探索细胞外囊泡与 CAR 技术融合作为新型免疫疗法的潜力

Ofir Bar, Angel Porgador, Tomer Cooks
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引用次数: 0

摘要

癌症治疗是一个动态发展的领域,不断涌现的创新方法为身患顽疾的患者带来了光明的前景。在治疗探索领域,嵌合抗原受体(CAR)T 细胞和 CAR NK 细胞作为新方法已经浮出水面,每种方法都具有独特的属性和变革潜力。经改造的免疫细胞能表达识别肿瘤特异性抗原的 CAR,将抗体特异性的精确性与 T 细胞强大的细胞毒性功能相结合,在治疗晚期癌症方面显示出显著的前景。然而,它们在实体瘤中的应用仍处于初级阶段,面临着独特的重大挑战。同样,CAR NK 细胞提供了一种独特的免疫治疗方法,它利用 NK 细胞上的 CAR,具有安全性高、制造简便等优势,可用于更广泛的癌症治疗。细胞外囊泡(EVs)能够携带重要的生物标志物和生物活性分子,是细胞间通信网络中的重要信使,因此已成为前景广阔的治疗药物。就癌症而言,EVs 的治疗潜力在于精确输送抑制肿瘤的蛋白质、核酸成分或靶向药物,从而重新定义精准医疗的范式。CAR 技术与 EVs 功能的融合开辟了一个新的治疗领域。CAR T EVs和CAR NK EVs利用EVs的力量,有可能缓解与活细胞疗法相关的挑战。EVs 被认为可以减少与 CAR T 细胞疗法相关的副作用,并有可能彻底改变实体瘤的穿透性。EVs 可作为促凋亡分子和 RNA 成分的载体,增强免疫反应,从而扩大其治疗潜力。在这篇综述文章中,我们将对动态景观进行导航,目的是评估比较疗效、安全性、生产复杂性和临床适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Exploring the potential of the convergence between extracellular vesicles and CAR technology as a novel immunotherapy approach

Exploring the potential of the convergence between extracellular vesicles and CAR technology as a novel immunotherapy approach

Cancer therapy is a dynamically evolving field, witnessing the emergence of innovative approaches that offer a promising outlook for patients grappling with persistent disease. Within the realm of therapeutic exploration, chimeric antigen receptor (CAR) T cells as well as CAR NK cells, have surfaced as novel approaches, each possessing unique attributes and transformative potential. Immune cells engineered to express CARs recognizing tumour-specific antigens, have shown remarkable promise in treating terminal cancers by combining the precision of antibody specificity with the potent cytotoxic function of T cells. However, their application in solid tumours is still in its nascent stages, presenting unique major challenges. On the same note, CAR NK cells offer a distinct immunotherapeutic approach, utilizing CARs on NK cells, providing advantages in safety, manufacturing simplicity, and a broader scope for cancer treatment. Extracellular vesicles (EVs) have emerged as promising therapeutic agents due to their ability to carry crucial biomarkers and biologically active molecules, serving as vital messengers in the intercellular communication network. In the context of cancer, the therapeutic potential of EVs lies in delivering tumour-suppressing proteins, nucleic acid components, or targeting drugs with precision, thereby redefining the paradigm of precision medicine. The fusion of CAR technology with the capabilities of EVs has given rise to a new therapeutic frontier. CAR T EVs and CAR NK EVs, leveraging the power of EVs, have the potential to alleviate challenges associated with live-cell therapies. EVs are suggested to reduce the side effects linked to CAR T cell therapy and hold the potential to revolutionize the penetrance in solid tumours. EVs act as carriers of pro-apoptotic molecules and RNA components, enhancing immune responses and thereby expanding their therapeutic potential. In this review article, we navigate dynamic landscapes, with our objective being to evaluate comparative efficacy, safety profiles, manufacturing complexities, and clinical applicability.

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