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:Characterization of the endotheliopathy, innate-immune activation and hemostatic imbalance underlying CAR-T cell toxicities: laboratory tools for an early and differential diagnosis.
Characterization of the endotheliopathy, innate-immune activation and hemostatic imbalance underlying CAR-T cell toxicities: laboratory tools for an early and differential diagnosis.
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本研究为当前关于 CAR-T 细胞毒性病理生理学的认识提供了相关贡献。
CAR-T 治疗血液恶性肿瘤可引发危及生命的CRS和ICANS,血管内皮可能参与其病理过程;同时,这些毒性与常见感染性脓毒症鉴别困难,合适实验室工具对管理至关重要。
研究纳入62例CAR-T 患者(46例CD19阳性疾病,16例多发性骨髓瘤),在输注前、输注后24至48小时、疑似毒性发作时及免疫调节治疗后24至48小时采集血浆。检测内皮功能障碍标志物(sVCAM-1、sTNFRI、血栓调节蛋白、ST2、Ang-2)、先天免疫激活指标(NET、可溶性C5b-9)及止血/纤溶指标(VWF抗原、ADAMTS-13、α2-抗纤溶酶、PAI-1抗原),并与脓毒症患者和健康供者比较。
出现CAR-T 毒性者在临床发作时sVCAM-1、sTNFRI和ST2较输注后升高。输注24小时ST2可较好预测任何CAR-T 毒性;ST2、Ang-2和NET组合可区分需入住ICU者与较轻病例。Ang-2、NET、sC5b-9、VWF抗原和PAI-1抗原组合可高效区分严重CAR-T 毒性与脓毒症。
内皮病变、先天免疫激活及止血失衡标志物可能用于预测CAR-T 毒性、评估严重程度和鉴别诊断。
Chimeric antigen receptor (CAR)-T cell-based immunotherapy constitutes a revolutionary advance for treatment of relapsed/refractory hematological malignancies. Nevertheless, cytokine release and immune effector cell-associated neurotoxicity syndromes are life-threatening toxicities in which the endothelium could be a pathophysiological substrate. Furthermore, differential diagnosis from sepsis, highly incident in these patients, is challenging. Suitable laboratory tools could be determinant for their appropriate management.
Sixty-two patients treated with CAR-T cell immunotherapy for hematological malignancies (n=46 with CD19-positive diseases, n=16 with multiple myeloma) were included. Plasma samples were obtained: before CAR-T cell infusion (baseline); after 24-48 hours; at suspicion of any toxicity onset and 24-48 hours after immunomodulatory treatment. Biomarkers of endothelial dysfunction (soluble vascular cell adhesion molecule 1 (sVCAM-1), soluble TNF receptor 1 (sTNFRI), thrombomodulin (TM), soluble suppression of tumorigenesis-2 factor (ST2), angiopoietin-2 (Ang-2)), innate immunity activation (neutrophil extracellular traps (NETs), soluble C5b-9 (sC5b-9)) and hemostasis/fibrinolysis (von Willebrand Factor antigen (VWF:Ag), ADAMTS-13 (A13), 2-antiplasmin ( 2-AP), plasminogen activator inhibitor-1 antigen (PAI-1 Ag)) were measured and compared with those in cohorts of patients with sepsis and healthy donors.
Patients who developed CAR-T cell toxicities presented increased levels of sVCAM-1, sTNFRI and ST2 at the clinical onset versus postinfusion values. Twenty-four hours after infusion, ST2 levels were good predictors of any CAR-T cell toxicity, and combination of ST2, Ang-2 and NETs differentiated patients requiring intensive care unit admission from those with milder clinical presentations. Association of Ang-2, NETs, sC5b-9, VWF:Ag and PAI-1 Ag showed excellent discrimination between severe CAR-T cell toxicities and sepsis.
This study provides relevant contributions to the current knowledge of the CAR-T cell toxicities pathophysiology. Markers of endotheliopathy, innate immunity activation and hemostatic imbalance appear as potential laboratory tools for their prediction, severity and differential diagnosis.
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