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肺炎球菌结合疫苗在 CD19 CAR-T 细胞治疗后 6 个月内接种不诱导体液免疫应答

英文原题:Pneumococcal Conjugate Vaccine Does Not Induce Humoral Response When Administrated Within the Six Months After CD19 CAR T-Cell Therapy.

查看英文原题

Pneumococcal Conjugate Vaccine Does Not Induce Humoral Response When Administrated Within the Six Months After CD19 CAR T-Cell Therapy.

PubMed 2022/08/12(内容时间) Transplant Cell Ther Q1 · IF 4.7(JCR 2025)

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中文摘要

CD19靶向嵌合抗原受体修饰的T细胞疗法(CAR-T)会导致B细胞发育不全和低血清免疫球蛋白水平。长寿命的CD19阴性浆细胞可能在治疗过程中持续存在并产生抗体。目前缺乏数据描述CAR-T 如何影响针对疫苗相关抗原的抗体持续性,以及CAR-T 受者可能对疫苗产生应答的程度。

我们表征了CAR-T 对肺炎球菌免疫球蛋白G(IgG)滴度的影响,并确定在CAR-T 后接种肺炎球菌结合疫苗(PCV13)是否能产生针对肺炎球菌的长期体液保护。

我们进行了一项回顾性病历审查,以识别在CAR-T 前(基线)或CAR-T 后第+90、+180、+270、+360或+540天检测了血清肺炎球菌IgG滴度的CAR-T 受者。随后我们确定他们是否在这些时间点接种了PCV13疫苗。IgG浓度1.3 g/mL被认为对该血清型具有保护性,检测的11种疫苗特异性血清型中有6种达到该阈值的患者被认为具有针对肺炎球菌的体液保护。按血清型和疫苗接种状态分层的绝对肺炎球菌IgG滴度和具有体液保护的患者比例通过配对非参数t检验进行比较。在这些时间点测量了淋巴细胞、CD4 T细胞和CD19细胞的绝对计数及总IgG水平,以及侵袭性肺炎球菌感染的发生率。共识别出148名在至少一个既定时间点检测了肺炎球菌IgG滴度的CAR-T 受者。在基线时,25%(19/76)具有可评估肺炎球菌IgG滴度的患者符合体液保护的定义。

在44例基线和+90天有配对肺炎球菌IgG滴度的患者中,所有血清型的绝对IgG滴度均下降(几何均值分别为0.41和0.32 g/mL;P < .001)。13例患者在+90天滴度采血后接种疫苗,并在+90天和+180天有配对肺炎球菌IgG滴度。这些接种疫苗患者中所有疫苗特异性血清型的绝对IgG滴度从+90天到+180天下降(几何均值分别为0.36和0.29 g/mL;P = .03)。尽管在+90天接种疫苗,达到体液保护标准的患者比例在+180天保持不变。结果在8例于+180天接种疫苗的患者以及7例连续在+90天和+180天接种疫苗且有相应肺炎球菌IgG滴度的患者中相似。当所有疫苗特异性肺炎球菌IgG滴度按时间点合并分析而不考虑接种状态时,具有体液保护的患者比例下降直至+540天。部分患者在+360天接种疫苗后产生体液保护,从基线维持血清保护性IgG滴度,或因反复感染接受静脉注射免疫球蛋白治疗后产生保护。

我们的研究表明,少数大B细胞淋巴瘤患者在基线时对肺炎球菌具有体液保护,且现有IgG滴度在CAR-T 后下降。CAR-T 后+90天或+180天接种PCV13并未增加对肺炎球菌的体液保护。仅在+540天时,有证据表明在适度比例的患者中存在对肺炎球菌的体液保护。需要开展临床试验,以确定在CAR-T 之前或之后接种疫苗的最佳时机,从而建立针对肺炎链球菌感染的保护性免疫。

展开英文摘要原文

CD19 targeted chimeric antigen receptor-modified T cell therapy (CAR-T) leads to B cell aplasia and low serum immunoglobulin levels. Long-lived CD19-negative plasma cells may persist through the therapy and generate antibodies. There is a paucity of data describing how CAR-T impacts the persistence of antibodies against vaccine-related antigens and the degree to which CAR-T recipients may respond to vaccines.

We characterized the effect of CAR-T on pneumococcal immunoglobulin G (IgG) titers and determine whether pneumococcal conjugate vaccine (PCV13) administered after CAR-T develops long-term humoral protection against pneumococcus. A retrospective chart review was performed to identify CAR-T recipients who had serum pneumococcal IgG titers drawn before (baseline) or at days +90, +180, +270, +360, or +540 after CAR-T.

We then determined whether they received PCV13 vaccination at these timepoints. IgG concentration 1. 3 g/mL was considered protective for that serotype, and patients with 6/11 tested vaccine-specific serotypes meeting this threshold were deemed to have humoral protection against pneumococcus. Absolute pneumococcal IgG titers and the proportion of patients with humoral protection, stratified by serotype, and vaccination status were compared by paired nonparametric t-tests. Absolute counts for lymphocyte, CD4 T-cell, and CD19 cell and total IgG level, along with the rate of invasive pneumococcal infections, were measured at these timepoints. A total of 148 CAR-T recipients with pneumococcal IgG titers measured for at least one of the defined time points were identified. At baseline, 25% (19/76) patients with evaluable pneumococcal IgG titers met the definition of humoral protection. Among 44 patients with paired pneumococcal IgG titers at baseline and day+90, absolute IgG titers of all serotypes decreased (geometric mean = 0. 41 and 0. 32 g/mL, respectively; P < .

001). Thirteen patients were vaccinated following the titer blood draw at day+90 and had paired pneumococcal IgG titers at day+90 and day180. Absolute IgG titers of all vaccine specific serotypes in these vaccinated patients decreased from day+90 to day+180 (geometric mean = 0. 36 and 0. 29 g/mL, respectively; P = . 03). The proportion of patients meeting the criteria of humoral protection remained the same at day+180 despite vaccination at day+90.

The results were similar among 8 patients vaccinated at day+180, as well as 7 patients consecutively vaccinated at day+90 and day+180 with corresponding pneumococcal IgG titers. When all vaccine-specific pneumococcal IgG titers were pooled together by timepoint regardless of vaccination status, the proportion of patients with humoral protection decreased until day+540.

Some patients developed humoral protection after vaccination at day+360, maintained seroprotective IgG titers from baseline, or developed protection after receiving intravenous immunoglobulin treatment secondary to recurrent infections.

Our study demonstrated that few large B cell lymphoma patients had humoral protection against pneumococcus at baseline, and existing IgG titers decreased after CAR-T. PCV13 vaccination at day+90 or day+180 after CAR-T did not increase humoral protection against pneumococcus.

Only at day+540 was there evidence of humoral protection against pneumococcus in a modest proportion of patients. Clinical trials are needed to determine the optimal timing of vaccination, before or after CAR-T, to develop protective immunity against Streptococcus pneumoniae infections.

论文信息

作者
Lee D、Jordan AI、Menges MA、Lazaryan A、Nishihori T、Gaballa SR、Shah BD、Pinilla-Ibarz J
第一作者单位
Department of Internal Medicine, University of South Florida, Tampa, Florida.United States
通讯作者单位
Department of Blood and Marrow Transplant and Cellular Immunotherapy, Moffitt Cancer Center, Tampa, Florida. Electronic address: Frederick.locke@moffitt.org.United States
文献类型
美国 NIH 资助研究
期刊
Transplantation and cellular therapy2023 Apr
原文标识
PubMed 35970303 · DOI 10.1016/j.jtct.2022.08.011