State Key Laboratory of Radiation Medicine and Protection, School of Radiation Medicine and Protection, Soochow University, Suzhou 215123, China.
Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Suzhou 215123, China.
Aging (Albany NY). 2023 Jul 18;15(14):6905-6920. doi: 10.18632/aging.204882.
This study aimed to develop an exosome-coated polydatin (PD) nanoparticles (exo-PD) for improving the water solubility and bioavailability of polydatin and explore its salutary effects on intestinal radiation injury. Exosomes (exo) were extracted from the medium of human amniotic fluid stem cells (hAFSc). Mice were divided into control group, irradiation (IR) group, irradiation+PD (IR+PD) group, irradiation+exo (IR+exo) group and irradiation+exo-PD (IR+exo-PD) group. The results of characterization of protein markers, particle size, morphology and cellular uptake ability confirmed that exosomes were effectively isolated using ultracentrifugation. Compared with the IR group, exo-PD improved cell viability, prolonged survival of mice, improved leukocyte count and reduced diarrhea rate. Histological results showed that the exo-PD group had significant improvements in small intestinal villus length and crypt number and less crypt cell damage. exo-PD could reduce IL-1α and IL-6 levels, reduced γ-H2AX expression, increased mitochondrial membrane potential, enhanced oxidative phosphorylation, and delayed cellular senescence. exo-PD could alleviate intestinal injury by improving mitochondrial function through PI3K-AKT pathway. The exo-PD was able to reduce radiation damage to intestinal cells and could be a potential candidate for salvage of intestinal radiation damage.
本研究旨在开发一种包裹白藜芦醇(PD)的外泌体纳米颗粒(exo-PD),以提高白藜芦醇的水溶性和生物利用度,并探讨其对肠道辐射损伤的有益作用。外泌体(exo)是从人羊水干细胞(hAFSc)的培养基中提取的。将小鼠分为对照组、照射(IR)组、照射+PD(IR+PD)组、照射+外泌体(IR+exo)组和照射+外泌体-PD(IR+exo-PD)组。用超速离心法有效地分离了外泌体。与 IR 组相比,exo-PD 提高了细胞活力,延长了小鼠的存活时间,提高了白细胞计数,降低了腹泻率。组织学结果表明,外泌体-PD 组的小肠绒毛长度和隐窝数量明显增加,隐窝细胞损伤减少。exo-PD 可降低 IL-1α 和 IL-6 水平,减少 γ-H2AX 表达,增加线粒体膜电位,增强氧化磷酸化,延缓细胞衰老。exo-PD 通过 PI3K-AKT 通路改善线粒体功能,从而减轻肠道损伤。exo-PD 能够减少辐射对肠道细胞的损伤,可能成为肠道辐射损伤抢救的潜在候选药物。