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Angelica sinensis polysaccharides ameliorate 5-flourouracil-induced bone marrow stromal cell proliferation inhibition via regulating Wnt/β-catenin signaling

机译:Angelica Sinensis多糖可通过调节Wnt /β-catenin信号传导来改善5-泛毛虫诱导的骨髓基质细胞增殖抑制

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Chemotherapy may cause cellular oxidative stress to bone marrow. Oxidative damage of bone marrow hematopoietic microenvironment is closely related to chronic myelosuppression after chemotherapeutic treatment. Angelica sinensis polysaccharides (ASP) are major effective ingredients of traditional Chinese medicine Angelica with multi-target anti-oxidative stress features. In the current study, we investigated the protective roles and mechanisms of ASP on chemotherapy-induced bone marrow stromal cell (BMSC) damage. The human bone marrow stromal cell line HS-5 cells were divided into control group, 5-FU group, 5-FU + ASP group, and 5-FU + LiCl group to investigate the mechanism of ASP to alleviate 5-FU-induced BMSC proliferation inhibition. The results showed that 5-FU inhibits the growth of HS-5 cells in a time and dose-dependent manner; however, ASP partially counteracted the 5-FU-induced decrease in cell viability, whereas Wnt signaling inhibitor Dkk1 antagonized the effect of ASP on HS-5 cells. ASP reversed the decrease in total cytoplasmic β-catenin, p-GSK-3β, and CyclinD1 following 5-FU treatment and modulated nuclear expression of β-catenin, Lef-1, and C-myc proteins. Furthermore, ASP also enhanced the antioxidant capacity of cells and reduced 5-FU-induced oxidative stress, attenuated FoxO1 expression, thus weakened its downstream apoptosis-related proteins and G0/G1 checkpoint-associated p27 Kip1 expression to alleviate 5-FU-induced apoptosis and to promote cell cycle progression. All the results above suggest that the protective role of ASP in 5-FU-treated BMSCs proliferation for the chemotherapy may be related to its activating Wnt/β-catenin signaling and keeping homeostasis between β-catenin and FoxO1 under oxidative stress. The study provides a potential therapeutic strategy for alleviating chemotherapeutic damage on BMSCs.
机译:化疗可能导致细胞氧化应激对骨髓。骨髓造血微环境的氧化损伤与化学治疗后慢性骨髓抑制密切相关。 Angelica Sinensis多糖(ASP)是具有多目标抗氧化应激特征的中药自会的主要有效成分。在目前的研究中,我们研究了ASP对化疗诱导的骨髓基质细胞(BMSC)损伤的保护作用和机制。将人骨髓基质细胞系HS-5细胞分为对照组,5-FU组,5-FU + ASP组和5-FU + LICL组,研究ASP的机制,以缓解5-FU诱导的BMSC增殖抑制。结果表明,5-FU以时间和剂量依赖的方式抑制HS-5细胞的生长;然而,ASP部分地抵消了5-FU诱导的细胞活力降低,而WNT信号抑制剂DKK1拮抗ASP对HS-5细胞的影响。 ASP在5-FU处理后逆转全细胞质β-Catenin,P-GSK-3β和CyclinD1的降低,并调节β-catenin,Lef-1和C-Myc蛋白的核表达。此外,ASP还增强了细胞的抗氧化能力,降低了5-FU诱导的氧化应激,减弱了FOXO1表达,从而削弱了其下游凋亡相关的蛋白质和G0 / G1检查点相关的P27 KIP1表达,以缓解5-FU诱导的细胞凋亡并促进细胞周期进展。上述结果表明,ASP在5-FU处理的BMSCs增殖中的化疗中的保护作用可能与其激活Wnt /β-catenin信号传导和保持稳态在氧化应激下的β-连环蛋白和FoxO1之间的稳态有关。该研究提供了减轻BMSCs对化学治疗损伤的潜在治疗策略。

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