Publications by authors named "Rahul Bagul"

Silicosis is a progressive pneumoconiosis caused by inhalation of crystalline silica dust commonly seen in workers of construction sites, flour mills, and mining. Allergic bronchopulmonary aspergillosis (ABPA) is a hypersensitivity reaction to Aspergillus fumigatus antigens commonly encountered in patients with asthma and cystic fibrosis. We report a case of 60-year-old flour mill worker presented with clinico-radiological features of silicosis; further evaluation was found to have an overlap of ABPA in view of severe atopic symptoms.

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Glycosylated NPs, including liposomes, are known to target various receptors involved in cellular carbohydrate transport, of which the mannoside binding receptors are attracting particular attention for their expression on various immune cells, cancers, and cells involved in maintaining central nervous system (CNS) integrity. As part of our interest in NP drug delivery, mannosylated glycoliposomal delivery systems formed from the self-assembly of amphiphilic neoglycolipids were developed, with a C-alkyl mannopyranoside (ML-C) being identified as a lead compoundcapable of entrapping, protecting, and improving the delivery of structurally diverse payloads. However, ML-C was not without limitations in both the synthesis of the glycolipids, and the physicochemical properties of the resulting glycoliposomes.

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Article Synopsis
  • Over the last 20 years, two dangerous viruses (SARS-CoV-1 and SARS-CoV-2) were discovered to jump from animals to humans, causing serious illness and highlighting the need for new medicines to fight them.
  • Scientists studied a specific part of a bat coronavirus (PLpro) to understand how these viruses work and what makes them different, which could help in creating better treatments.
  • They developed 30 new drug-like compounds that could block the action of PLpro in these viruses and ran tests to see how effective and safe these new medicines might be.
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The preparation of four per--benzyl-d- or l--d- and d- or l--d- heptopyranosyl sulfoxides and the influence of their side-chain conformations on reactivity and stereoselectivity in glycosylation reactions are described. The side-chain conformation in these donors is determined by the relative configuration of its point of attachment to the pyranoside ring and the two flanking centers in agreement with a recent model. In the d- and l--d- glycosyl donors, the d--d- isomer with the more electron-withdrawing , conformation of its side chain was the more equatorially selective isomer.

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