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:Facts and Hopes: Toward the Next Quantum Leap in Melanoma.
晚期黑色素瘤是源自黑色素细胞、能够广泛转移的最致命皮肤癌,其预后已大幅改善,过去10年间,美国癌症联合委员会第4期黑色素瘤患者的死亡率每年下降3%至5%。
由黑素细胞产生、可广泛转移且致死率最高的皮肤癌之一——晚期黑色素瘤,治疗结局已显著改善。过去10年间,AJCC 4期黑色素瘤患者死亡率每年下降3%–5%。这主要归因于靶向治疗和免疫治疗的进展。针对BRAF和MEK的晚期黑色素瘤靶向抑制剂引领了癌症靶向治疗策略的发展;免疫检查点阻断疗法也先后首次获批,靶点包括CTLA-4、PD-1和LAG-3。此外,靶向gp100抗原的T细胞衔接疗法和TIL(肿瘤浸润淋巴细胞)疗法也已获批。这些治疗均改善了患者结局,包括使多达半数晚期患者获得长期持久应答。此外,辅助和新辅助治疗方法降低了II期和III期患者的复发风险。由于具有免疫原性且存在明确可靶向突变,黑色素瘤药物研发引领了癌症研究中新方法的发展。然而,对于复发或无应答疾病患者,以及黏膜、肢端和葡萄膜等罕见亚型,仍需额外治疗方法。改造T细胞的进展,包括T细胞受体、CAR-T 细胞及CRISPR基因编辑策略,为未来治疗带来希望。持续深入认识肿瘤的分子和免疫微环境及异质性、微生物组,以及涵盖预防、治疗耐药机制和新疗法等多元方法,将有助于进一步降低黑色素瘤死亡率。
Outcomes from advanced melanoma, the deadliest of the skin cancers arising from melanocytes and capable of widely metastasizing, have greatly improved, with death rates decreasing for patients with American Joint Committee on Cancer stage 4 melanoma by 3% to 5% annually over the past 10 years. This improvement is a result of advances in both targeted therapy and immunotherapy. BRAF and MEK inhibitors for advanced melanoma have led the way for targeted cancer strategies and first-in-class approvals for immune checkpoint blockers targeting CTLA4, PD-1, and LAG3; T-cell engager therapy targeting the antigen gp100; and tumor-infiltrating lymphocyte therapy. All of these have contributed to enhanced outcomes, including long-term durable responses in up to half of patients with advanced disease. In addition, adjuvant and neoadjuvant approaches are reducing the risk of relapse in patients with stage II and III disease. Because of its immunogenicity and defined targetable mutations, melanoma drug development has led the way for novel approaches in cancer research. Yet additional approaches are needed for patients with recurrent or nonresponsive disease or rare subtypes, including mucosal, acral, and uveal melanomas. Progress in modified T cells, including T-cell receptor, chimeric antigen receptor T-cell (CAR-T), and CRISPR gene editing strategies, holds promise for future therapeutics. Continued understanding of the molecular and immune tumor microenvironment and heterogeneity, as well as understanding the microbiome and numerous diverse approaches to topics ranging from prevention to mechanisms of treatment resistance and novel therapeutic approaches, will optimize opportunities to further decrease melanoma mortality.
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