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Ahmed, S. S.

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

2 recordsLinked to original sources

Replication of MERS and SARS coronaviruses in bat cells offers insights to their ancestral origins

Previous findings of Middle East Respiratory Syndrome coronavirus (MERS-CoV)-related viruses in bats, and the ability of Tylonycteris-BatCoV HKU4 spike protein to utilize MERS-CoV receptor, human dipeptidyl peptidase 4 hDPP4, suggest a bat ancestral origin of MERS-CoV. We developed 12 primary bat cell lines from seven bat species, including Tylonycteris pachypus, Pipistrellus abramus and Rhinolophus sinicus (hosts of Tylonycteris-BatCoV HKU4, Pipistrellus-BatCoV HKU5 and SARS-related-CoV respectively), and tested their susceptibilities to MERS-CoVs, SARS-CoV and human coronavirus 229E (HCoV-229E). Five cell lines, including P. abramus and R. sinicus but not T. pachypus cells, were susceptible to human MERS-CoV EMC/2012. However, three tested camel MERS-CoV strains showed different infectivities, with only two strains capable of infecting three and one cell lines respectively. SARS-CoV can only replicate in R. sinicus cells, while HCoV-229E cannot replicate in any bat cells. Bat dipeptidyl peptidase 4 (DPP4) sequences were closely related to those of human and non-human primates but distinct from dromedary DPP4 sequence. Critical residues for binding to MERS-CoV spike protein were mostly conserved in bat DPP4. DPP4 was expressed in the five bat cells susceptible to MERS-CoV, with significantly higher mRNA expression levels than those in non-susceptible cells (P=0.0174), supporting that DPP4 expression is critical for MERS-CoV infection in bats. However, overexpression of T. pachypus DPP4 failed to confer MERS-CoV susceptibility in T. pachypus cells, suggesting other cellular factors in determining viral replication. The broad cellular tropism of MERS-CoV should prompt further exploration of host diversity of related viruses to identify its ancestral origin.

microbiology

Ameliorative potential of curcumin on cigarette smoke extract induced cognitive impairment in zebrafish

Curcumin is a major phyto-constituent of Curcuma longa. It has been reported that it that it showed various pharmacological actions via anti-oxidant, anti-inflammatory, and immunomodulatory actions. The present study undergoes the therapeutic evaluation of curcumin in cigarette smoke extract (CSE) exposure induced cognitive impairment in zebrafish. Methods: The cognitive impairment was induced by exposure to 25 ml of 200 % CSE; 10 minutes/day, for 7 consecutive days. The pre-treatment of curcumin (10 and 20 mg/kg) and montelukast(20 mg/kg) were exposed in 25 ml drug solution (10 minutes/day for 10 consecutive days). The changes of CSE induced cognitive dysfunction were evaluated by using different test methods such as colour recognition test; partition preference test; horizontal compartment test; and T-Maze tests. Further, the CSE exposure induced changes of biochemical parameters i.e., acetylcholinesterase activity; lipid peroxidation; reduced glutathione; and total protein levels were estimated in the brain of zebrafish. The pre-exposure of curcumin shown to produce the ameliorative effect against CSE induced neurocognitive impairments along with alteration of biochemical changes. Theseresults were comparable to reference control i.e., montelukast pre-treated group. Therefore, the curcumin can be served as newer medicines for immunological reaction associated neurocognitive disorders like Alzheimer and multiple sclerosis due to its potential anti-oxidative; anti-inflammatory; immunomodulatory; and acetylcholinesterase inhibitory actions.\n\nSUMMARYLoss of memory is a major problem in old age population. Curcumin used to treats the various neurological disorders. Curcumin possess the ameliorative potential in toxin induced neurocognitive function.

animal behavior and cognition