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基于促分裂原的铈纳米颗粒可抵御大剂量 X 射线。

Mitogen-like Cerium-Based Nanoparticles Protect against Severe Doses of X-rays.

机构信息

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino 142290, Russia.

Moscow Region Pedagogical State University, Moscow 141014, Russia.

出版信息

Int J Mol Sci. 2023 Jan 8;24(2):1241. doi: 10.3390/ijms24021241.

Abstract

Novel radioprotectors are strongly demanded due to their numerous applications in radiobiology and biomedicine, e.g., for facilitating the remedy after cancer radiotherapy. Currently, cerium-containing nanomaterials are regarded as promising inorganic radioprotectors due to their unrivaled antioxidant activity based on their ability to mimic the action of natural redox enzymes like catalase and superoxide dismutase and to neutralize reactive oxygen species (ROS), which are by far the main damaging factors of ionizing radiation. The freshwater planarian flatworms are considered a promising system for testing new radioprotectors, due to the high regenerative potential of these species and an excessive amount of proliferating stem cells (neoblasts) in their bodies. Using planarian , we tested CeO nanoparticles, well known for their antioxidant activity, along with much less studied CeF nanoparticles, for their radioprotective potential. In addition, both CeO and CeF nanoparticles improve planarian head blastema regeneration after ionizing irradiation by enhancing blastema growth, increasing the number of mitoses and neoblasts' survival, and modulating the expression of genes responsible for the proliferation and differentiation of neoblasts. The CeO nanoparticles' action stems directly from their redox activity as ROS scavengers, while the CeF nanoparticles' action is mediated by overexpression of "wound-induced genes" and neoblast- and stem cell-regulating genes.

摘要

由于在放射生物学和生物医学中有广泛的应用,新型放射防护剂的需求非常迫切,例如在癌症放射治疗后进行辅助治疗。目前,基于其模拟过氧化氢酶和超氧化物歧化酶等天然氧化还原酶的作用、中和活性氧(ROS)的能力,含铈的纳米材料被认为是很有前途的无机放射防护剂,ROS 是电离辐射迄今为止的主要损伤因素。淡水扁形动物涡虫因其物种具有较高的再生潜力,以及体内大量增殖的干细胞(成体干细胞)而被认为是测试新型放射防护剂的有前途的系统。使用涡虫,我们测试了具有抗氧化活性的 CeO 纳米颗粒,以及研究较少的 CeF 纳米颗粒,以评估它们的放射防护潜力。此外,CeO 和 CeF 纳米颗粒都通过促进芽基生长、增加有丝分裂和成体干细胞的存活率、调节与成体干细胞增殖和分化相关的基因的表达,来改善电离照射后涡虫头部芽基的再生。CeO 纳米颗粒的作用源自其作为 ROS 清除剂的氧化还原活性,而 CeF 纳米颗粒的作用则是通过过度表达“创伤诱导基因”以及成体干细胞和调节基因来介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/131e/9864839/b78bc60c3d6d/ijms-24-01241-g001.jpg

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