Chanchal Sharma
Daegu University
27 Papers
15 Citations
Chanchal Sharma is an academic researcher from Daegu University. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 8, co-authored 15 publications. Previous affiliations of Chanchal Sharma include Chaudhary Charan Singh University.
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Papers
Management of Mandibular Sub Condylar and Condylar Fractures Using Retromandibular Approach and Assessment of Associated Surgical Complications
TL;DR: Open reduction and internal fixation should be given due consideration in the management of displaced mandibular condylar fractures and is associated with minimal morbidity using retromandibular approach.
Addressing Blood–Brain Barrier Impairment in Alzheimer’s Disease
TL;DR: It is concluded that BBB breakdown could be used as a biomarker to help diagnose cognitive impairment associated with normal aging and neurodegenerative diseases such as AD.
A study of transcriptome in leaf rust infected bread wheat involving seedling resistance gene Lr28
Chanchal Sharma,Gautam Saripalli,Santosh Kumar,Tinku Gautam,Avneesh Kumar,Sushma Rani,Neelu Jain,Pramod Prasad,Saurabh Raghuvanshi,Mukesh K. Jain,J. B. Sharma,Kumble Vinod Prabhu,Pushp Sharma,Harindra Singh Balyan,Prerna Gupta +14 more
TL;DR: High-throughput RNA-Seq analysis was used to gain insights into the role of Lr28 gene in imparting seedling leaf rust resistance in wheat and suggested enrichment of transcripts involved in carbohydrate and amino acid metabolism, oxidative stress and hormone metabolism, in resistant and/or susceptible NILs.
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Garcinol pacifies acrylamide induced cognitive impairments, neuroinflammation and neuronal apoptosis by modulating GSK signaling and activation of pCREB by regulating cathepsin B in the brain of zebrafish larvae.
Chanchal Sharma,Sun Chul Kang +1 more
TL;DR: These findings indicate that GAR rescued from ACR mediated behavioral defects, oxidative injury, neuroinflammation, undesirable APP processing, tau hyper-phosphorylation which in turn found to be CATB dependent.
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Fumonisin B1 actuates oxidative stress-associated colonic damage via apoptosis and autophagy activation in murine model.
TL;DR: Study suggests both physiologically and biochemically, FB1 toxicity to mice colon induced by oxidative stress‐associated apoptosis and autophagy activation.
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