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International Journal for Parasitology. Drugs and Drug Resistance|May 17, 2016
Supplementation of host response by targeting nitric oxide to the macrophage cytosol is efficacious in the hamster model of visceral leishmaniasis and adds to efficacy of amphotericin BSanketkumar Pandya, Rahul Kumar Verma, Prashant Khare, et al.European Journal of Medicinal Chemistry|May 25, 2018
Synthesis and evaluation of novel triazolyl quinoline derivatives as potential antileishmanial agentsAkanksha Upadhyay, Pragati Kushwaha, Sampa Gupta, et al.European Journal of Medicinal Chemistry|December 24, 2022
Design and synthesis of novel halogen rich salicylanilides as potential antileishmanial agentsJhajan Lal, Karthik Ramalingam, Rachana Meena, et al.Bioorganic Chemistry|May 15, 2023
Design and synthesis of N-acyl and dimeric N-Arylpiperazine derivatives as potential antileishmanial agentsShabina B Ansari, Sakshi Kamboj, Karthik Ramalingam, et al.Medchemcomm|August 16, 2018
An insight into tetrahydro-β-carboline-tetrazole hybrids: synthesis and bioevaluation as potent antileishmanial agentsPooja Purohit, Anand Kumar Pandey, Deepti Singh, et al.Antimicrobial Agents and Chemotherapy|July 19, 2022
Leishmania donovani Dipeptidylcarboxypeptidase Inhibitor as a Potential Oral Treatment for Visceral LeishmaniasisKarthik Ramalingam, Sonali Gangwar, Deep Chandra Balodi, et al.RSC Medicinal Chemistry|June 26, 2023
Antileishmanial evaluation of triazole-butenolide conjugates: design, synthesis, in vitro screening, SAR and in silico ADME predictionsAlka Raj Pandey, Suriya Pratap Singh, Karthik Ramalingam, et al.European Journal of Medicinal Chemistry|October 14, 2023
Design, synthesis, and biological evaluation of quinoline-piperazine/pyrrolidine derivatives as possible antileishmanial agentsSarita Katiyar, Karthik Ramalingam, Abhishek Kumar, et al.Pageof 5