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首页> 外文期刊>JMIR formative research. >Physiologic Response to the Pfizer-BioNTech COVID-19 Vaccine Measured Using Wearable Devices: Prospective Observational Study
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Physiologic Response to the Pfizer-BioNTech COVID-19 Vaccine Measured Using Wearable Devices: Prospective Observational Study

机译:使用可穿戴设备测量的PFizer-Biontech Covid-19疫苗的生理反应:前瞻性观测研究

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BACKGROUND:The Pfizer-BioNTech COVID-19 vaccine employs a novel messenger Ribonucleic Acid (mRNA) technology to elicit a protective immune response. Short-term physiologic responses to the vaccine have not been studied using wearable devices.OBJECTIVE:We aim to characterize physiologic changes in response to COVID-19 vaccination in a small cohort of subjects using a wearable device (WHOOP Strap 3.0). This is a proof-of-concept for using consumer-grade wearable devices to monitor response to COVID-19 vaccines.METHODS:In this prospective observational study, physiologic data from 19 Internal Medicine residents at a single institution that received both doses of the Pfizer-BioNTech COVID-19 vaccine was collected using the WHOOP Strap 3.0. The primary outcomes were percent change from baseline in heart rate variability (HRV), resting heart rate (RHR) and respiratory rate (RR). Secondary outcomes were percent change from baseline in total, rapid eye movement (REM) and deep sleep. Exploratory outcomes included local and systemic reactogenicity following each dose, and prophylactic analgesic use.RESULTS:In 19 individuals, mean age 28.8 (+/- 2.2), 53% female, HRV was decreased on Day 1 following administration of the first vaccine dose (-13.44% +/- 13.62%), and second vaccine dose (-9.25% +/- 22.6%). RHR and RR showed no change from baseline after either vaccine dose. Sleep duration was increased up to four days post vaccination, after an initial decrease on Day 1. Increased sleep duration prior to vaccination was associated with a greater change in HRV. Local and systemic reactogenicity was more severe after dose two.CONCLUSIONS:This is the first observational study of the physiologic response to any of the novel COVID-19 vaccines, as measured using wearable devices. Using this relatively small, healthy cohort, we provide evidence that HRV decreases in response to both vaccine doses, with no significant changes in RHR or RR. Sleep duration initially decreased following each dose with a subsequent increase thereafter. Future studies with a larger sample size and comparison to other inflammatory and immune biomarkers, such as antibody response, will be needed to determine the true utility of this type of continuous wearable monitoring in regards to vaccine responses. Our data raises the possibility that increased sleep prior to vaccination may impact physiologic responses and may be a modifiable way to increase vaccine response. These results may inform future studies using wearables for monitoring vaccine responses.CLINICALTRIAL:NCT04304703; https://clinicaltrials.gov/ct2/show/NCT04304703.
机译:背景:PFizer-Biontech Covid-19疫苗采用新的信使核糖核酸(mRNA)技术来引发保护性免疫应答。对疫苗的短期生理反应尚未使用可穿戴设备进行研究。目的:我们的目标是使用可穿戴装置(WhoOP STRAP 3.0)的小群体的Covid-19疫苗接种的生理变化。这是使用消费者级可穿戴设备监测对Covid-19疫苗的响应的概念。方法:在这项前瞻性观察性研究中,来自19个内科居民的生理数据在一个机构接受两种剂量的辉瑞 - 使用WHOOP表带3.0收集-biontech Covid-19疫苗。主要结果是从心率变异性(HRV)的基线,休息心率(RHR)和呼吸率(RR)的基线变化。二次结果与基线的总变化百分比,快速的眼睛运动(REM)和深睡眠。探索性结果包括每种剂量后的局部和全身反应性,以及预防性镇痛使用。结果:在19例中,平均28.8(+/- 2.2),53%的女性,在施用第一个疫苗剂量后第1天减少了HRV( -13.44%+/- 13.62%)和第二次疫苗剂量(-9.25%+/- 22.6%)。 RHR和RR在疫苗剂量后显示出从基线的变化。在第1天初步减少后,患者患者患者的疫苗接种后持续时间增加至4天。在接种疫苗之前增加睡眠持续时间与HRV的更大变化相关。剂量两次后局部和全身反应性更严重。结论:这是使用可穿戴设备测量的新型Covid-19疫苗的生理反应的第一个观察研究。使用这种相对较小的健康的队列,我们​​提供了证据表明HRV响应于两种疫苗剂量而降低,RHR或RR没有显着变化。睡眠持续时间最初在随后增加后延续后延续。将来需要使用更大的样本量和与其他炎症和免疫生物标志物(例如抗体反应)进行更大的研究,以确定这种类型的连续可穿戴监测的真正效用于疫苗反应。我们的数据引发了在疫苗接种前增加睡眠可能会影响生理反应,并且可能是增加疫苗反应的可修饰方法。这些结果可以通过用于监测疫苗响应的可穿戴物品来告知未来的研究.ClinictRial:NCT04304703; https://clinicaltrials.gov/ct2/show/nct04304703。

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