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:Translating advances in primary central nervous system lymphoma: from prognostic stratification to treatment innovation.
Translating advances in primary central nervous system lymphoma: from prognostic stratification to treatment innovation.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
原发性中枢神经系统淋巴瘤(PCNSL)是一种罕见但侵袭性强、局限于中枢神经系统(CNS)的弥漫大B细胞淋巴瘤,具有独特的临床行为和治疗挑战。基于大剂量甲氨蝶呤(HD-MTX)的方案改善了结局,但复发、治疗毒性和年龄相关衰弱仍是主要障碍。本综述总结PCNSL预后分层和治疗方面的进展,重点介绍两种已验证的临床模型(IELSG和MSKCC)以及可进一步优化风险评估的新兴基因组生物标志物。对于适合治疗的患者(包括许多老年患者),基于HD-MTX的诱导治疗(MTR、R-MPV、MATRix、R-MBVP)是标准一线方案。符合条件者接受以噻替派为基础的大剂量化疗联合自体干细胞移植(HDC-ASCT)巩固,可获得持久疾病控制;不适合移植者则可选择非清髓性阿糖胞苷化疗或减低剂量全脑放疗。复发疾病中,既往应答者可从甲氨蝶呤再挑战中获益;BTK或免疫调节剂(IMiD)方案、CAR-T 疗法以及局部或全脑放疗正在积极研究。HD-MTX或靶向药物维持治疗显示出前景,但仍需验证。尽管治疗结局稳步改善,特别是采用HD-MTX诱导和HDC-ASCT巩固后,老年及复发患者的长期生存仍不理想。整合分子生物标志物、减少神经毒性的巩固治疗和新型免疫疗法,或可进一步实现治疗个体化并提高缓解持久性。
Primary central nervous system lymphoma (PCNSL) is a rare but aggressive diffuse large B-cell lymphoma confined to the CNS, characterized by unique clinical behavior and therapeutic challenges. Outcomes have improved with high-dose methotrexate (HD-MTX)-based regimens, but relapse, treatment toxicity, and age-related frailty remain major barriers. This review synthesizes advances in prognostic stratification and treatment of PCNSL.
We highlight two validated clinical models (IELSG and MSKCC) and emerging genomic biomarkers that refine risk assessment. HD-MTX-based induction (MTR, R-MPV, MATRix, R-MBVP) is the standard first-line approach for fit patients, including many older adults. Consolidation with thiotepa-based high-dose chemotherapy and autologous stem-cell transplantation (HDC-ASCT) yields durable disease control in eligible patients, whereas non-myeloablative cytarabine-based chemotherapy or reduced-dose whole-brain radiotherapy remains an option for those unfit for transplant.
In relapsed disease, methotrexate rechallenge benefits prior responders, while BTK- or IMiD-based regimens, CAR-T therapy, and focal or whole-brain radiotherapy are under active investigation. Maintenance with HD-MTX or targeted agents shows promise but requires validation.
Although therapeutic outcomes have steadily improved, particularly with HD-MTX-based induction and HDC-ASCT consolidation, long-term survival for elderly and relapsed patients remains unsatisfactory. The integration of molecular biomarkers, neurotoxicity-sparing consolidation, and novel immunotherapies may further individualize treatment and improve the durability of remission.
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