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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Spectrum and prognosis of CAR-T-related endocrine toxicity: glucose/calcium dysregulation, pituitary axis disorders, and overlap with CRS.
Spectrum and prognosis of CAR-T-related endocrine toxicity: glucose/calcium dysregulation, pituitary axis disorders, and overlap with CRS.
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这项整合分析揭示了 CAR-T 细胞相关内分泌毒性的独特谱系,涵盖血糖和钙代谢紊乱、垂体轴功能障碍以及自身免疫现象。其与 CRS 频繁且可能致命的重叠凸显了加强临床警惕的必要性。有必要主动监测内分泌功能,尤其是在发生 CRS 的患者中,以减轻这些被低估的并发症。
嵌合抗原受体(CAR)T细胞疗法越来越多地用于血液系统恶性肿瘤,但其内分泌不良事件(AEs)的谱系及临床意义仍缺乏充分描述。
识别与CAR-T 细胞治疗相关的内分泌AE信号并进行临床背景分析,重点关注其与细胞因子释放综合征(CRS)的重叠。
我们进行了一项回顾性比例失衡分析,使用FDA不良事件报告系统(FAERS)数据库(2017年至2025年第二季度)。针对六种CAR-T 细胞产品相关的内分泌不良事件,计算了报告比值比(ROR)和信息成分(IC)。为验证和阐述这些药物警戒信号,我们进行了一项结构化文献综述,以识别已发表的临床证据。
FAERS 分析识别出 269 份内分泌 AE 报告,产生 14 个显著的不比例信号。高血糖是最常报告的事件,而雌激素缺乏显示出最强的信号强度(ROR = 14.93)。肾上腺功能不全和下丘脑-垂体疾病的信号主要与 axicabtagene 相关。关键的是,在内分泌信号阳性的病例中,死亡被频繁报告,尤其是当内分泌 AE 与 CRS 同时发生时。文献综述提供了直接的临床验证:一项回顾性研究证实了 CRS 相关高血糖的发生率为 39%,独立的病例报告记录了首例 CAR-T 细胞治疗诱导的桥本甲状腺炎和中枢性尿崩症。这些临床病例佐证了 FAERS 信号,并提示免疫炎症机制,通常独立于皮质类固醇使用。
Chimeric antigen receptor (CAR) T-cell therapy is increasingly used for hematologic malignancies, yet the spectrum and clinical significance of its endocrine adverse events (AEs) remain poorly characterized.
To identify and clinically contextualize signals of endocrine AEs associated with CAR T-cell therapy, with a focus on their overlap with cytokine release syndrome (CRS).
We performed a retrospective disproportionality analysis using the FDA Adverse Event Reporting System (FAERS) database (2017 to Q2 2025). Reporting odds ratio (ROR) and information component (IC) were calculated for endocrine AEs associated with six CAR T-cell products. To validate and elaborate these pharmacovigilance signals, a structured literature review was conducted to identify published clinical evidence.
The FAERS analysis identified 269 endocrine AE reports, yielding 14 significant disproportionality signals. Hyperglycemia was the most frequently reported event, while estrogen deficiency showed the strongest signal strength (ROR = 14.93). Signals for adrenal insufficiency and hypothalamo-pituitary disorders were primarily associated with axicabtagene. Critically, mortality was frequently reported among cases with positive endocrine signals, particularly when the endocrine AE co-occurred with CRS. The literature review provided direct clinical validation: a retrospective study confirmed a 39% incidence of CRS-associated hyperglycemia, and independent case reports documented the first instances of CAR T-cell therapy-induced Hashimoto's thyroiditis and central diabetes insipidus. These clinical cases corroborated the FAERS signals and suggested immune-inflammatory mechanisms, often independent of corticosteroid use.
This integrated analysis reveals a distinct spectrum of CAR T-cell-related endocrine toxicities, encompassing glucose and calcium dysregulation, pituitary axis disorders, and autoimmune phenomena. The frequent and potentially fatal overlap with CRS underscores the need for enhanced clinical vigilance. Proactive monitoring of endocrine function, especially in patients experiencing CRS, is warranted to mitigate these underrecognized complications.
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