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细胞介导免疫治疗中的纳米抗体:抗击肿瘤之路

英文原题:Nanobodies in cell-mediated immunotherapy: On the road to fight cancer.

PubMed 2023/01/25(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

研究概要

免疫系统在识别和清除肿瘤细胞中至关重要。

中文摘要

免疫系统对识别和清除肿瘤细胞至关重要。肿瘤微环境(TME)的独特特征,如异质性、血流减少、缺氧和酸性,可降低细胞介导免疫的疗效。癌症免疫治疗的主要目标是改造免疫细胞或 TME,使免疫系统能够有效清除恶性肿瘤。纳米抗体又称单域抗体,是从骆驼科动物抗体产生的不含轻链抗体片段。纳米抗体具有高稳定性、低免疫原性、增强实体瘤 TME 浸润能力及易于基因工程改造等独特属性,因此在细胞介导免疫治疗中应用前景广阔。纳米抗体可通过连接肿瘤细胞与免疫细胞,或利用结合于免疫细胞的纳米抗体靶向癌细胞,直接促进癌症治疗;也可通过阻断抑制性配体/受体间接发挥作用。抗 CD3 和抗 4-1BB 纳米抗体可分别以双特异性(双特异性 T 细胞衔接器,BiTE)和三特异性(TriTE)形式活化 T 细胞。纳米抗体还可用作 NK 细胞衔接器(BiKE、TriKE 和 TetraKE),在肿瘤和 NK 细胞间形成免疫突触。通过将靶抗原特异性纳米抗体整合至嵌合抗原受体(CAR),纳米抗体可重定向免疫细胞攻击肿瘤细胞。多种癌症抗原已被纳米抗体 CAR-T 和 CAR-NK 细胞靶向,用于治疗血液系统和实体瘤恶性肿瘤。纳米抗体还可阻止免疫检查点的不当抑制,从而维持针对肿瘤细胞的免疫监视。纳米抗体在细胞介导癌症免疫治疗中的其他作用包括重编程巨噬细胞以减少转移和血管生成,以及预防细胞免疫治疗的严重副作用。本文重点介绍 T 细胞、NK 细胞和巨噬细胞等多种免疫细胞在 TME 中的关键功能,并讨论基于纳米抗体靶向调控免疫细胞和 TME 的新型免疫治疗方法。

展开英文摘要原文

The immune system is essential in recognizing and eliminating tumor cells. The unique characteristics of the tumor microenvironment (TME), such as heterogeneity, reduced blood flow, hypoxia, and acidity, can reduce the efficacy of cell-mediated immunity. The primary goal of cancer immunotherapy is to modify the immune cells or the TME to enable the immune system to eliminate malignancies successfully. Nanobodies, known as single-domain antibodies, are light chain-free antibody fragments produced from Camelidae antibodies. The unique properties of nanobodies, including high stability, reduced immunogenicity, enhanced infiltration into the TME of solid tumors and facile genetic engineering have led to their promising application in cell-mediated immunotherapy. They can promote the cancer therapy either directly by bridging between tumor cells and immune cells and by targeting cancer cells using immune cell-bound nanobodies or indirectly by blocking the inhibitory ligands/receptors. The T-cell activation can be engaged through anti-CD3 and anti-4-1BB nanobodies in the bispecific (bispecific T-cell engagers (BiTEs)) and trispecific (trispecific T-cell engager (TriTEs)) manners. Also, nanobodies can be used as natural killer (NK) cell engagers (BiKEs, TriKEs, and TetraKEs) to create an immune synapse between the tumor and NK cells. Nanobodies can redirect immune cells to attack tumor cells through a chimeric antigen receptor (CAR) incorporating a nanobody against the target antigen. Various cancer antigens have been targeted by nanobody-based CAR-T and CAR-NK cells for treating both hematological and solid malignancies. They can also cause the continuation of immune surveillance against tumor cells by stopping inappropriate inhibition of immune checkpoints. Other roles of nanobodies in cell-mediated cancer immunotherapy include reprogramming macrophages to reduce metastasis and angiogenesis, as well as preventing the severe side effects occurring in cell-mediated immunotherapy. Here, we highlight the critical functions of various immune cells, including T cells, NK cells, and macrophages in the TME, and discuss newly developed immunotherapy methods based on the targeted manipulation of immune cells and TME with nanobodies.

论文信息

作者
Maali A、Gholizadeh M、Feghhi-Najafabadi S、Noei A、Seyed-Motahari SS、Mansoori S、Sharifzadeh Z
单位
Department of Immunology, Pasteur Institute of Iran, Tehran, Iran.Iran
文献类型
综述
期刊
Frontiers in immunology2023
原文标识
PubMed 36761751 · DOI 10.3389/fimmu.2023.1012841