工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Bromodomain and extra-terminal proteins in solid tumors: regulators of immune microenvironment and emerging therapeutic targets.
Bromodomain and extra-terminal proteins in solid tumors: regulators of immune microenvironment and emerging therapeutic targets.
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溴结构域和超末端结构域(BET)蛋白是关键的表观遗传阅读器,能够识别并结合组蛋白上的乙酰化赖氨酸残基,协调驱动肿瘤发生过程的转录程序。BET蛋白调控参与增殖、存活和分化的癌基因表达,从而在多种实体瘤中促进肿瘤起始、进展和治疗耐药。近期研究发现BET蛋白参与维持癌症干细胞(CSCs),CSCs是肿瘤细胞的一个亚群,具有自我更新能力、可塑性和逃避常规治疗的能力。在CSCs中,BET蛋白协调与干性相关的转录网络,并驱动肿瘤持续存在、转移和治疗后复发。BET蛋白还通过调节关键免疫检查点分子(如PD-L1)的表达、调控细胞因子产生和控制抗原呈递来塑造肿瘤免疫微环境,这些共同影响适应性免疫和固有免疫应答。BET抑制增强T细胞浸润和活化,同时抑制肿瘤相关巨噬细胞的免疫抑制功能。BET蛋白在调控干性和免疫调节中的双重作用使其成为肿瘤内在机制和免疫介导机制的核心调控因子。这使得BET蛋白成为有吸引力的治疗靶点,因为抑制BET蛋白具有同时抑制肿瘤生长和重编程免疫微环境的潜力。临床前和早期临床研究表明,将BET抑制剂与化疗、靶向治疗或免疫检查点阻断联合使用可协同增强抗肿瘤应答。未来的研究重点在于理解BET蛋白在特定情境下的功能,并优化联合治疗策略,这对于充分发掘其在实体瘤中的治疗潜力至关重要。
Bromodomain and Extra-Terminal domain (BET) proteins are key epigenetic readers that recognize and bind acetylated lysine residues on histones, orchestrating transcriptional programs that drive oncogenic processes. BET proteins regulate the expression of oncogenes involved in proliferation, survival, and differentiation, thereby promoting tumor initiation, progression, and therapy resistance across a wide range of solid tumors. Recent findings implicate BET proteins in maintaining cancer stem cells (CSCs), a subpopulation of tumor cells characterized with self-renewal capacity, plasticity, and the ability to evade conventional therapies. In CSCs, BET proteins coordinate stemness-associated transcriptional networks, and drive tumor persistence, metastasis, and relapse following treatment. BET proteins also shape the tumor immune microenvironment by modulating the expression of key immune checkpoint molecules such as PD-L1, regulating cytokine production, and controlling antigen presentation, which collectively influence adaptive and innate immune responses.
BET inhibition enhances T cell infiltration and activation while suppressing the immunosuppressive functions of tumor-associated macrophages. The dual role of BET proteins in controlling both stemness and immune regulation positions them as central regulators of tumor-intrinsic and immune-mediated mechanisms in cancer. This makes BET proteins attractive therapeutic targets, as their inhibition offers the potential to simultaneously suppress tumor growth and reprogram the immune microenvironment.
Preclinical and early clinical studies demonstrate that combining BET inhibitors with chemotherapy, targeted therapies, or immune checkpoint blockade synergizes anti-tumor responses. Future research focused on understanding the context-specific functions of BET proteins, and optimizing combination strategies will be critical to fully harness their therapeutic potential in solid tumors.
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