Showing results (191-200 of 474) with videos related to
Sort By:
Pageof 48
Chemmedchem|January 18, 2013
Design, synthesis, in vitro MAO-B inhibitory evaluation, and computational studies of some 6-nitrobenzothiazole-derived semicarbazonesRati K P Tripathi, Omprakash Goshain, Senthil Raja AyyannanCurrent Opinion in Structural Biology|April 2, 2017
Network analysis and in silico prediction of protein-protein interactions with applications in drug discoveryYoichi Murakami, Lokesh P Tripathi, Philip Prathipati, et al.The Journal of General and Applied Microbiology|January 12, 2008
Evaluation of Mycobacterium smegmatis as a possible surrogate screen for selecting molecules active against multi-drug resistant Mycobacterium tuberculosisVinita Chaturvedi, Namrata Dwivedi, Rama P Tripathi, et al.Chemosphere|May 9, 2021
Zwitterionic silica nanogel-modified polysulfone nanoporous membranes formed by in-situ method for water treatmentXiaojiao Li, Kanupriya Nayak, Manfred Stamm, et al.Journal of Theoretical Biology|February 28, 2021
Network modeling and inference of peroxisome proliferator-activated receptor pathway in high fat diet-linked obesityHaswanth Vundavilli, Lokesh P Tripathi, Aniruddha Datta, et al.Beilstein Journal of Organic Chemistry|December 7, 2006
An efficient synthesis of tetramic acid derivatives with extended conjugation from L-ascorbic acidBiswajit K Singh, Surendra S Bisht, Rama P TripathiIndian Journal of Pediatrics|September 2, 2008
Etiological profile of stroke and its relation with prothrombotic statesSonia Makhija, Satinder Aneja, R P Tripathi, et al.Chemmedchem|November 24, 2015
Discovery of 3-Hydroxy-3-phenacyloxindole Analogues of Isatin as Potential Monoamine Oxidase InhibitorsRati K P Tripathi, Sairam Krishnamurthy, Senthil R AyyannanJournal of Cell Science|April 23, 2020
Translesion synthesis polymerases contribute to meiotic chromosome segregation and cohesin dynamics in SchizosaccharomycespombeTara L Mastro, Vishnu P Tripathi, Susan L ForsburgOncology Research|January 1, 1994
Inhibition of MDR1 gene expression by antimessenger oligonucleotides lowers multiple drug resistanceA Quattrone, L Papucci, M Morganti, et al.Pageof 48