黑色素瘤和实体瘤中自体细胞治疗年度重大进展
Top advances of the year in autologous cellular therapy in melanoma and solid tumors.
这些进展使自体细胞疗法成为黑色素瘤中不断演进的标准治疗,以及跨实体瘤的一种有前景的治疗模式,目前的工作重点在于提高可及性、克服耐药性和优化联合策略。
英文原题:A score of DNA damage repair pathway with the predictive ability for chemotherapy and immunotherapy is strongly associated with immune signaling pathway in pan-cancer.
A score of DNA damage repair pathway with the predictive ability for chemotherapy and immunotherapy is strongly associated with immune signaling pathway in pan-cancer.
我们揭示了一种DNA损伤修复途径的新生物标志物,并探索了其可能的机制,以指导治疗策略和药物反应预测。
DNA 损伤修复(DDR)在维持正常细胞功能和基因组完整性方面至关重要,并与癌症风险、进展和治疗反应相关。然而,目前仍缺乏对 DDR 基因表达水平在癌症进展和治疗耐药中影响的全面理解。因此,我们利用 20 个基因的表达水平定义了一个肿瘤相关 DDR 评分(TR-DDR score),以量化肿瘤中 DNA 损伤修复通路的肿瘤特征,并探索该评分在不同癌症中的可能功能和机制。TR-DDR 评分对肿瘤组织具有显著预测能力。与现有预测指标(CD8 或 PD-L1)相比,它是预测化疗或免疫治疗联合TIL(肿瘤浸润淋巴细胞)和 G2M 检查点评分反应的更准确指标。本研究指出,TR-DDR 评分通常与晚期患者、基因组不稳定性和细胞增殖特征呈正相关,而与炎症反应、凋亡和 p53 通路特征呈负相关。在肿瘤免疫反应背景下,TR-DDR 评分与 T 细胞数量(CD4+ 活化记忆细胞、CD8+ 细胞、T regs、Tfh)和巨噬细胞 M1 极化呈强正相关。此外,通过差异分析和相关性分析,筛选出 COL2A1、MAGEA4、FCRL4 和 ZIC1 作为 TR-DDR 评分的潜在调节因子。总之,我们揭示了一个 DNA 损伤修复通路的新生物标志物,并探索其可能机制,以指导治疗策略和药物反应预测。
DNA damage repair (DDR) is critical in maintaining normal cellular function and genome integrity and is associated with cancer risk, progression, and therapeutic response. However, there is still a lack of a thorough understanding of the effects of DDR genes' expression level in cancer progression and therapeutic resistance. Therefore, we defined a tumor-related DDR score (TR-DDR score), utilizing the expression levels of 20 genes, to quantify the tumor signature of DNA damage repair pathways in tumors and explore the possible function and mechanism for the score among different cancers. The TR-DDR score has remarkably predictive power for tumor tissues. It is a more accurate indicator for the response of chemotherapy or immunotherapy combined with the tumor-infiltrating lymphocyte (TIL) and G2M checkpoint score than the pre-existing predictors (CD8 or PD-L1). This study points out that the TR-DDR score generally has positive correlations with patients of advanced-stage, genome-instability, and cell proliferation signature, while negative correlations with inflammatory response, apoptosis, and p53 pathway signature. In the context of tumor immune response, the TR-DDR score strongly positively correlates with the number of T cells (CD4+ activated memory cells, CD8+ cells, T regs, Tfh) and macrophages M1 polarization. In addition, by difference analysis and correlation analysis, COL2A1 , MAGEA4 , FCRL4 , and ZIC1 are screened out as the potential modulating factors for the TR-DDR score. In summary, we light on a new biomarker for DNA damage repair pathways and explore its possible mechanism to guide therapeutic strategies and drug response prediction.
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