SPAK Deficiency Attenuates Chemotherapy-Induced Intestinal Mucositis

SPAK 缺乏可减轻化疗引起的肠粘膜炎

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作者:Tien-Yu Huang, Sung-Sen Yang, Ching-Len Liao, Ming-Hong Lin, Hsuan-Hwai Lin, Jung-Chun Lin, Peng-Jen Chen, Yu-Lueng Shih, Wei-Kuo Chang, Tsai-Yuan Hsieh

Conclusion

SPAK deficiency attenuated chemotherapy-induced intestinal mucositis by modulating gut permeability and tight junction-associated protein expression and maintaining gut homeostasis in murine small intestinal tissues following gut injury. The expression of SPAK may influence the pathogenesis of chemotherapy-induced intestinal mucositis.

Methods

Using SPAK-knockout (KO) mice, we evaluated the severity of intestinal mucositis induced by 5-fluorouracil (5-FU) by assessing body weight loss, histological changes in the intestinal mucosa, length of villi in the small intestine, pro-inflammatory cytokine levels, proliferative indices, and apoptotic indices. We also evaluated changes in gut permeability and tight junction-associated protein expression. Changes in cell permeability, proliferation, and apoptosis were assessed in SPAK siRNA-transfected 5FU-treated IEC-6 cells.

Objective

We determined the role of SPAK in chemotherapy-induced intestinal mucositis using in vivo and in vitro models.

Results

5-FU-treated SPAK-KO mice exhibited milder intestinal mucositis, reduced pro-inflammatory cytokine expression, increased villus length, good maintenance of proliferative indices of villus cells, decreased apoptotic index of enterocytes, reduced gut permeability, and restoration of tight junction protein expression (vs. 5-FU-treated wild-type mice). Under in vitro conditions, siRNA-mediated SPAK-knockdown in IEC-6 cells decreased cell permeability and maintained homeostasis following 5-FU treatment.

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