Advait V. Badkar, Ph.D.

Affiliations: 
Pfizer, Inc., New York, NY, United States 
 2002 Mercer University, Macon, GA, United States 
Area:
Pharmacy, Cell Biology
Website:
https://theconferenceforum.org/conferences/partners-in-drug-delivery/2018-speaking-faculty/advait-badkar-phd/
Google:
"Advait Badkar"
Bio:

https://www.smi-online.co.uk/documentportal/speakerprofile/132498.pdf

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Parents

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Ajay K. Banga grad student 2002 Mercer University
 (Transdermal delivery of Interferon Alpha 2b.)
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Publications

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Badkar AV, Gandhi RB, Davis SP, et al. (2021) Subcutaneous Delivery of High-Dose/Volume Biologics: Current Status and Prospect for Future Advancements. Drug Design, Development and Therapy. 15: 159-170
Collins DS, Sánchez-Félix M, Badkar AV, et al. (2020) Accelerating the development of novel technologies and tools for the subcutaneous delivery of biotherapeutics. Journal of Controlled Release : Official Journal of the Controlled Release Society. 321: 475-482
Singh N, Kalluri H, Herwadkar A, et al. (2012) Transcending the skin barrier to deliver peptides and proteins using active technologies. Critical Reviews in Therapeutic Drug Carrier Systems. 29: 265-98
Katikaneni S, Kasha P, Badkar A, et al. (2011) Iontophoresis of a 13 kDa protein monitored by subcutaneous microdialysis in vivo. Bioanalysis. 3: 2419-26
Badkar A, Wolf A, Bohack L, et al. (2011) Development of biotechnology products in pre-filled syringes: technical considerations and approaches. Aaps Pharmscitech. 12: 564-72
Kolhe P, Badkar A. (2011) Protein and solute distribution in drug substance containers during frozen storage and post-thawing: a tool to understand and define freezing-thawing parameters in biotechnology process development. Biotechnology Progress. 27: 494-504
Li G, Badkar A, Kalluri H, et al. (2010) Microchannels created by sugar and metal microneedles: characterization by microscopy, macromolecular flux and other techniques. Journal of Pharmaceutical Sciences. 99: 1931-41
Katikaneni S, Li G, Badkar A, et al. (2010) Transdermal delivery of a approximately 13 kDa protein--an in vivo comparison of physical enhancement methods. Journal of Drug Targeting. 18: 141-7
Chari R, Jerath K, Badkar AV, et al. (2009) Long- and short-range electrostatic interactions affect the rheology of highly concentrated antibody solutions. Pharmaceutical Research. 26: 2607-18
Katikaneni S, Badkar A, Nema S, et al. (2009) Molecular charge mediated transport of a 13 kD protein across microporated skin. International Journal of Pharmaceutics. 378: 93-100
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