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解析遗传背景对小鼠模型中辐射致癌反应的影响。

Dissecting the Impact of Genetic Background on Oncogenic Response to Radiation Exposure in the Mouse Model.

机构信息

Division of Biotechnologies, Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), Via Anguillarese 301, 00123 Rome, Italy.

出版信息

Cells. 2024 Nov 19;13(22):1912. doi: 10.3390/cells13221912.

Abstract

Medulloblastoma (MB) is a common primary brain cancer in children. The sonic hedgehog (SHH) pathway is indispensable for the normal development of the cerebellum, and MB is often caused by persistent SHH activation owing to mutations in pathway components. Patched1 () is the primary receptor for the SHH ligand and a negative regulator of the SHH signal transduction pathway. Mice heterozygous for the gene () are predisposed to MB development. Irradiation of newborn mice dramatically increases MB occurrence. A genetic background carrying the mutation significantly influences the risk of developing MB. This study aims to investigate the genetic background-related mechanisms that regulate radiation-induced cellular response and oncogenesis in the cerebellum. We employed multiple approaches, including: (a) analysis of cellular radiosensitivity in granule cell precursors (GCPs), the MB cells of origin, derived from mice with a genetic background that is sensitive (CD1) or resistant (C57Bl/6) to the induction of radiogenic MB; (b) identification of genes differentially expressed in spontaneous and radiation-induced MBs from these two mouse strains; (c) bioinformatic analysis to correlate the expression of radiation-induced genes with survival in MB patients; and (d) examining the expression of these genes in ex vivo MBs induced by single or repeated radiation doses. We have identified a potential gene expression signature-, , , , and -that influences tumor response. In ex vivo cultured spontaneous MBs, the expression levels of these genes increase after irradiation in CD1 mice, but not in mice with a C57Bl/6 genetic background, suggesting that this signature could predict tumor response to radiation therapy and help develop strategies for targeting DNA damage repair in tumors. A detailed understanding of the mechanisms behind genetic background-related susceptibility to radiation-induced oncogenic responses is crucial for translational research.

摘要

髓母细胞瘤(MB)是儿童常见的原发性脑癌。Hedgehog 信号通路(SHH)对于小脑的正常发育是必不可少的,而 MB 通常是由于途径成分的突变导致 SHH 持续激活引起的。Patched1 () 是 SHH 配体的主要受体,也是 SHH 信号转导途径的负调节剂。基因 () 杂合的小鼠易发生 MB 发育。新生 小鼠的照射会显著增加 MB 的发生。携带 突变的遗传背景显著影响发生 MB 的风险。本研究旨在研究调节小脑内辐射诱导的细胞反应和致癌作用的遗传背景相关机制。我们采用了多种方法,包括:(a)分析来自对诱导性 MB 发生敏感(CD1)或抗性(C57Bl/6)的遗传背景的小鼠的颗粒细胞前体细胞(GCPs)(MB 的起源细胞)的细胞放射敏感性;(b)鉴定来自这两种小鼠品系的自发性和辐射诱导性 MB 之间差异表达的基因;(c)生物信息学分析将辐射诱导基因的表达与 MB 患者的生存相关联;(d)检查单次或重复照射剂量诱导的体外 MB 中这些基因的表达。我们已经确定了一个潜在的基因表达谱—— 、 、 、 和 - ,它影响肿瘤反应。在体外培养的自发性 MB 中,这些基因在 CD1 小鼠照射后表达水平增加,但在具有 C57Bl/6 遗传背景的小鼠中则没有,这表明该特征可以预测肿瘤对放射治疗的反应,并有助于制定针对肿瘤中 DNA 损伤修复的靶向策略。深入了解遗传背景相关易感性对辐射诱导致癌反应的机制对于转化研究至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ec6/11593216/584c9afce929/cells-13-01912-g001.jpg

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