决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Reduced Antibodies and Innate Cytokine Changes in SARS-CoV-2 BNT162b2 mRNA Vaccinated Transplant Patients With Hematological Malignancies.
Reduced Antibodies and Innate Cytokine Changes in SARS-CoV-2 BNT162b2 mRNA Vaccinated Transplant Patients With Hematological Malignancies.
与未接种过疫苗的受种者相比,这些患者对疫苗接种表现出异质性的适应性免疫应答和固有免疫应答,体液免疫应答较低、固有免疫细胞因子应答减弱。
包括血液系统恶性肿瘤患者在内的免疫功能低下人群,感染 SARS-CoV-2 后发生重症的风险较高。疫苗提供的保护通常较弱,而导致疫苗效力下降的生物学机制尚未充分了解。本研究纳入接受过骨髓移植或 CAR-T 细胞治疗的患者队列,在其接种两剂 BNT162b2 mRNA 疫苗后进行研究,并与健康疫苗接种者比较。比较两组疫苗接种者的抗刺突蛋白抗体和全身先天免疫反应。患者针对武汉株的 SARS-CoV-2 刺突蛋白抗体显著较低,对 Beta、Delta 和 Omicron 刺突蛋白受体结合域(RBD)的交叉识别能力也相应较低。两组均可中和野生型 WA1 和 Delta,但不能中和 Omicron。接种疫苗会诱导先天细胞因子特征,包括 IFN-γ、IL-15 和 IP-10/CXCL10;但多数患者的全身细胞因子反应减弱。在未产生抗体的患者中,全身先天反应以 IL-8 和 MIP-1 为主,IFN-γ、IL-15 和 IP-10/CXCL10 特征反应显著减弱。初始接种时 IFN-γ 和 IP-10/CXCL10 的变化,以及加强接种后 IFN-γ、IL-15、IL-7 和 IL-10 的变化,与刺突蛋白抗体水平相关,并可预测能否成功产生抗体。总体而言,与未接受免疫抑制治疗的疫苗接种者相比,患者的适应性和先天免疫应答存在异质性,且体液反应较低、先天细胞因子反应减弱。所述应答模式为提高血液系统恶性肿瘤移植患者 COVID-19 疫苗有效性提供了新的预后评估方法。
Immunocompromised individuals including patients with hematological malignancies constitute a population at high risk of developing severe disease upon SARS-CoV-2 infection. Protection afforded by vaccination is frequently low and the biology leading to altered vaccine efficacy is not fully understood. A patient cohort who had received bone marrow transplantation or CAR-T cells was studied following a 2-dose BNT162b2 mRNA vaccination and compared to healthy vaccine recipients. Anti-Spike antibody and systemic innate responses were compared in the two vaccine cohorts. The patients had significantly lower SARS-CoV-2 Spike antibodies to the Wuhan strain, with proportional lower cross-recognition of Beta, Delta, and Omicron Spike-RBD proteins. Both cohorts neutralized the wildtype WA1 and Delta but not Omicron. Vaccination elicited an innate cytokine signature featuring IFN- , IL-15 and IP-10/CXCL10, but most patients showed a diminished systemic cytokine response. In patients who failed to develop antibodies, the innate systemic response was dominated by IL-8 and MIP-1 with significant attenuation in the IFN- , IL-15 and IP-10/CXCL10 signature response. Changes in IFN- and IP-10/CXCL10 at priming vaccination and IFN- , IL-15, IL-7 and IL-10 upon booster vaccination correlated with the Spike antibody magnitude and were predictive of successful antibody development. Overall, the patients showed heterogeneous adaptive and innate responses with lower humoral and reduced innate cytokine responses to vaccination compared to na ve vaccine recipients. The pattern of responses described offer novel prognostic approaches for potentiating the effectiveness of COVID-19 vaccination in transplant patients with hematological malignancies.
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