Oral konjac glucomannan for prevention of ionizing radiation-induced injury by regulating gut microbiota and increasing short chain fatty acids

阿米福汀 电离辐射 骨髓 肠道菌群 化学 脾脏 细胞凋亡 造血 全身照射 癌症研究 生物化学 医学 干细胞 生物 辐照 免疫学 放射治疗 内科学 细胞生物学 化疗 环磷酰胺 物理 核物理学
作者
Dongdong Liu,B. A. Zhuang,Meng Wei,Tianyu Yuan,Jian Li,Pei Deng,Lina Du,Bochuan Yuan,Yiguang Jin
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:240: 124402-124402 被引量:16
标识
DOI:10.1016/j.ijbiomac.2023.124402
摘要

Ionizing radiation-induced injury commonly happens in radiotherapy, leading to damages of the hematopoietic and gastrointestinal systems. Radioprotective medications are mainly applied in hospitals, although only injections are available and their gut protection is limited. Here, oral konjac glucomannan (KGM), a natural macromolecule and soluble dietary fiber, was used against ionizing radiation-induced injury. The mice were fed with KGM (0.4 g/kg) for 3 days or injected with a clinical medication amifostine before 6.5 Gy γ-ray whole body irradiation (WBI) or 13 Gy whole abdominal irradiation (WAI). In the WBI experiments, KGM improved blood cell recovery and bone marrow cell proliferation in the femur and spleen, though its effect was weaker than or similar to that of amifostine. In the WBI experiments, the gut protection of KGM was similar to or a little better than that of amifostine, involving regenerated crypts numbers, villus length, and gut permeability. Moreover, KGM remarkably enhanced the survival rates of WBI and WAI mice, consistent with amifostine. KGM, as a prebiotic, enhanced gut microbiota abundance, probiotic numbers, and short chain fatty acid production, maintaining gut homeostasis. Moreover, KGM inhibited the apoptosis of irradiated human intestinal epithelial cells. KGM is a promising natural macromolecule against ionizing radiation-induced injury.
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