Frontiers in Immunology (Aug 2022)

CRX-527 induced differentiation of HSCs protecting the intestinal epithelium from radiation damage

  • Dongshu Liu,
  • Suhe Dong,
  • Cong Liu,
  • Jicong Du,
  • Sinian Wang,
  • Huijie Yu,
  • Wei Li,
  • Zhongmin Chen,
  • Renjun Peng,
  • Qisheng Jiang,
  • Mengying Zou,
  • Fengsheng Li,
  • Rong Zhang,
  • Rong Zhang

DOI
https://doi.org/10.3389/fimmu.2022.927213
Journal volume & issue
Vol. 13

Abstract

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Recently, Toll-like receptors (TLRs) have been extensively studied in radiation damage, but the inherent defects of high toxicity and low efficacy of most TLR ligands limit their further clinical transformation. CRX-527, as a TLR4 ligand, has rarely been reported to protect against radiation. We demonstrated that CRX-527 was safer than LPS at the same dose in vivo and had almost no toxic effect in vitro. Administration of CRX-527 improved the survival rate of total body irradiation (TBI) to 100% in wild-type mice but not in TLR4-/- mice. After TBI, hematopoietic system damage was significantly alleviated, and the recovery period was accelerated in CRX-527-treated mice. Moreover, CRX-527 induced differentiation of HSCs and the stimulation of CRX-527 significantly increased the proportion and number of LSK cells and promoted their differentiation into macrophages, activating immune defense. Furthermore, we proposed an immune defense role for hematopoietic differentiation in the protection against intestinal radiation damage, and confirmed that macrophages invaded the intestines through peripheral blood to protect them from radiation damage. Meanwhile, CRX-527 maintained intestinal function and homeostasis, promoted the regeneration of intestinal stem cells, and protected intestinal injury from lethal dose irradiation. Furthermore, After the use of mice, we found that CRX-527 had no significant protective effect on the hematopoietic and intestinal systems of irradiated TLR4-/- mice. in conclusion, CRX-527 induced differentiation of HSCs protecting the intestinal epithelium from radiation damage.

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