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白菜型油菜多糖与顺铂联用增强了抗肝癌作用,并改善了肠道微生物群和代谢紊乱。

The combination of Brassica rapa L. polysaccharides and cisplatin enhances the anti liver cancer effect and improves intestinal microbiota and metabolic disorders.

机构信息

Xinjiang Key Laboratory of Special Species Conservation and Regulatory Biology, Key Laboratory of Special Environment Biodiversity Application and Regulation in Xinjiang, College of Life Science, Xinjiang Normal University, Urumqi 830054, China.

Xinjiang Key Laboratory of Special Species Conservation and Regulatory Biology, Key Laboratory of Special Environment Biodiversity Application and Regulation in Xinjiang, College of Life Science, Xinjiang Normal University, Urumqi 830054, China.

出版信息

Int J Biol Macromol. 2024 Apr;265(Pt 1):130706. doi: 10.1016/j.ijbiomac.2024.130706. Epub 2024 Mar 7.

Abstract

Polysaccharides are commonly used as low-toxicity anticancer active substances to enhance the chemotherapeutic effect of cisplatin and reduce toxicity. Brassica rapa L. polysaccharides have been shown to have hepatoprotective effects; however, their anticancer effects in combination with cisplatin and their mechanisms have not been reported. An acidic polysaccharide from Brassica rapa L. (BRCPe) using hydroalcohol precipitation-assisted sonication was Characterized. The effects of BRCPe combined with cisplatin treatment on tumor growth in hepatocellular carcinoma mouse model were investigated. The impact of the combined treatment on the composition of intestinal flora, levels of short-chain fatty acids and endogenous metabolites in tumor mice were analyzed based on macrogenomic and metabolomic data Our results showed that the BRCPe combined with low-dose Cisplatin group showed better inhibitory activity against hepatocellular carcinoma cell growth in terms of tumor volume, tumor weight, and tumor suppression rate compared with the BRCPe and Cisplation alone group, and reduced the side effects of cisplatin-induced body weight loss, immune deficiency, and liver injury. Furthermore, BRCPe combined with cisplatin was found to induce apoptosis in hepatocellular carcinoma cell through the activation of the caspase cascade reaction. In addition, the intervention of BRCPe were observed to modulate the composition, structure and functional structure of intestinal flora affected by cisplatin. Notably, Lachnospiraceae bacteria, Lactobacillus murinus, Muribaculaceae, and Clostridiales bacteria were identified as significant contributors to microbial species involved in metabolic pathways. Moreover, BRCPe effectively regulate the metabolic disorders in cisplatin-induced hepatocellular carcinoma mice. In conclusion, BRCPe could potentially function as an adjuvant or dietary supplement to augment the effectiveness of cisplatin chemotherapy through the preservation of a more efficient intestinal microenvironmental homeostasis.

摘要

多糖通常被用作低毒性的抗癌活性物质,以增强顺铂的化疗效果并降低其毒性。已经表明,芸薹属植物多糖具有保肝作用;然而,它们与顺铂联合的抗癌作用及其机制尚未报道。本研究采用水醇沉淀辅助超声法从芸薹属植物中提取一种酸性多糖(BRCPe),并对其进行了表征。研究了 BRCPe 与顺铂联合治疗对肝癌小鼠模型肿瘤生长的影响。基于宏基因组和代谢组学数据,分析了联合治疗对肿瘤小鼠肠道菌群组成、短链脂肪酸水平和内源性代谢物的影响。结果表明,与 BRCPe 和顺铂单独治疗组相比,BRCPe 联合低剂量顺铂组在肿瘤体积、肿瘤重量和肿瘤抑制率方面对肝癌细胞生长表现出更好的抑制活性,并且降低了顺铂引起的体重减轻、免疫缺陷和肝损伤等副作用。此外,BRCPe 联合顺铂通过激活半胱天冬酶级联反应诱导肝癌细胞凋亡。此外,还观察到 BRCPe 干预能够调节受顺铂影响的肠道菌群的组成、结构和功能结构。值得注意的是,lachnospiraceae 细菌、乳酸乳球菌 murinus、muribaculaceae 和梭菌目细菌被鉴定为参与代谢途径的微生物物种的重要贡献者。此外,BRCPe 有效调节了顺铂诱导的肝癌小鼠的代谢紊乱。综上所述,BRCPe 可能通过维持更有效的肠道微环境稳态,作为顺铂化疗的辅助剂或膳食补充剂,增强其疗效。

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