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Publication : Fasting protects mice from lethal DNA damage by promoting small intestinal epithelial stem cell survival.

First Author  Tinkum KL Year  2015
Journal  Proc Natl Acad Sci U S A Volume  112
Issue  51 Pages  E7148-54
PubMed ID  26644583 Mgi Jnum  J:228306
Mgi Id  MGI:5706674 Doi  10.1073/pnas.1509249112
Citation  Tinkum KL, et al. (2015) Fasting protects mice from lethal DNA damage by promoting small intestinal epithelial stem cell survival. Proc Natl Acad Sci U S A 112(51):E7148-54
abstractText  Short-term fasting protects mice from lethal doses of chemotherapy through undetermined mechanisms. Herein, we demonstrate that fasting preserves small intestinal (SI) architecture by maintaining SI stem cell viability and SI barrier function following exposure to high-dose etoposide. Nearly all SI stem cells were lost in fed mice, whereas fasting promoted sufficient SI stem cell survival to preserve SI integrity after etoposide treatment. Lineage tracing demonstrated that multiple SI stem cell populations, marked by Lgr5, Bmi1, or HopX expression, contributed to fasting-induced survival. DNA repair and DNA damage response genes were elevated in SI stem/progenitor cells of fasted etoposide-treated mice, which importantly correlated with faster resolution of DNA double-strand breaks and less apoptosis. Thus, fasting preserved SI stem cell viability as well as SI architecture and barrier function suggesting that fasting may reduce host toxicity in patients undergoing dose intensive chemotherapy.
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