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Invariant Natural Killer T cells coordinate removal of senescent cells.
Arora, Shivani; Thompson, Peter J; Wang, Yao; Bhattacharyya, Aritra; Apostolopoulou, Hara; Hatano, Rachel; Naikawadi, Ram P; Shah, Ajit; Wolters, Paul J; Koliwad, Suneil; Bhattacharya, Mallar; Bhushan, Anil.
Affiliation
  • Arora S; Diabetes Center, University of California San Francisco, San Francisco CA, USA 94143.
  • Thompson PJ; Diabetes Center, University of California San Francisco, San Francisco CA, USA 94143.
  • Wang Y; Diabetes Center, University of California San Francisco, San Francisco CA, USA 94143.
  • Bhattacharyya A; Division of Pulmonary and Critical Care, Department of Medicine, University of California San Francisco, San Francisco CA, USA 94143.
  • Apostolopoulou H; The Sandler Asthma Basic Research Center, University of California San Francisco, San Francisco, CA, USA 94143.
  • Hatano R; Diabetes Center, University of California San Francisco, San Francisco CA, USA 94143.
  • Naikawadi RP; Deciduous Therapeutics, MBC Biolabs, San Francisco, CA, USA 94107.
  • Shah A; Division of Pulmonary and Critical Care, Department of Medicine, University of California San Francisco, San Francisco CA, USA 94143.
  • Wolters PJ; Deciduous Therapeutics, MBC Biolabs, San Francisco, CA, USA 94107.
  • Koliwad S; Division of Pulmonary and Critical Care, Department of Medicine, University of California San Francisco, San Francisco CA, USA 94143.
  • Bhattacharya M; Diabetes Center, University of California San Francisco, San Francisco CA, USA 94143.
  • Bhushan A; Division of Pulmonary and Critical Care, Department of Medicine, University of California San Francisco, San Francisco CA, USA 94143.
Med ; 2(8): 938-950, 2021 08 13.
Article in En | MEDLINE | ID: mdl-34617070
BACKGROUND: The failure of immune surveillance to remove senescent cells drive age-related diseases. Here, we target an endogenous immune surveillance mechanism that can promote elimination of senescent cells and reverse disease progression. METHODS: We identify a class of lipid-activated T cells, invariant natural killer T cells (iNKTs) are involved in the removal of pathologic senescent cells. We use two disease models in which senescent cells accumulate to test whether activation of iNKT cells was sufficient to eliminate senescent cells in vivo. FINDINGS: Senescent preadipocytes accumulate in white adipose tissue of chronic high-fat diet (HFD) fed mice, and activation of iNKT cells with the prototypical glycolipid antigen alpha-galactosylceramide (αGalCer) led to a reduction of these cells with improved glucose control. Similarly, senescent cells accumulate within the lungs of mice injured by inhalational bleomycin, and αGalCer-induced activation of iNKT cells greatly limited this accumulation, decreased the lung fibrosis and improved survival. Furthermore, co-culture experiments showed that the preferential cytotoxic activity of iNKT cells to senescent cells is conserved in human cells. CONCLUSIONS: These results uncover a senolytic capacity of tissue-resident iNKT cells and pave the way for anti-senescence therapies that target these cells and their mechanism of activation.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Natural Killer T-Cells Type of study: Prognostic_studies Limits: Animals Language: En Journal: Med Year: 2021 Document type: Article Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Natural Killer T-Cells Type of study: Prognostic_studies Limits: Animals Language: En Journal: Med Year: 2021 Document type: Article Country of publication: United States