Sun Jian, Zhang Mingkan, Gehl Anthony, Fricke Brian, Nawaz Kashif, Gluesenkamp Kyle, Shen Bo, Munk Jeff, Hagerman Joe, Lapsa Melissa
Oak Ridge National Laboratory, Oak Ridge, TN 37830 USA.
Int J Refrig. 2022 Jan;133:313-325. doi: 10.1016/j.ijrefrig.2021.11.005. Epub 2021 Nov 8.
Most COVID-19 vaccines require ambient temperature control for transportation and storage. Both Pfizer and Moderna vaccines are based on mRNA and lipid nanoparticles requiring low temperature storage. The Pfizer vaccine requires ultra-low temperature storage (between -80 °C and -60 °C), while the Moderna vaccine requires -30 °C storage. Pfizer has designed a reusable package for transportation and storage that can keep the vaccine at the target temperature for 10 days. However, the last stage of distribution is quite challenging, especially for rural or suburban areas, where local towns, pharmacy chains and hospitals may not have the infrastructure required to store the vaccine. Also, the need for a large amount of ultra-low temperature refrigeration equipment in a short time period creates tremendous pressure on the equipment suppliers. In addition, there is limited data available to address ancillary challenges of the distribution framework for both transportation and storage stages. As such, there is a need for a quick, effective, secure, and safe solution to mitigate the challenges faced by vaccine distribution logistics. The study proposes an effective, secure, and safe ultra-low temperature refrigeration solution to resolve the vaccine distribution last mile challenge. The approach is to utilize commercially available products, such as refrigeration container units, and retrofit them to meet the vaccine storage temperature requirement. Both experimental and simulation studies are conducted to evaluate the technical merits of this solution with the ability to control temperature at -30 °C or -70 °C as part of the last mile supply chain for vaccine candidates.
大多数新冠疫苗在运输和储存过程中需要进行环境温度控制。辉瑞和莫德纳的疫苗均基于信使核糖核酸(mRNA)和脂质纳米颗粒,需要低温储存。辉瑞疫苗需要超低温储存(-80°C至-60°C之间),而莫德纳疫苗需要在-30°C储存。辉瑞设计了一种可重复使用的运输和储存包装,能使疫苗在目标温度下保持10天。然而,配送的最后阶段颇具挑战,尤其是在农村或郊区,当地城镇、连锁药店和医院可能没有储存疫苗所需的基础设施。此外,短时间内需要大量超低温制冷设备,给设备供应商带来了巨大压力。此外,关于运输和储存阶段配送框架的辅助挑战,可用数据有限。因此,需要一种快速、有效、安全的解决方案来缓解疫苗配送物流面临的挑战。该研究提出了一种有效、安全的超低温制冷解决方案,以解决疫苗配送最后一英里的挑战。其方法是利用商用产品,如冷藏集装箱单元,并对其进行改造,以满足疫苗储存温度要求。开展了实验和模拟研究,以评估该解决方案的技术优点,该方案能够在-30°C或-70°C控制温度,作为候选疫苗最后一英里供应链的一部分。