研究概要
(3)结果:本研究纳入 429 例患者,这些患者在 2021 年 9 月 26 日至 10 月 30 日期间接种了第三剂 tozinameran。
中文摘要
(1)背景:临床证据引发了对COVID-19 mRNA疫苗与血栓栓塞事件之间可能存在关联的担忧。迄今尚无研究探讨这一潜在关联对正在接受积极治疗的癌症患者的影响。我们利用Vax-On-Third-Profile研究的前瞻性监测数据,考察接种第三剂mRNA-BNT162b2(tozinameran)后静脉血栓栓塞(VTE)的发生情况,以及其与抗体和淋巴细胞应答的关联。(2)方法:纳入接种第三剂tozinameran且此前30天未发生VTE的患者。分别在加强接种前(时间点1)及4周后(时间点2)进行血清学评估,测定针对SARS-CoV-2刺突蛋白的抗体滴度,并检测辅助性T细胞、细胞毒性T细胞、B细胞及NK细胞的绝对计数。数据于2021年11月至2022年10月收集,并于2022年11月至2023年10月分析。(3)结果:研究纳入429例患者,他们于2021年9月26日至10月30日期间接种第三剂tozinameran。在重点关注的活动治疗中,109例(25.4%)患者接受靶向治疗,111例(25.9%)接受细胞毒性化疗,39例(9.1%)接受免疫检查点抑制剂,21例(4.9%)接受内分泌治疗,30例(7.0%)在加强接种前8周内接受化疗联合靶向药物。另有119例(27.7%)患者已停用任何全身治疗至少12周,作为参照亚组。中位随访10.6个月(95%置信区间[CI] 8.1–11.7)后,一般人群中共观察到31例VTE,总发生率为7.2%(95% CI 5.0–10.1)。加强免疫后发生VTE的中位时间为99天(95% CI 85–112)。单变量比较显示,接受靶向治疗(11.3%;95% CI 6.0–18.9;P=0.030)或免疫检查点抑制剂(16.2%;95% CI 6.2–32.0;P=0.012)的患者,VTE发生率显著高于参照队列(3.4%;95% CI 0.9–8.5)。免疫应答单变量分析显示,只有NK细胞分布的动态变化与VTE发生显著相关。多变量回归分析确认,NK细胞应答水平较高(OR 6.10;95% CI 2.16–17.21;P=0.001)、既往血栓栓塞事件(OR 9.81;95% CI 3.99–24.13;P<0.001)及存在中心静脉导管(OR 5.02;95% CI 1.84–13.67;P=0.002)与VTE风险升高独立相关。(4)结论:这项前瞻性队列研究提供了前所未有的证据,表明癌症患者接种第三剂tozinameran后VTE风险并未升高,且与活动治疗类型无关。特定淋巴细胞应答模式似乎会增加血栓栓塞风险,提示免疫失调可能是其致病共同因素。这些发现强调,应对癌症患者定期接种COVID-19疫苗后的情况加强监测。
展开英文摘要原文
(1) Background: Clinical evidence has raised concerns regarding a potential link between COVID-19 mRNA-based vaccines and the occurrence of thromboembolic events. So far, no research has explored the effects of this possible interaction in cancer patients undergoing active treatment. We leveraged prospective monitoring from the Vax-On-Third-Profile study to examine the development of venous thromboembolism (VTE) after the third dose of mRNA-BNT162b2 (tozinameran) and its association with antibody and lymphocyte responses. (2) Methods: Patients who had received a third dose of tozinameran and had not experienced any VTE in the previous 30 days were eligible. A serological evaluation was conducted before the booster vaccination (timepoint-1) and four weeks thereafter (timepoint-2) to measure antibody titers against the SARS-CoV-2 spike protein, as well as to determine the absolute counts of T-helper cells, T-cytotoxic cells, B cells, and NK cells. Data were acquired from November 2021 to October 2022 and analyzed from November 2022 to October 2023. (3) Results: The present study involved 429 patients who were given a third dose of tozinameran from 26 September to 30 October 2021. Among the active treatments of interest, 109 (25.4%) patients received targeted therapy, 111 (25.9%) received cytotoxic chemotherapy, 39 (9.1%) received immune checkpoint inhibitors, 21 (4.9%) received endocrine therapy, and 30 (7.0%) received a combination of chemotherapy and targeted agents in the eight weeks preceding the booster dosing. In addition, 119 (27.7%) patients who had discontinued any systemic therapy for at least 12 weeks accounted for the reference subgroup. After a median follow-up time of 10.6 (95% CI 8.1-11.7) months, we observed 31 venous thromboembolic events in the general population, for an overall incidence rate of 7.2% (95% CI 5.0-10.1). The median time to VTE development after booster immunization was 99 (95% CI 85-112) days. In a univariate comparison, patients exposed to targeted therapies (11.3% [95% CI 6.0-18.9]; p = 0.030) or immune checkpoint inhibitors (16.2% [95% CI 6.2-32.0]; p = 0.012) had a significantly higher incidence of VTE than the reference cohort (3.4% [95% CI 0.9-8.5]). Univariate analysis of immune responses showed that only dynamic changes pertaining to NK cell distributions correlated significantly with VTE occurrence. Multivariate regression analysis confirmed only a high-level NK cell response (OR 6.10 [9% CI 2.16-17.21]; p = 0.001), a history of thromboembolic events (OR 9.81 [3.99-24.13]; p < 0.001), and the presence of a central venous catheter (OR 5.02 [95% CI 1.84-13.67]; p = 0.002) as independently associated with an increased risk of VTE. (4) Conclusions: This prospective cohort study provides unprecedented evidence that cancer patients have no increased risk of developing VTE after the third dose of tozinameran, regardless of the type of active therapy. The specific pattern of lymphocyte response appears to increase thromboembolic risk, underlying immune dysregulation as a causal cofactor. These findings emphasize the need for additional monitoring after periodic COVID-19 vaccination in cancer patients.
论文信息
- 作者
- Nelli F、Ruggeri EM、Virtuoso A、Giannarelli D、Barbuta J、Chegai F、Raso A、Panichi V
- 单位
- Department of Oncology and Hematology, Medical Oncology Unit, Central Hospital of Belcolle, 01100 Viterbo, Italy.Italy
- 期刊
- Vaccines2025 Apr 8