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Bhupender S Chhikara

Explore the profile of Bhupender S Chhikara including associated specialties, affiliations and a list of published articles. Areas
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Articles 28
Citations 221
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Recent Articles
1.
Kumar R, Chhikara B, Zeybekler S, Gupta D, Kaur G, Chhillar M, et al.
Toxicol Res (Camb) . 2023 Nov; 12(5):716-740. PMID: 37915472
Introduction: Apoptosis, necrosis, and cancer necrosis factor (TNF-a) are all impacted by the nanotoxicity of multifunctional stoichiometric cobalt oxide nanoparticles (SCoONPs) at nano-biointerfaces. The creation of multi-functional nanoparticles has had...
2.
Dutta S, Sengupta P, Bagchi S, Chhikara B, Pavlik A, Slama P, et al.
Front Cell Dev Biol . 2023 May; 11:1162015. PMID: 37250900
Confluence of environmental, genetic, and lifestyle variables is responsible for deterioration of human fecundity. Endocrine disruptors or endocrine disrupting chemicals (EDCs) may be found in a variety of foods, water,...
3.
Sengupta P, Dutta S, Chhikara B
EXCLI J . 2023 May; 22:392-394. PMID: 37223081
No abstract available.
4.
Agarwal H, Chhikara B, Ye G, Bhavaraju S, Dixit A, Kumar A, et al.
Molecules . 2022 May; 27(10). PMID: 35630829
A number of 5′-O-fatty acyl derivatives of 3′-fluoro-2′,3′-dideoxythymidine (FLT, 1) were synthesized. These conjugates were evaluated for their potential as topical microbicides with anti-HIV activity against cell-free (X4 and R5),...
5.
Kumar R, Chhikara B, Gulia K, Chhillar M
Nanotheranostics . 2021 Mar; 5(3):288-308. PMID: 33732601
Bio-neuronal led psychiatric abnormalities transpired by the loss of neuronal structure and function (neurodegeneration), pro-inflammatory cytokines, microglial dysfunction, altered neurotransmission, toxicants, serotonin deficiency, kynurenine pathway, and excessively produced neurotoxic substances....
6.
Kumar R, Chhikara B, Gulia K, Chhillar M
Mol Omics . 2020 Nov; 17(1):11-28. PMID: 33135707
Network coordinates of cellular processes (proteostasis, proteolysis, and endocytosis), and molecular chaperones are the key complements in the cell machinery and processes. Specifically, cellular pathways are responsible for the conformational...
7.
Kumar S, Upadhyay C, Bansal M, Grishina M, Chhikara B, Potemkin V, et al.
ACS Omega . 2020 Aug; 5(30):18746-18757. PMID: 32775876
Nucleophilic ring opening reactions of epoxides with aromatic amines are in the forefront of the synthetic organic chemistry research to build new bioactive scaffolds. Here, convenient, green, and highly efficient...
8.
Chhikara B, Ashraf S, Mozaffari S, St Jeans N, Mandal D, Tiwari R, et al.
Molecules . 2020 May; 25(9). PMID: 32370213
1-(α,β-Alkene)-substituted phenylpyrazolopyrimidine derivatives with acetyl and functionalized phenyl groups at α- and β-positions, respectively, were synthesized by the reaction of 3-phenylpyrazolopyrimidine (PhPP) with bromoacetone, followed by a chalcone reaction with...
9.
Agarwal H, Chhikara B, Doncel G, Parang K
Bioorg Med Chem Lett . 2017 Mar; 27(9):1934-1937. PMID: 28351588
A series of 11 unsymmetrical dicarboxylate conjugates of dinucleoside reverse transcriptase inhibitors were synthesized. Three dicarboxylic acids, succinic acid, suberic acid and 1,14-tetradecandioc acid, were diesterified with either 3'-azido-2',3'-dideoxythymidine (AZT),...
10.
Rao V, Tiwari R, Chhikara B, Nasrolahi Shirazi A, Parang K, Kumar A
RSC Adv . 2013 Oct; 3(35):15396-15403. PMID: 24163734
A simple, efficient, and environment friendly protocol for the synthesis of 1,3,5-triarylpyrazole and 1,3,5-triarylpyrazolines in [bimm][PF] ionic liquid mediated by Cu(OTf) is described. The reaction protocol gave 1,3,5-triarylpyrazoles in good...