间皮素作为癌症免疫治疗的生物标志物和治疗靶点
Mesothelin as Biomarker and Therapeutic Target for Immunotherapy in Cancer.
癌症仍是一个关键的全球健康问题,原因在于发现晚、耐药和高死亡率。
英文原题:Engineering macrophages for effective and safe targeting of CD47 cancer cells in the tumor microenvironment.
Engineering macrophages for effective and safe targeting of CD47 cancer cells in the tumor microenvironment.
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肿瘤相关巨噬细胞是肿瘤微环境(TME)中的关键髓系细胞,充当固有免疫和适应性免疫应答的重要协调者。
肿瘤相关巨噬细胞是肿瘤微环境(TME)中关键的髓系细胞,作为固有免疫和适应性免疫应答的重要协调者发挥作用。当前抗肿瘤治疗的疗效可被巨噬细胞促进,这得益于其吞噬作用、杀肿瘤活性以及激发适应性免疫的能力;也可被其抑制性反受体的表达所限制(如程序性死亡配体1或信号调节蛋白α)。此外,这些髓单核细胞持续募集到肿瘤组织中,使其成为细胞治疗中具有吸引力的候选者,随着嵌合抗原受体(CAR)效应细胞的发展而备受关注。这些证据凸显了巨噬细胞工程化治疗实体瘤的强大治疗潜力。在这一研究方向中,Du等人基于内在Arg1启动子对TME特异性激活细胞毒性的响应性,开发了pArg1-CD47 CAR-M φ,有效克服了SIRPα对CD47+癌细胞的抑制。在乳腺癌和胃癌的临床前小鼠模型中,这种巨噬细胞细胞疗法显示出已建立肿瘤的显著消退,且对红细胞的毒性极小。尽管将这项工作从小鼠转化到人类仍是一个重大挑战,但它为设计具有抗肿瘤疗效且对实体瘤安全的髓系细胞疗法带来了希望。
Tumor-associated macrophages are key myeloid cells in the tumor microenvironment (TME), acting as essential orchestrators of innate and adaptive immune responses. The efficacy of current antitumoral treatments can be promoted by macrophages, thanks to their phagocytosis, tumoricidal activity, and eliciting of adaptive immunity; or restricted by their expression of inhibitory counter-receptors (such as programmed death-ligand 1 or signal regulatory protein alpha). Furthermore, the continuous recruitment of these myelomonocytic cells into tumor tissues makes them attractive candidates for cell therapy with the development of chimeric antigen receptor (CAR) effector cells. This evidence highlights the strong therapeutic potential of macrophage engineering for the treatment of solid tumors. In this line of research, Du et al developed pArg1-CD47 CAR-M φ based on intrinsic Arg1 promoter responsiveness for TME-specific activation of cytotoxicity, effectively overcoming SIRPα inhibition against CD47+cancer cells. In preclinical murine models of breast and gastric cancer, this macrophage cell therapy demonstrated significant regression of established tumors with minimal toxicity towards erythrocytes. Although translating this work from mice to humans remains a significant challenge, it provides hope for the design of myeloid cell therapies with antitumoral efficacy and safe profile for solid tumors.
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