CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Landscape of surfaceome and endocytome in human glioma is divergent and depends on cellular spatial organization.
Landscape of surfaceome and endocytome in human glioma is divergent and depends on cellular spatial organization.
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针对肿瘤表面蛋白组(TS)的治疗策略,包括检查点抑制剂阻断抗体、抗体药物偶联物(ADC)和CAR-T(CAR-T)细胞,为抗击癌症提供了新的武器。
然而,一个仍然存在的瓶颈是缺乏全面探查患者肿瘤中潜在TS靶点的策略。在此,我们开发了一个平台(肿瘤表面蛋白组图谱[TS-MAP]),整合了新构建的TS分类器(SURFME),能够对保留组织结构的原代3D培养物和完整患者胶质瘤组织进行图谱分析。
此外,TS-MAP能够特异性识别可发生内吞作用的蛋白质,作为ADC及其他需要毒性载荷内化的治疗模式的可行靶点。在仍属最具侵袭性癌症类型之一的高级别胶质瘤中,我们展示了细胞空间组织(2D vs. 3D)从根本上改变了表面蛋白组和内吞蛋白组(例如整合素、蛋白聚糖、信号素和癌症干细胞标志物),这对靶点筛选方法具有普遍意义,正如靶向EGFR的ADC所例证的那样。TS-MAP平台进一步应用于分析一组新鲜切除的胶质瘤中的表面蛋白组和内吞蛋白组图谱。
我们发现患者肿瘤之间存在高度多样化的TS谱,与级别和组织学并不直接相关,这凸显了个体化方法的必要性。我们的数据提供了对免疫治疗策略未来发展至关重要的额外层面的理解,以及基于蛋白质组学的靶点识别和选择流程。TS-MAP平台应可广泛应用于旨在更好地理解如何利用TS进行个体化免疫治疗的研究中。
Therapeutic strategies directed at the tumor surfaceome (TS), including checkpoint inhibitor blocking antibodies, antibody drug conjugates (ADCs), and chimeric antigen receptor T (CAR-T) cells, provide a new armament to fight cancer.
However, a remaining bottleneck is the lack of strategies to comprehensively interrogate patient tumors for potential TS targets.
Here, we have developed a platform (tumor surfaceome mapping [TS-MAP]) integrated with a newly curated TS classifier (SURFME) that allows profiling of primary 3D cultures and intact patient glioma tumors with preserved tissue architecture.
Moreover, TS-MAP specifically identifies proteins capable of endocytosis as tractable targets for ADCs and other modalities requiring toxic payload internalization. In high-grade gliomas that remain among the most aggressive forms of cancer, we show that cellular spatial organization (2D vs. 3D) fundamentally transforms the surfaceome and endocytome (e.
g. , integrins, proteoglycans, semaphorins, and cancer stem cell markers) with general implications for target screening approaches, as exemplified by an ADC targeting EGFR. The TS-MAP platform was further applied to profile the surfaceome and endocytome landscape in a cohort of freshly resected gliomas.
We found a highly diverse TS repertoire between patient tumors, not directly associated with grade and histology, which highlights the need for individualized approaches.
Our data provide additional layers of understanding fundamental to the future development of immunotherapy strategies, as well as procedures for proteomics-based target identification and selection. The TS-MAP platform should be widely applicable in efforts aiming at a better understanding of how to harness the TS for personalized immunotherapy.
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