决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:The Leading Role of the Immune Microenvironment in Multiple Myeloma: A New Target with a Great Prognostic and Clinical Value.
多发性骨髓瘤(MM)是一种浆细胞(PC)恶性肿瘤,其发展在骨髓微环境(BMME)中十分活跃。
多发性骨髓瘤(MM)是浆细胞(PC)恶性肿瘤,其发生发展依赖骨髓微环境(BMME)。骨髓微环境成分的免疫编辑可能通过先促进免疫耐受、继而使肿瘤细胞逃避免疫监视,推动MM进展。在这一动态过程中,免疫效应细胞受到抑制并逐渐变为无反应状态,这有助于解释无应答及复发MM患者的耐药机制。除传统治疗外,多种新策略正试图靶向免疫编辑过程中的关键成分,重新建立骨髓微环境的免疫平衡,尤其针对已接受过治疗的MM患者。CXCR4、含免疫球蛋白和ITIM结构域的T细胞免疫受体(TIGIT)、PD-1和CTLA-4等免疫检查点已被确定为免疫耐受的常见环节,也是免疫治疗靶点。MM浆细胞表达的B细胞成熟抗原(BCMA)可用于CAR-T细胞、抗体药物偶联物(ADC)和双特异性单克隆抗体治疗。已获批的抗CD38抗体(达雷妥尤单抗、艾萨妥昔单抗)、抗VLA4抗体(那他珠单抗)及抗SLAMF7抗体(埃洛妥珠单抗)均可干预免疫编辑通路。正在评估的新型实验药物(CD137阻断剂、MSC来源微囊泡阻断剂、CSF-1/CSF-1R系统阻断剂及Th17/IL-17/IL-17R阻断剂),以及已获批的地舒单抗和双膦酸盐,均可能有助于减缓免疫逃逸和疾病进展。因此,识别失调机制可能帮助开发新的免疫治疗方法,改善MM患者结局。
Multiple myeloma (MM) is a plasma cell (PC) malignancy whose development flourishes in the bone marrow microenvironment (BMME). The BMME components' immunoediting may foster MM progression by favoring initial immunotolerance and subsequent tumor cell escape from immune surveillance. In this dynamic process, immune effector cells are silenced and become progressively anergic, thus contributing to explaining the mechanisms of drug resistance in unresponsive and relapsed MM patients. Besides traditional treatments, several new strategies seek to re-establish the immunological balance in the BMME, especially in already-treated MM patients, by targeting key components of the immunoediting process. Immune checkpoints, such as CXCR4, T cell immunoreceptor with immunoglobulin and ITIM domains (TIGIT), PD-1, and CTLA-4, have been identified as common immunotolerance steps for immunotherapy. B-cell maturation antigen (BCMA), expressed on MMPCs, is a target for CAR-T cell therapy, antibody-(Ab) drug conjugates (ADCs), and bispecific mAbs. Approved anti-CD38 (daratumumab, isatuximab), anti-VLA4 (natalizumab), and anti-SLAMF7 (elotuzumab) mAbs interfere with immunoediting pathways. New experimental drugs currently being evaluated (CD137 blockers, MSC-derived microvesicle blockers, CSF-1/CSF-1R system blockers, and Th17/IL-17/IL-17R blockers) or already approved (denosumab and bisphosphonates) may help slow down immune escape and disease progression. Thus, the identification of deregulated mechanisms may identify novel immunotherapeutic approaches to improve MM patients' outcomes.
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