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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Keeping Myeloma in Check: The Past, Present and Future of Immunotherapy in Multiple Myeloma.
Keeping Myeloma in Check: The Past, Present and Future of Immunotherapy in Multiple Myeloma.
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多发性骨髓瘤是一种由恶性浆细胞引起、无法治愈的疾病,也是现代免疫治疗的理想靶点。多发性骨髓瘤特有的浆细胞生物学特征,加上其血液系统肿瘤属性和独特骨髓微环境,为设计特异性免疫疗法创造了机会;这类疗法可选择性杀伤转化细胞,同时尽量减少靶向肿瘤外组织的作用。广义而言,免疫治疗是利用免疫系统及免疫制剂治疗疾病。在多发性骨髓瘤领域,免疫治疗可分为四大类:免疫调节酰亚胺类药物、靶向抗体、过继细胞转移疗法和疫苗。近年来,这四类治疗均取得进展,带来疗效和特异性更强的治疗方法。对于免疫调节药物(IMiD),已开发出改良化学结构,以提高药物效力并减少剂量限制性副作用。靶向抗体疗法的发展得益于新型选择性表达靶点的发现,以及抗体偶联药物和双特异性抗体的开发。过继细胞疗法,尤其是CAR-T 疗法,则通过改进生产工艺,以及开发可增强CAR-T 激活并保护细胞免受免疫抑制微环境影响的CAR构建体而得到提升。本综述将首先介绍各类别的突破性疗法和当前临床应用的疗法,并探讨处于临床前及临床试验阶段的新兴治疗方法。
Multiple myeloma is an incurable disease of malignant plasma cells and an ideal target for modern immune therapy. The unique plasma cell biology maintained in multiple myeloma, coupled with its hematological nature and unique bone marrow microenvironment, provide an opportunity to design specifically targeted immunotherapies that selectively kill transformed cells with limited on-target off-tumor effects. Broadly defined, immune therapy is the utilization of the immune system and immune agents to treat a disease. In the context of multiple myeloma, immune therapy can be subdivided into four main categories: immune modulatory imide drugs, targeted antibodies, adoptive cell transfer therapies, and vaccines. In recent years, advances in all four of these categories have led to improved therapies with enhanced antitumor activity and specificity.
In IMiDs, modified chemical structures have been developed that improve drug potency while reducing dose limiting side effects. Targeted antibody therapies have resulted from the development of new selectively expressed targets as well as the development of antibody drug conjugates and bispecific antibodies.
Adoptive cell therapies, particularly CAR-T therapies, have been enhanced through improvements in the manufacturing process, as well as through the development of CAR constructs that enhance CAR-T activation and provide protection from a suppressive immune microenvironment. This review will first cover in-class breakthrough therapies for each of these categories, as well as therapies currently utilized in the clinic.
Additionally, this review will explore up and coming therapeutics in the preclinical and clinical trial stage.
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