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:Neurotoxicity following CD19/CD28ζ CAR T-cells in children and young adults with B-cell malignancies.
Neurotoxicity following CD19/CD28ζ CAR T-cells in children and young adults with B-cell malignancies.
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这是首次在 CAYA 中使用 CD19/CD28 CAR 构建体对神经毒性进行系统性分析,包括那些有活动性 CNS 受累的患者。该经验表明,神经毒性特征是可接受且可逆的,并有抗白血病反应和 CAR-T 细胞 CNS 转运的证据。此外,神经认知测试虽然是探索性的,但为未来研究提供了在神经毒性评估中采用系统性评估的机会,未来研究需要对其进行验证。
神经毒性是CD19 CAR-T 细胞疗法的已知毒性;然而,关于接受CD19/CD28 CAR-T 细胞治疗B细胞恶性肿瘤的儿童、青少年和年轻成人(CAYA)中神经毒性的信息很少。
我们分析了在I期研究(NCT01593696)中接受CD19/CD28 CAR-T 细胞治疗的CAYA患者的神经毒性。评估包括每日住院监测、基于照护者的神经症状检查表(NSC)、探索性神经认知评估、临床指征的影像学检查、CSF分析以及系统性细胞因子谱分析,其结果与细胞因子释放综合征(CRS)及输注后治疗反应相关。活动性CNS白血病患者被纳入。
在52例接受治疗的患者中,13例在输注时有活动性CNS白血病。11/52(21.2%)例患者出现神经毒性,在CRS患者中发生率为29.7%(11/37)。神经毒性与CRS的存在及严重程度相关。出现神经毒性的患者血清IL-6、IFN和IL-15峰值水平更高。此外,在大多数伴有CRS的患者中,CNS白血病被有效清除。初步神经认知测试显示,大多数患者的神经认知测试评分稳定至改善,尽管受到患者数量较少的限制。NSC使照护者能够对患者体验提供反馈。
Neurotoxicity is an established toxicity of CD19 CAR T-cell therapy; however, there is little information on neurotoxicity in children, adolescents, and young adults (CAYA) receiving CD19/CD28 CAR T-cells for B-cell malignancies.
We analyzed neurotoxicity of CD19/CD28 CAR T-cells in CAYA treated on a phase I study (NCT01593696). Assessments included daily inpatient monitoring, caregiver-based neuro-symptom checklist (NSC), exploratory neurocognitive assessments, clinically-indicated imaging, CSF analysis, and systematic cytokine profiling, outcomes of which were associated with cytokine release syndrome (CRS) and treatment response postinfusion. Patients with active CNS leukemia were included.
Amongst 52 patients treated, 13 patients had active CNS leukemia at infusion. Neurotoxicity was seen in 11/52 (21.2%) patients, with an incidence of 29.7% (11/37) in patients with CRS. Neurotoxicity was associated with the presence and severity of CRS. Those with neurotoxicity had higher levels of peak serum IL-6, IFN , and IL-15. Additionally, CNS leukemia was effectively eradicated in most patients with CRS. Pilot neurocognitive testing demonstrated stable-to-improved neurocognitive test scores in most patients, albeit limited by small patient numbers. The NSC enabled caregiver input into the patient experience.
This is the first systematic analysis of neurotoxicity utilizing a CD19/CD28 CAR construct in CAYA, including in those with active CNS involvement. The experience demonstrates that the neurotoxicity profile was acceptable and reversible, with evidence of anti-leukemia response and CNS trafficking of CAR T-cells. Additionally, neurocognitive testing, while exploratory, provides an opportunity for future studies to employ systematic evaluations into neurotoxicity assessments and validation is needed in future studies.
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