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:Advances in immunotherapy for thyroid malignancies: from molecular targets to clinical outcomes.
Advances in immunotherapy for thyroid malignancies: from molecular targets to clinical outcomes.
近期研究强调了靶向 PD-1/PD-L1 和 CTLA-4 通路的免疫检查点抑制剂在部分未分化甲状腺癌(ATC)、甲状腺髓样癌(MTC)和表达 PD-L1 的分化型甲状腺癌患者群体中的关键疗效。下一代免疫调节剂,特别是针对 LAG-3 和 TIM-3 的抑制剂,正在联合治疗框架中接受评估。
甲状腺癌包括多种内分泌肿瘤,主要有乳头状癌、滤泡状癌、髓样癌和未分化癌,每种类型因其分子改变、临床行为和治疗反应性而有所区别。当前的治疗方案包括手术切除、放射性碘治疗和选择性小分子抑制剂,尽管对许多病例有效,但面临显著局限性,尤其是在未分化癌和晚期髓样癌中,对常规药物的耐药性与预后不良相关,因此需要探索创新的治疗策略。
本文综述了甲状腺癌当代免疫治疗导向的干预措施,重点阐述了可操作肿瘤抗原的阐明、免疫肿瘤微环境的重新工程化,以及将这些实验室发现转化为可行的、基于证据的临床方案的持续努力。
近期研究强调了靶向 PD-1/PD-L1 和 CTLA-4 通路的免疫检查点抑制剂在部分未分化甲状腺癌(ATC)、甲状腺髓样癌(MTC)和表达 PD-L1 的分化型甲状腺癌患者群体中的关键疗效。下一代免疫调节剂,特别是针对 LAG-3 和 TIM-3 的抑制剂,正在联合治疗框架中接受评估。旨在引发针对 BRAF V 600 E 突变、RET/PTC 融合及其他新抗原应答的疫苗,在初步试验队列中已显示出有前景的免疫原性特征,而过继转移方法,包括TIL(肿瘤浸润淋巴细胞)动员和工程化 CAR-T 淋巴细胞,正在通过临床前和早期临床基准推进。同时,溶瘤病毒载体正被用于放大新抗原释放,并因此放大全身免疫。当免疫治疗方式与酪氨酸激酶抑制剂(TKIs)或放射治疗方案审慎联合时,累积抗肿瘤效应被增强,据称是通过诱导免疫原性细胞死亡和重编程免疫耐受肿瘤生态系统等机制实现的。结论与未来展望:免疫治疗将改变甲状腺癌的治疗范式,尽管剩余障碍,分化型肿瘤令人不安的低基线免疫原性、快速且反复无常的耐药性出现,以及复杂的免疫相关内分泌毒性,必须被系统性解决。该领域的成功将取决于基于实用生物标志物的队列选择、新免疫原性表位的发现,以及协同治疗组合的精心设计。基因组、转录组和免疫景观剖析的协同杠杆作用,结合前沿工程化淋巴细胞平台和工程化溶瘤载体,可能最终使免疫治疗成为晚期甲状腺癌定制医学中不可撼动的支柱。
BACKGROUND: Thyroid cancers comprise a diverse collection of endocrine tumors, notably papillary, follicular, medullary, and anaplastic carcinomas, each differentiated by their molecular alterations, clinical behavior, and responsiveness to therapies. Current treatment algorithms of surgical resection, radioiodine treatment, and selective small-molecule inhibitors, although effective for many cases, confront significant limitations, particularly in anaplastic and advanced medullary tumors, where resistance to conventional agents correlates with diminished prognosis, thereby demanding the exploration of innovative therapeutic strategies. PURPOSE: This article reviews contemporary immunotherapy-directed interventions for thyroid cancers, highlighting the elucidation of actionable tumor antigens, the reengineering of the immunologic tumor microenvironment, and the ongoing efforts to translate these laboratory findings into practicable, evidence-based clinical protocols. KEY FINDINGS: Recent studies underscore the critical efficacy of immune checkpoint inhibitors targeting the PD-1/PD-L1 and CTLA-4 pathways in select populations of anaplastic thyroid carcinoma (ATC), medullary thyroid carcinoma (MTC), and PD-L1-expressing differentiated thyroid cancers. Next-generation immune modulators, specifically inhibitors directed against LAG-3 and TIM-3, are being evaluated in combinatorial frameworks. Vaccines engineered to elicit responses against the BRAF V 600 E mutation, RET/PTC fusions, and additional neoantigens have shown promising immunogenic profiles in preliminary trial cohorts, while adoptive transfer methodologies, including tumor-infiltrating lymphocyte (TIL) mobilization and engineered CAR-T lymphocytes, are progressing through preclinical and early-phase clinical benchmarks. Concurrently, oncolytic viral vectors are being harnessed to amplify neoantigen liberation and, consequently, to amplify systemic immunity. When immunotherapeutic modalities are judiciously aligned with tyrosine kinase inhibitors (TKIs) or radiotherapeutic regimens, cumulative anti-tumor effects are accentuated, purportedly through mechanisms such as immunogenic cell death induction and the reprograming of immune-tolerant tumor ecosystems. CONCLUSION AND FUTURE PERSPECTIVE: Immunotherapy is set to transform the treatment paradigm for thyroid cancers, although remaining hurdles, the disquietingly low baseline immunogenicity of differentiated tumors, the rapid, capricious emergence of resistance, and complex immune-related endocrine toxicities, must be systematically addressed. Success in this arena will hinge on utilitarian biomarker-based cohort selection, the discovery of fresh immunogenic epitopes, and the meticulous design of synergistic treatment combinations. The synergistic leverage of genomic, transcriptomic, and immune landscape dissection, coupled with cutting-edge engineered lymphocyte platforms and engineered oncolytic vectors, may finally position immunotherapy as an unassailable pillar of bespoke medicine for advanced thyroid carcinomas.
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