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Ravi Tharakan

Government of the United States of America - National Institutes of Health (NIH)

National Institutes of Health - Intramural Research Program

Bethesda, Maryland

United States

SCHOLARLY PAPERS

2

DOWNLOADS

206

TOTAL CITATIONS

1

Scholarly Papers (2)

1.

Selective Small Molecule Activation of Mannose Receptor CD206 Recalibrates Macrophage Function to Improve Outcomes of Cancer and Inflammatory Diseases

Number of pages: 169 Posted: 09 Sep 2025
Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - Thoracic Surgery Branch, Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Nagoya City University - Graduate School of Medical Sciences, Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - Frederick National Laboratory for Cancer Research, Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - Laboratory of Immune System Biology, Government of the United States of America - Frederick National Laboratory for Cancer Research, Government of the United States of America - Frederick National Laboratory for Cancer Research, Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - Laboratory of Immune System Biology, Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Nagoya City University - Graduate School of Medical Sciences, Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Institutes of Health (NIH), Government of the United States of America - National Cancer Institute and Independent
Downloads 116 (621,896)

Abstract:

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mannose receptor 1 (MRC1, CD206), CD206 small molecule agonist, tumor associated macrophages, innate immune indolence, macrophage epigenome, CD206 glycosylation, retinal fibrosis, non-alcoholic steatohepatitis (NASH)

2.

Analysis of the Skeletal Muscle Proteome Uncovers Alteration in Splicing, Mitochondria, and Immune Factors with Aging

Number of pages: 50 Posted: 07 May 2019
National Institutes of Health - Intramural Research Program, National Institutes of Health - Intramural Research Program, National Institutes of Health - Intramural Research Program, Government of the United States of America - National Institutes of Health (NIH), National Institutes of Health - Intramural Research Program, National Institutes of Health - Intramural Research Program, Johns Hopkins Medical Institute, National Institutes of Health - Intramural Research Program, Government of the United States of America - Laboratory of Genetics and Genomics, National Institutes of Health - Intramural Research Program and Government of the United States of America - Translational Gerontology Branch
Downloads 90 (742,061)
Citation 1

Abstract:

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skeletal muscle, Aging, aging hallmarks, sarcopenia, Energy Metabolism, spliceosome, mitochondria, proteostasis, alternative splicing, immunity, quantitative proteomics