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Institution

Central Drug Research Institute

FacilityLucknow, Uttar Pradesh, India
About: Central Drug Research Institute is a facility organization based out in Lucknow, Uttar Pradesh, India. It is known for research contribution in the topics: Catalysis & Leishmania donovani. The organization has 4357 authors who have published 7257 publications receiving 143871 citations. The organization is also known as: Central Drug Research Institute, Lucknow & CDRI.


Papers
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Journal ArticleDOI
TL;DR: The results of the present study indicate an important role of the leucine zipper sequence in the cytotoxicity of Mag-mut and demonstrate that its introduction into a non-toxic peptide, without altering the amino acid composition, can render cytot toxicity.
Abstract: Cytotoxicity, a major obstacle in therapeutic application of antimicrobial peptides, is controlled by leucine-zipper-like sequences in melittin and other naturally occurring antimicrobial peptides. Magainin 2 shows significantly lower cytotoxicity than many naturally occurring antimicrobial peptides and lacks this structural element. To investigate the consequences of introducing a leucine zipper sequence in magainin 2, a novel analogue (Mag-mut) was designed by rearranging only the positions of its hydrophobic amino acids to include this structural element. Both magainin 2 and Mag-mut showed appreciable similarities in their secondary structures in the presence of negatively charged lipid vesicles, in localizing and permeabilizing the selected bacteria and exhibiting bactericidal activities. However, Mag-mut bound and localized strongly on to the mammalian cells tested and exhibited significantly higher cytotoxicity than magainin 2. Only Mag-mut, but not magainin 2, permeabilized human red blood cells and zwitterionic lipid vesicles. In contrast with magainin 2, Mag-mut self-assembled in an aqueous environment and bound co-operatively on to zwitterionic lipid vesicles. The peptides formed pores of different sizes on to a selected mammalian cell. The results of the present study indicate an important role of the leucine zipper sequence in the cytotoxicity of Mag-mut and demonstrate that its introduction into a non-toxic peptide, without altering the amino acid composition, can render cytotoxicity.

53 citations

Journal ArticleDOI
TL;DR: This lipoprotein prevents both enzymic and non-enzymic generation of O2- anions as evidenced by inhibition of xanthine oxidase, peroxidase,peroxidation of pyrogallol and phenazine methosulphate-NADH reaction.

53 citations

Journal ArticleDOI
TL;DR: Treatment with guggulsterone and its both isomers at the dose of 50 mg/kg po.
Abstract: Guggulsterone, a mixture of cis (E) and trans (Z) isomers (7∶3 w/w) was synthesized from 16-DPA. The isomers were separated by column chromatography and evaluated for cardioprotective and antioxidant activities. Myocardial necrosis induced by isoproterenol in rats caused marked increase in serum creatine phosphokinase and glutamate pyruvate transaminase. Simultaneously in ischemic heart, phospholipase, xanthine oxidase and lipid peroxides were enhanced following depletion of glycogen, phospholipids and cholesterol. Treatment with guggulsterone and its both isomers at the dose of 50 mg/kg po., significantly protected cardiac damage as assessed by the reversal of blood and heart biochemical parameters in ischemic rats. The cardioprotective activity of guggulsterone and of both the isomers were compared with that of gemfibrozil at the same doses. Guggulsterone and both the isomers at tested concentrations (5-20mM) inhibited oxidative degradation of lipids in human low-density lipoprotein and rat liver microsomes induced by metal ionsin vitro. The drug counteracted against the generation of superoxide anions (O(2)) and hydroxyl radicals (OH(-)) in non-enzymic test systems. It is suggested that cardioprotective and antioxidant activities of synthetic guggulsterone and guggulsterone obtained from gum resinCommiphora mukul that contains isomers E & Z in the ratio of 46∶54w/w are the same.

53 citations

Journal ArticleDOI
TL;DR: Conclusively, Cs-PF-AmB-M could be a viable alternative for the current immuno and chemotherapy of visceral leishmaniasis (VL) and was preferentially localized in macrophage harboring tissue instead of kidney, thereby circumventing the characteristic nephrotoxicity.

53 citations


Authors

Showing all 4385 results

NameH-indexPapersCitations
Sanjay Kumar120205282620
John A. Katzenellenbogen9569136132
Brajesh K. Singh8340124101
Gaurav Sharma82124431482
Sudhir Kumar82524216349
Pramod K. Srivastava7939027330
Mohan K. Raizada7547321452
Syed F. Ali7144618669
Ravi Shankar6667219326
Ramesh Chandra6662016293
Manoj Kumar6540816838
Manish Kumar61142521762
Anil Kumar Saxena5831010107
Sanjay Krishna5662413731
Naibedya Chattopadhyay562429795
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20233
202256
2021307
2020232
2019246
2018289