N V Yunusova, E V Kaigorodova, P A Panfilova, N O Popova, I N Udintseva, I V Kondakova, D A Svarovsky, V E Goldberg
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引用次数: 0
摘要
细胞外囊泡(EVs)在被受体细胞内化后表现出功能活性,参与了抗肿瘤治疗常见并发症--药物诱发多发性神经病(DIPN)的发病机制。本研究利用单核白细胞模型系统评估了接受多化疗的结直肠癌患者体内EVs的内化及其与神经毒性的关系。在化疗开始前(第1点)和化疗3-4个疗程后(第2点),从8名接受FOLFOX或XELOX方案抗肿瘤治疗的结直肠癌患者体内分离了循环EVs。健康供体的单核白细胞作为EV体外内化的细胞模型系统。使用荧光显微镜对 EV 内化进行评估。结果表明,从神经毒性高的结直肠癌患者体内获得的 EV 的内化率高于神经毒性低的组别。健康供体的 CD11b 阳性(CD11b⁺)和 CD11b 阴性(CD11b-)单核白细胞内化化疗前后患者体内 EVs 的能力没有发现显著差异。根据 NRS 量表,内化 EVs 的 CD11b- 细胞的相对数量与神经毒性表现高峰期(第 2 点)的神经毒性积分指数之间存在直接关系(r=0.675,p.0.05)。
Internalization of extracellular vesicles of cancer patients by peripheral blood mononuclear cells during polychemotherapy: connection with neurotoxicity.
Extracellular vesicles (EVs), exhibiting their functional activity after internalization by recipient cells, are involved in the pathogenesis of drug-induced polyneuropathy (DIPN), a common complication of antitumor therapy. In this work, the internalization of EVs obtained from colorectal cancer patients undergoing polychemotherapy and its relationship with neurotoxicity were assessed using a model system of mononuclear leukocytes. Circulating EVs were isolated from 8 colorectal cancer patients who received antitumor therapy according to the FOLFOX or XELOX regimens before the start of chemotherapy (point 1) and after 3-4 courses (point 2). Mononuclear leukocytes of a healthy donor served as a cellular model system for EV internalization in vitro. EV internalization was assessed using fluorescence microscopy. It was shown that internalization of EVs obtained from colorectal cancer patients with high neurotoxicity was higher than in the group with low neurotoxicity. The ability of CD11b-positive (CD11b⁺) and CD11b-negative (CD11b⁻) mononuclear leukocytes of a healthy donor to internalize EVs obtained from patients before and after chemotherapy did not reveal significant differences. A direct relationship was found between the relative number of CD11b⁻ cells with internalized EVs and the integral index of neurotoxicity according to the NRS scale at the peak of its manifestation (point 2) (r=0.675, p.
Biomeditsinskaya khimiyaBiochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
1.30
自引率
0.00%
发文量
49
期刊介绍:
The aim of the Russian-language journal "Biomeditsinskaya Khimiya" (Biomedical Chemistry) is to introduce the latest results obtained by scientists from Russia and other Republics of the Former Soviet Union. The Journal will cover all major areas of Biomedical chemistry, including neurochemistry, clinical chemistry, molecular biology of pathological processes, gene therapy, development of new drugs and their biochemical pharmacology, introduction and advertisement of new (biochemical) methods into experimental and clinical medicine etc. The Journal also publish review articles. All issues of journal usually contain invited reviews. Papers written in Russian contain abstract (in English).