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Misra, N.

Publications and source records attributed to Misra, N..

2 recordsLinked to original sources

Assessing the efficacy of therapeutically promising combination of polymyxin B and triclosan against colistin resistant Klebsiella pneumoniae

Antimicrobial resistance (AMR) is one of the greatest public health challenges of the current time, and it is primarily associated with Gram-negative bacterial infections. Among these infections, Klebsiella pneumoniae is the most notorious bacterial pathogen in the context of AMR dissemination. In this dire circumstance, clinicians explored old regimes such as colistin to treat these multidrug-resistant infections; however, unfortunately, the resistance towards these last-resort drugs is also emerging rapidly. In this study, we examined the occurrence of colistin resistance in K. pneumoniae concerning its mechanism of resistance, chronology, and geographical distribution. We found that resistance towards these last-resort drugs, colistin and polymyxin B, is emerging rapidly, with evolving multiple mechanisms of resistance. While efforts continue to develop new antibacterial drugs, a combination of approved antibacterial drugs may be one of the most suitable strategies to fight against AMR in the current time-ticking situation. In this series, we evaluated the efficacy of a therapeutically viable combination of polymyxin B and triclosan using a set of standard antibacterial assays, used for in vitro preclinical efficacy. We found that the combination is highly effective in colistin-resistant clinical strains of K. pneumoniae, as triclosan sensitizes the pathogen towards polymyxin B. Furthermore, the results of additional complementary experiments, such as time-kill kinetics, biofilm inhibition, frequency of resistance, cell viability, and cytotoxicity assays, show very encouraging results for the feasibility and validation of this combination. Finally, we examined the presence of mutations in field isolates of K. pneumoniae FabI enzyme, as it has been hypothesized previously that triclosan may cause mutation in its binding target, FabI. Interestingly, we could not detect any mutation in the triclosan binding site of FabI in the genome of field isolates. Altogether, this study provides an overview of the current situation on colistin resistance, a promising solution for colistin resistance comprising a combination of two already being used antibacterial ingredients based on in vitro efficacy studies.

microbiology↗

Bacopa monnieri phytochemicals regulate fibroblast cell migration via modulation of focal adhesions

The Bacopa monnieri plant contains a large repertoire of active phytochemicals that have been used extensively in traditional medicine for the treatment of various complex diseases. More recently it has been shown to increase the wound healing rate in rats, though its mechanism of action is largely unknown. Here we investigated the cellular pathways activated by a methanol extract of Bacopa monnieri in human dermal fibroblasts, which play many critical roles in the wound healing program. Gene expression analysis revealed that Bacopa monnieri extract can enhance tissue repair by modulating multiple processes involved in the wound healing program such as migration, proliferation, and angiogenesis. We discovered that Bacopa monnieri extract can increase migration of fibroblasts via modulating the size and number of focal adhesions. Bacopa monnieri-mediated changes in focal adhesions are dependent on 5{beta}1 integrin activation and subsequent phosphorylation of Focal Adhesion Kinase (FAK). Altogether our results suggest that Bacopa monnieri extract could enhance the wound healing rate via modulating fibroblast migration in the wound bed.

cell biology↗