CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:B cell clonality in cancer.
B cell clonality in cancer.
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肿瘤细胞与免疫环境长期共同进化过程中的癌变,本质上是因为免疫系统在抗原特异性T淋巴细胞和B淋巴细胞的克隆群体层面上做出了错误决策,并将其记住和复制。肿瘤-免疫相互作用决定了这类错误的性质,因此也界定了成功免疫治疗干预的可能途径。目前普遍认为,肿瘤浸润B细胞(TIL-B)既可发挥促肿瘤作用,也可发挥抗肿瘤作用。
然而,决定具有不同特异性和功能的克隆性B细胞谱系贡献的确切机制在很大程度上仍不清楚。这是由于癌症类型的变异性、肿瘤细胞的分子异质性,以及在很大程度上每种免疫应答的个体化模式。要进一步取得进展,需要详细研究克隆异质性B细胞的功能特性和表型与其抗原特异性之间的关系,这些抗原特异性决定了效应B淋巴细胞以及在肿瘤环境中产生的免疫球蛋白的功能。基于对B淋巴细胞克隆性抗原特异性群体在肿瘤微环境中作用的真正理解,我们需要学会如何开发新的靶向免疫治疗方法,并使现有治疗方案适应不同患者和患者亚群的特定需求。在这篇综述中,我们将讨论B细胞的功能多样性及其在肿瘤环境中的多方面作用。
Carcinogenesis in the process of long-term co-evolution of tumor cells and immune environment essentially becomes possible due to incorrect decisions made, remembered, and reproduced by the immune system at the level of clonal populations of antigen-specific T- and B-lymphocytes. Tumor-immunity interaction determines the nature of such errors and, consequently, delineates the possible ways of successful immunotherapeutic intervention. It is generally recognized that tumor-infiltrating B cells (TIL-B) can play both pro-tumor and anti-tumor roles.
However, the exact mechanisms that determine the contribution of clonal B cell lineages with different specificities and functions remain largely unclear. This is due to the variability of cancer types, the molecular heterogeneity of tumor cells, and, to a large extent, the individual pattern of each immune response.
Further progress requires detailed investigation of the functional properties and phenotypes of clonally heterogeneous B cells in relation to their antigenic specificities, which determine the functionality of both effector B lymphocytes and immunoglobulins produced in the tumor environment.
Based on a real understanding of the role of clonal antigen-specific populations of B lymphocytes in the tumor microenvironment, we need to learn how to develop new methods of targeted immunotherapy, as well as adapt existing treatment options to the specific needs of different patients and patient subgroups. In this review, we will cover B cells functional diversity and their multifaceted roles in the tumor environment.
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