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Single nucleotide polymorphisms and unacceptable late toxicity in breast cancer adjuvant radiotherapy: a case report

机译:乳腺癌辅助放疗中的单核苷酸多态性和晚期毒性不可接受:一例报告

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Background: There has recently been a strong interest in the inter-individual variation in normal tissue and tumor response to radiotherapy (RT), because tissue radiosensitivity seems to be under genetic control. Evidence is accumulating on the role of polymorphic genetic variants, such as single nucleotide polymorphisms (SNPs) that could influence normal tissue response after radiation. The most studied SNPs include those in genes involved in DNA repair (single- and double-strand breaks, and base excision) and those active in the response to oxidative stress. Case report: We present the case report of a 60-year-old woman with early breast cancer who underwent adjuvant hormone therapy and conventional radiotherapy, and subsequently developed unacceptable cosmetic toxicities of the irradiated breast requiring a genetic test of genes involved in DNA repair mechanisms. The patient was found to be heterozygous for G28152A (T/C) and C18067T (A/G) mutations in X-ray repair cross-complementing group 1 ( XRCC1 ) and 3 ( XRCC3 ), respectively, homozygous for A313G (G/G) mutation in glutathione S transferase Pi 1 ( GSTP1 ), and wild-type for A4541G (A/A) in XRCC3 and G135C (G/G) in RAD51 recombinase. Conclusion: The role of SNPs should be taken into account when a severe phenomenon appears in normal tissues after radiation treatment, because understanding the molecular basis of individual radiosensitivity may be useful for identifying moderately or extremely radiosensitive patients who may need tailored therapeutic strategies.
机译:背景:正常组织和肿瘤对放射疗法(RT)的反应之间的个体差异引起了人们的极大兴趣,因为组织的放射敏感性似乎处于遗传控制之下。关于多态性遗传变异的作用的证据越来越多,例如单核苷酸多态性(SNP)可能会影响放射后的正常组织反应。研究最多的SNP包括那些参与DNA修复的基因(单链和双链断裂,以及碱基切除),以及对氧化应激有反应的SNP。病例报告:我们提供了一名60岁的早期乳腺癌妇女的病例报告,该妇女接受了辅助激素治疗和常规放疗,其后发展出令人无法接受的被照射乳房的化妆品毒性,需要对涉及DNA修复机制的基因进行基因测试。发现该患者在X射线修复交叉互补组1(XRCC1)和3(XRCC3)中分别对G28152A(T / C)和C18067T(A / G)突变是纯合的,对A313G(G / G)是纯合的谷胱甘肽S转移酶Pi 1(GSTP1)中的突变,而XRCC3中的A4541G(A / A)和RAD51重组酶中的G135C(G / G)为野生型。结论:放射治疗后正常组织中出现严重现象时,应考虑SNP的作用,因为了解个体放射敏感性的分子基础可能有助于识别可能需要定制治疗策略的中度或高度放射敏感性患者。

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