Publications by authors named "D Rout"

Understanding the binding details of a small-molecule drug to a protein in its partially unfolded state is important for drug delivery as it provides insight into the overall drug-binding ability of the protein, even when the majority of binding pockets in its unfolded state are impaired. The interaction of partially unfolded proteins with drugs remains poorly understood due to a lack of structural information on proteins in their partially unfolded states. Here, we studied the interaction between serum albumin (bovine serum albumin (BSA) as a model system), an abundant protein in blood serum that is an effective carrier for numerous known drugs, and a nonsteroidal anti-inflammatory drug (NSAID) naproxen (NPS) using various spectroscopic and computational methods.

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Understanding the interaction between the drug:carrier complex and protein is essential for the development of a new drug-delivery system. However, the majority of reports are based on an understanding of interactions between the drug and protein. Here, we present our findings on the interaction of the anti-inflammatory drug diflunisal with the drug carrier cyclodextrin (CD) and the protein lysozyme, utilizing steady-state and time-resolved fluorescence spectroscopy.

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Article Synopsis
  • The cellular genome acts as a dynamic blueprint that can be altered due to internal and external stresses, which impacts how cells function.
  • The balance between DNA repair mechanisms and the harmful effects of genotoxins determines the extent of this genomic change, particularly through the formation of DNA adducts that can cause mutations or alter the epigenome.
  • The review discusses the potential of AI-driven modeling to enhance our understanding of DNA adducts, including predictive modeling for adduct formation, identification of new adducts, and predicting their behaviors and effects within the genome.
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The strongly correlated charge density wave (CDW) phase of 1T-TiSe is of interest to verify the claims of a chiral order parameter. Characterization of the symmetries of 1T-TiSe is critical to understand the origin of its intriguing properties. Here we use very low-power, continuous wave laser excitation to probe the symmetries of 1T-TiSe by using the circular photogalvanic effect.

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