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Biology subjects

Godbole, S. S.

Publications and source records attributed to Godbole, S. S..

2 recordsLinked to original sources

Allosteric regulation of kinase activity in living cells

The dysregulation of protein kinases is associated with multiple diseases due to the kinases involvement in a variety of cell signaling pathways. Manipulating protein kinase function, by controlling the active site, is a promising therapeutic and investigative strategy to mitigate and study diseases. Kinase active sites share structural similarities making it difficult to specifically target one kinase, allosteric control allows specific regulation and study of kinase function without directly targeting the active site. Allosteric sites are distal to the active site but coupled via a dynamic network of inter-atomic interactions between residues in the protein. Establishing an allosteric control over a kinase requires understanding the allosteric wiring of the protein. Computational techniques offer effective and inexpensive mapping of the allosteric sites on a protein. Here, we discuss methods to map and regulate allosteric communications in proteins, and strategies to establish control over kinase functions in live cells and organisms. Protein molecules, or "sensors" are engineered to function as tools to control allosteric activity of the protein as these sensors have high spatiotemporal resolution and help in understanding cell phenotypes after immediate activation or inactivation of a kinase. Traditional methods used to study protein functions, such as knockout, knockdown, or mutation, cannot offer a sufficiently high spatiotemporal resolution. We discuss the modern repertoire of tools to regulate protein kinases as we enter a new era in deciphering cellular signaling and developing novel approaches to treat diseases associated with signal dysregulation.

biophysics↗

Testing the Efficacy of Transungual Drug Delivery System (Nail Lacquer) Containing Terbinafine Against Aspergillus brasiliensis for the Topical Treatment of Onychomycosis.

According to a survey of 42 epidemiological studies, the cases of Non-dermatophyte mould onychomycosis (NDMO) caused by Aspergillus species have been found to increase. The number ranges from <1 to 35% of all cases of onychomycosis in the general population and the number is higher in the diabetic population. Around7.7-100% of cases of NDMO are caused by Aspergillus species. Hence the attempt of investigation to test the efficacy of the drug by transungual drug permeation has been made. The antifungal agent Terbinafine was incorporated in a topical dosage form (Nail lacquer). The formulation is optimized by a drug design matrix of 23 type using Design-Expert(R)software, version 11 (DX11). The antifungal assay was performed using the Kirby Bauer disk diffusion method and other evaluation parameters like Drying time, Viscosity are evaluated. Optimized formulation with the highest desirability was selected out of all the possible formulations which showed the best results with good physicochemical properties and antifungal activity. Thus, it can be concluded that medicated nail lacquers containing Terbinafine can be used as a successful method to treat non-dermatophyte mould onychomycosis (NDMO) caused by Aspergillus species.

microbiology↗