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:Redefining central nervous system multiple myeloma: From rare phenomenon to emerging entity.
Redefining central nervous system multiple myeloma: From rare phenomenon to emerging entity.
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本综述支持以下假说:CNS-MM 可能是一种未被充分诊断、生物学上独特的疾病实体,需要专门的诊断和治疗策略。将新型诊断方法与具有 CNS 穿透性的治疗相结合,为管理这一超高危人群提供了一条可行路径。临床医生应考虑对高危患者进行该疾病实体的筛查,以改善生存。
多发性骨髓瘤的中枢神经系统受累(CNS-MM)被认为是髓外病变(EMD)中一种罕见但极具破坏性的表现,其生物学行为具有侵袭性且结局极差。过去数十年的治疗进展改善了MM患者的生存,然而,这并未转化为CNS-MM患者类似的生存获益。CNS-MM的早期识别和针对性治疗仍是重大的临床挑战。
本文献综述总结了关于CNS-MM的流行病学、危险因素、临床特征、诊断方式及治疗方法的现有文献。综述重点关注可能影响疾病自然病程的新兴生物标志物和新的治疗选择。本综述提出假设:CNS受累可能代表一种独特的生物学实体,其特征为独特的趋向性、耐药及微环境适应模式。
CNS-MM 通常发生于复发/难治性疾病的背景下,并与高危细胞遗传学异常、浆母细胞形态、循环浆细胞、乳酸脱氢酶升高以及其他部位的 EMD 相关。生存情况仍然较差,大多数队列报告自 CNS 受累起的中位总生存期不足 6 个月。由于血脑屏障的通透性差,系统治疗中的有效治疗方案对 CNS-MM 的疗效有限。CAR-T 细胞、双特异性抗体和鞘内化疗等新型疗法已显示出散在的活性,但数据仍然有限。未来方向:基于 CSF 的循环肿瘤 DNA(ctDNA)和可溶性 BCMA(sBCMA)等新兴诊断工具可能有助于更早期的检测和动态监测。尽管 sBCMA 已被证实与全身疾病活动性相关,但其在 CNS-MM 的 CSF 检测中的作用尚未得到验证。对高危患者进行筛查可能提高这些检测的预测价值。免疫治疗和细胞治疗的进展可能扩大治疗选择,但需要在治疗顺序方面给予指导,并考虑维持治疗。
Central nervous system involvement in multiple myeloma (CNS-MM) is considered a rare but devastating manifestation of extra-medullary disease (EMD) associated with aggressive biology and dismal outcomes. Treatment advances over the past few decades have improved survival in patients with MM, however, it has not translated into a similar survival benefit for those with CNS-MM. Early recognition and targeted management of CNS-MM remain major clinical challenges.
This literature review summarizes the current literature on epidemiology, risk factors, clinical features, diagnostic modalities, and therapeutic approaches to CNS-MM. It focuses on emerging biomarkers and new treatment options that may affect the natural course of the disease. This review hypothesizes that CNS involvement may represent a distinct biologic entity characterized by unique patterns of tropism, resistance, and microenvironmental adaptation.
CNS-MM typically arises in the context of relapsed or refractory disease and is associated with high-risk cytogenetics, plasmablastic morphology, circulating plasma cells, elevated lactate dehydrogenase, and other sites of EMD. Survival remains poor, with most cohorts reporting a median overall survival of less than 6 months from CNS involvement. Effective therapeutic options in systemic treatment have a limited effect in CNS-MM due to the poor penetration of the blood-brain barrier. Novel therapeutics such as CAR-T cells, bispecific antibodies, and intrathecal chemotherapy have shown isolated activity, but data remains limited. FUTURE DIRECTIONS: Emerging diagnostic tools such as CSF-based circulating tumor DNA (ctDNA) and soluble BCMA (sBCMA) may enable earlier detection and dynamic monitoring. While sBCMA has been correlated with systemic disease activity, its role in CSF-based testing for CNS-MM has not been validated. Screening high risk patients may increase the predictive value of these tests. Advances in immune and cellular therapy could expand treatment options but need direction on sequencing of therapies and consideration of maintenance therapy.
In conclusion, this review supports the hypothesis that CNS-MM may represent an underdiagnosed, biologically distinct entity, requiring dedicated diagnostic and therapeutic strategies. Integrating novel diagnostics with CNS-penetrant therapies offers a path forward in managing this ultra-high-risk population. Clinicians should consider screening high risk patients for this entity to affect survival.
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