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A Bioinformatic Approach for the Identification of Molecular Determinants of Resistance/Sensitivity to Cancer Thermotherapy

机译:一种生物信息化方法,用于鉴定癌热疗抗性/敏感性的分子决定因素

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摘要

Application of heat above 43°C and up to 47°C, the so-called “thermal ablation” range, leads to tumor cell destruction either by apoptosis or by necrosis. However, tumor cells have developed mechanisms of defense that render them thermoresistant. Of importance, the in situ application of heat for the treatment of localized solid tumors can also prime specific antitumor immunity. Herein, a bioinformatic approach was employed for the identification of molecular determinants implicated in thermoresistance and immunogenic cell death (ICD). To this end, both literature-derived (text mining) and microarray gene expression profile data were processed, followed by functional enrichment analysis. Two important functional gene modules were detected in hyperthermia resistance and ICD, the former including members of the heat shock protein (HSP) family of molecular chaperones and the latter including immune-related molecules, respectively. Of note, the molecules HSP90AA1 and HSPA4 were found common between thermoresistance and damage signaling molecules (damage-associated molecular patterns (DAMPs)) and ICD. In addition, the prognostic potential of HSP90AA1 and HSPA4 overexpression for cancer patients’ overall survival was investigated. The results of this study could constitute the basis for the strategic development of more efficient and personalized therapeutic strategies against cancer by means of thermotherapy, by taking into consideration the genetic profile of each patient.
机译:在43°C以上的施用和高达47°C,所谓的“热消融”范围,通过细胞凋亡或坏死导致肿瘤细胞破坏。然而,肿瘤细胞已经开发出使它们散热的防御机制。重要性,原位应用用于局部实体肿瘤的治疗方法也可以使特异性抗肿瘤免疫力源性。在此,采用生物信息化方法用于鉴定致热和免疫原性细胞死亡(ICD)的分子确定剂。为此,处理文献衍生的(文本挖掘)和微阵列基因表达谱数据,然后进行功能性富集分析。在热疗抵抗和ICD中检测到两个重要的功能基因模块,前者包括热休克蛋白(HSP)分子伴侣和后者包括免疫相关分子的后者的成员。值得注意的是,发现分子HSP90AA1和HSPA4在散热和损伤信号分子(损伤相关的分子图(潮湿))和ICD之间存在常见。此外,研究了HSP90AAA1和HSPA4过表达对癌症患者总体存活的预后潜力。通过考虑每种患者的遗传概况,本研究的结果可以构成通过热疗的更有效和个性化治疗策略的战略发展对癌症的更有效和个性化的治疗策略的基础。

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