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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Local immunotherapy of glioblastoma: A comprehensive review of the concept.
Local immunotherapy of glioblastoma: A comprehensive review of the concept.
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尽管标准治疗取得了进展,胶质母细胞瘤(GBM)的预后仍然很差,这促使人们研究新的治疗方法。免疫治疗是GBM一种有前景的治疗选择,目前有许多免疫治疗药物正在研究中。嵌合抗原受体(CAR)T细胞在GBM免疫治疗中发展迅速,许多临床试验显示CAR-T 细胞在识别肿瘤相关抗原(TAAs)后发挥抗肿瘤活性。CAR-T 细胞的耗竭会降低其长期持久性和抗肿瘤作用的能力。局部免疫治疗靶向肿瘤微环境,为CAR-T 细胞创造更有利的免疫环境,有可能减少CAR-T 细胞耗竭并增强免疫力。三级淋巴结构(TLS)是异位淋巴样结构,可在肿瘤微环境或其他非淋巴组织中形成。作为一种综合性局部免疫治疗工具,将TLS整合到植入式可生物降解支架中具有惊人的免疫治疗潜力。通过策略性地将干扰素基因刺激因子(STING)激动剂插入支架中,可以进一步增强对GBM的免疫反应。
此外,支架中加入胶质瘤干细胞(GSC),免疫治疗方法可利用其作为靶点,增强从源头清除癌细胞。此外,已有研究表明GSC对TLS形成有影响,有助于创造有利的肿瘤微环境。
在此,我们概述了高度特异性的串联AND门CAR-T 细胞以及上述组分的局部递送。通过将CAR-T 细胞、TLS、STING激动剂和GSCs整合到可植入的生物可降解支架中,提供了一种多方面的方法,成功调动免疫系统对GBM发起有效的靶向免疫应答。这种方法为GBM患者提供了一种有前景的治疗途径。
Despite advancements in standard treatments, the prognosis of Glioblastoma (GBM) remains poor, prompting research for novel therapies. Immunotherapy is a promising treatment option for GBM, and many immunotherapeutic agents are currently under investigation. Chimeric antigen receptor (CAR) T cells are rapidly evolving in immunotherapy of GBM with many clinical trials showing efficacy of CAR T cells exerting anti-tumor activity following recognition of tumor-associated antigens (TAAs). Exhaustion in CAR T cells can reduce their capacity for long-term persistence and anti-tumor action.
Local immunotherapy, which targets the tumor microenvironment and creates a more hospitable immunological environment for CAR T cells, has the potential to reduce CAR T cell exhaustion and increase immunity. Tertiary lymphoid structures (TLS) are ectopic lymphoid-like formations that can develop within the tumor microenvironment or in other non-lymphoid tissues.
As a comprehensive local immunotherapy tool, the incorporation of TLS into an implanted biodegradable scaffold has amazing immunotherapeutic potential. The immune response to GBM can be improved even further by strategically inserting a stimulator of interferon genes (STING) agonist into the scaffold.
Additionally, the scaffold's addition of glioma stem cells (GSC), which immunotherapeutic approaches may use to target, enhances the removal of cancer cells from their source.
Furthermore, it has been demonstrated that GSCs have an impact on TLS formation, which helps to create a favorable tumor microenvironment.
Herein, we overview local delivery of a highly specific tandem AND-gate CAR T cell along with above mentioned components. A multifaceted approach that successfully engages the immune system to mount an efficient targeted immune response against GBM is provided by the integration of CAR T cells, TLS, STING agonists, and GSCs within an implantable biodegradable scaffold. This approach offers a promising therapeutic approach for patients with GBM.
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