决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Integrative Multi-Omics Analysis Reveals a Mitochondrial-Immune Axis Associated With Neoadjuvant Chemotherapy Response in High-Grade Serous Ovarian Cancer.
这些发现将免疫激活和线粒体生物能量依赖性定义为化疗反应的双重决定因素,并强调Complex I靶向干预是克服HGSOC铂类耐药的一种合理策略。
新辅助化疗(NACT)是高级别浆液性卵巢癌(HGSOC)的标准治疗,但治疗反应的决定因素仍未完全明确。在此,对102份肿瘤样本的多组学分析显示,NACT重塑了肿瘤微环境,增强了B细胞和NK细胞浸润,并激活了抗原呈递及BCR/TCR信号通路。值得注意的是,Nab-paclitaxel在促进B细胞介导的体液免疫方面优于paclitaxel。无监督聚类识别出两种生物学上截然不同的亚型:一种为免疫活跃的化疗反应评分(CRS)高亚型,其特征为CD19 + B细胞富集和补体激活;另一种为代谢重编程的CRS低亚型,表现出氧化磷酸化(OXPHOS)增强和线粒体重塑。铂耐药肿瘤显示出显著的OXPHOS依赖性,提示存在生物能量学脆弱性。使用IACS-010759对线粒体复合物I进行药理学抑制,或对其核心亚基NDUFA8进行基因沉默,可选择性地在耐药细胞和异种移植模型中恢复carboplatin敏感性。复合物I破坏可抑制线粒体呼吸,诱导线粒体膜去极化和氧化应激,并触发应激适应性线粒体自噬,从而降低铂类诱导的细胞毒性应激阈值。在临床上,CD19 + B细胞浸润和NDUFA8表达与铂类反应性和NACT结局显著相关。总之,这些发现将免疫激活和线粒体生物能量学依赖性定义为化疗反应的双重决定因素,并强调以复合物I为靶点的干预是克服HGSOC铂耐药的合理策略。
Neoadjuvant chemotherapy (NACT) is a standard treatment for high-grade serous ovarian cancer (HGSOC), yet determinants of therapeutic response remain incompletely defined. Here, multi-omics analysis of 102 tumor samples revealed that NACT reshapes the tumor microenvironment, enhancing B- and NK-cell infiltration and activating antigen presentation and BCR/TCR signaling pathways. Notably, Nab-paclitaxel outperformed paclitaxel in promoting B cell-mediated humoral immunity. Unsupervised clustering identifies two biologically distinct subtypes: an immune-active chemotherapy response score (CRS)-high subtype characterized by CD19 + B-cell enrichment and complement activation, and a metabolically rewired CRS-low subtype exhibiting heightened oxidative phosphorylation (OXPHOS) and mitochondrial remodeling. Platinum-resistant tumors display pronounced OXPHOS dependency, indicating a bioenergetic vulnerability. Pharmacologic inhibition of mitochondrial Complex I with IACS-010759, or genetic silencing of its core subunit NDUFA8, selectively restores carboplatin sensitivity in resistant cells and xenograft models. Complex I disruption suppresses mitochondrial respiration, induces membrane depolarization and oxidative stress, and triggers stress-adaptive mitophagy, thereby lowering the threshold for platinum-induced cytotoxic stress. Clinically, CD19 + B-cell infiltration and NDUFA8 expression are significantly associated with platinum responsiveness and NACT outcome. Together, these findings define immune activation and mitochondrial bioenergetic dependency as dual determinants of chemotherapy response and highlight Complex I-targeted intervention as a rational strategy to overcome platinum resistance in HGSOC.
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