CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor-intrinsic and immune-related features associated with treatment failure in human papillomavirus-related oropharyngeal cancer.
Tumor-intrinsic and immune-related features associated with treatment failure in human papillomavirus-related oropharyngeal cancer.
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我们描述了在 HPV+ OPSCC 中,DNA 损伤减少与肿瘤内在及免疫相关因素之间可能存在的联系,这些因素共同促进复发风险,为检测和靶向这一高风险生物学特征开辟了机会。
对某些人乳头瘤病毒相关(HPV+)口咽鳞状细胞癌(OPSCC)易复发倾向的生物学机制了解有限,阻碍了治疗个体化。我们旨在识别区分易复发肿瘤的分子特征。
50例后来复发的HPV+ OPSCC(病例)和50例按分期、治疗和吸烟史匹配的无复发对照进行了RNA测序。通过基因集富集分析比较各组,并通过免疫组织化学验证选定的差异。使用基因集变异分析在每个肿瘤中对区分各组的特征进行评分,并评估评分对复发预测的能力。
病例下调了与抗肿瘤免疫相关的通路(FDR校正P < .05),并且含有较少的TIL(肿瘤浸润淋巴细胞)(P < .001),包括细胞毒性T细胞(P = .005)。病例还上调了与细胞分裂及肿瘤进展其他方面相关的通路。上调通路和下调通路分别用于定义每个肿瘤的肿瘤进展评分(TPS)和免疫抑制评分(ISS)。TPS与ISS之间的相关性(r = .603,P < .001)可能由病例中观察到的DNA修复通路上调所解释,这可能通过直接促进其进展以及限制胞质DNA诱导的炎症来增强进展。因此,基于phospho-RPA32(P = .006)和γ-H2AX(P = .005)染色,病例含有较少的双链断裂,并下调了胞质DNA感知通路。由TPS和ISS衍生的联合评分优化了复发预测,并以可推广至3个外部队列的方式对生存进行了分层。
Limited understanding of the biology predisposing certain human papillomavirus-related (HPV+) oropharyngeal squamous cell carcinomas (OPSCCs) to relapse impedes therapeutic personalization. We aimed to identify molecular traits that distinguish recurrence-prone tumors.
Fifty HPV+ OPSCCs that later recurred (cases) and 50 nonrecurrent controls matched for stage, therapy, and smoking history were RNA-sequenced. Groups were compared by gene set enrichment analysis, and select differences were validated by immunohistochemistry. Features discriminating groups were scored in each tumor using gene set variation analysis, and scores were evaluated for recurrence prediction ability.
Cases downregulated pathways linked to antitumor immunity (FDR-adjusted P < .05) and contained fewer tumor-infiltrating lymphocytes (P < .001), including cytotoxic T-cells (P = .005). Cases also upregulated pathways related to cell division and other aspects of tumor progression. Upregulated and downregulated pathways were respectively used to define a tumor progression score (TPS) and immune suppression score (ISS) for each tumor. Correlation between TPS and ISS (r = .603, P < .001) was potentially explained by observed upregulation of DNA repair pathways in cases, which might enhance their progression directly and by limiting cytosolic DNA-induced inflammation. Accordingly, cases contained fewer double-strand breaks based on staining for phospho-RPA32 (P = .006) and γ-H2AX (P = .005) and downregulated the cytosolic DNA sensing pathway. A combined score derived from TPS and ISS optimized recurrence prediction and stratified survival in a manner generalizable to 3 external cohorts.
We describe a potential link in HPV+ OPSCCs between reduced DNA damage and other tumor-intrinsic and immune-related contributors to recurrence risk, opening opportunities to detect and target this high-risk biology.
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