPublication-Archive2008.html

Mean distance: 15.39 (cluster 28)
 
SNBCP
Cross-listing: Chemistry Tree

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Publications

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Swezey RR, Epel D. (2012) Electroporation as a Tool to Study Enzyme Activities in Situ Guide to Electroporation and Electrofusion. 347-361
Swezey RR, Epel D. (1998) Caged substrates for measuring enzymatic activity in vivo: photoactivated caged glucose 6-phosphate. Methods in Enzymology. 291: 278-88
Rees BB, Swezey RR, Kibak H, et al. (1996) Regulation of the pentose phosphate pathway at fertilization in sea urchin eggs Invertebrate Reproduction and Development. 30: 123-134
Swezey RR, Epel D. (1995) The in vivo rate of glucose-6-phosphate dehydrogenase activity in sea urchin eggs determined with a photolabile caged substrate. Developmental Biology. 169: 733-44
Swezey RR. (1995) High-performance liquid chromatographic system for separating sugar phosphates and other intermediary metabolites. Journal of Chromatography. B, Biomedical Applications. 669: 171-6
Swezey RR, Epel D. (1992) The use of caged substrates to assess the activity of 6-phosphogluconate dehydrogenase in living sea urchin eggs. Experimental Cell Research. 201: 366-72
Swezey RR, Epel D. (1990) Enzyme activities in bondage? Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. 12: 98-9
Swezey RR, Epel D. (1989) Stable, resealable pores formed in sea urchin eggs by electric discharge (electroporation) permit substrate loading for assay of enzymes in vivo. Cell Regulation. 1: 65-74
Swezey RR, Epel D. (1988) Enzyme stimulation upon fertilization is revealed in electrically permeabilized sea urchin eggs. Proceedings of the National Academy of Sciences of the United States of America. 85: 812-6
Dufresne L, Swezey RR, Epel D. (1987) Kinetics of actin assembly attending fertilization or artificial activation of sea urchin eggs. Experimental Cell Research. 172: 32-42
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