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Book Chapter
P. Sengupta, Recent innovations in coronary stents, in Emerging Applications, Perspectives, and Discoveries in Cardiovascular Research, 2017, p. 12.
Journal Article
P. Sengupta, Basu, S., Soni, S., Pandey, A., Roy, B., Oh, M. S., Chin, K. T., Paraskar, A. S., Sarangi, S., Connor, Y., Sabbisetti, V. S., Kopparam, J., Kulkarni, A., Muto, K., Amarasiriwardena, C., Jayawardene, I., Lupoli, N., Dinulescu, D. M., Bonventre, J. V., Mashelkar, R. Anant, and Sengupta, S., Cholesterol-tethered platinum II-based supramolecular nanoparticle increases antitumor efficacy and reduces nephrotoxicity, Proceedings of the National Academy of Sciences of the United States of America, vol. 109, no. 28, pp. 11294-11299, 2012.
A. Nandi, Mallick, A., More, P., Sengupta, P., Ballav, N., and Basu, S., Cisplatin-induced self-assembly of graphene oxide sheets into spherical nanoparticles for damaging sub-cellular DNA, Chemical Communications, vol. 53, no. 8, pp. 1409-1412, 2017.
P. Sengupta, Agrawal, V., and Prasad, B. L. V., Development of a smart scaffold for sequential cancer chemotherapy and tissue engineering, ACS Omega, vol. 5, no. 33, pp. 20724-20733, 2020.
A. Wali, Zhang, Y., Sengupta, P., Higaki, Y., Takahara, A., and Badiger, M. V., Electrospinning of non-ionic cellulose ethers/polyvinyl alcohol nanofibers: characterization and applications, Carbohydrate Polymers, vol. 181, pp. 175-182, 2018.
C. Ghosh, Gupta, N., More, P., Sengupta, P., Mallick, A., Santra, M. Kumar, and Basu, S., Engineering and in vitro evaluation of acid labile cholesterol tethered MG132 nanoparticle fortargeting ubiquitin-proteasome system in cancer, Chemistryselect, vol. 1, no. 16, pp. 5099-5106, 2016.
N. Munot, Kandekar, U., Rikame, C., Patil, A., Sengupta, P., Urooj, S., and Bilal, A., Improved mucoadhesion, permeation and in vitro anticancer potential of synthesized thiolated acacia and karaya gum combination: a systematic study, Molecules, vol. 27, no. 20, p. 6829, 2022.
A. Torris, Nair, S., Mol, K. P. Raji, Sengupta, P., and Badiger, M., Mechanical and microstructural studies in a polysaccharide-acrylate double network hydrogel, Journal of the Mechanical Behavior of Biomedical Materials, vol. 124, p. 104839, 2021.
A. A. Kulkarni, Roy, B., Rao, P. S., Wyant, G. A., Mahmoud, A., Ramachandran, M., Sengupta, P., Goldman, A., Kotamraju, V. Ramana, Basu, S., Mashelkar, R. Anant, Ruoslahti, E., Dinulescu, D. M., and Sengupta, S., Supramolecular nanoparticles that target phosphoinositide-3-kinase overcome insulin resistance and exert pronounced antitumor efficacy, Cancer Research, vol. 73, no. 23, pp. 6987-6997, 2013.
P. Sengupta, Surface modification of polymers for tissue engineering applications: arginine acts as a sticky protein equivalent for viable cell accommodation, ACS Omega, vol. 3, no. 4, pp. 4242–4251, 2018.
I. Chung, Zhou, K., Barrows, C., Banyard, J., Wilson, A., Rummel, N., Mizokami, A., Basu, S., Sengupta, P., Shaikh, B., Sengupta, S., Bielenberg, D. R., and Zetter, B. R., Unbiased phenotype-based screen identifies therapeutic agents selective for metastatic prostate cancer, Frontiers in Oncology, vol. 10, p. 594141, 2021.