Chen Wensi, Wang Ting, Dou Zeou, Xie Xing
School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
ACS Mater Lett. 2020 Nov 2;2(11):1545-1554. doi: 10.1021/acsmaterialslett.0c00348. Epub 2020 Oct 21.
A remote collection of biofluid specimens such as blood and urine remains a great challenge due to the requirement of continuous refrigeration. Without proper temperature regulation, the rapid degradation of analytical targets in the specimen may compromise the accuracy and reliability of the testing results. In this study, we develop porous superabsorbent polymer (PSAP) beads for fast and self-driven "microfiltration" of biofluid samples. This treatment effectively separates small analytical targets (, glucose, catalase, and bacteriophage) and large undesired components (, bacteria and blood cells) in the biofluids by capturing the former inside and excluding the latter outside the PSAP beads. We have successfully demonstrated that this treatment can reduce sample volume, self-aliquot the liquid sample, avoid microbial contamination, separate plasma from blood cells, stabilize target species inside the beads, and enable long-term storage at room temperature. Potential practical applications of this technology can provide an alternative sample collection and storage approach for medically underserved areas.
由于需要持续冷藏,远程采集血液和尿液等生物流体样本仍然是一项巨大挑战。如果没有适当的温度调节,样本中分析目标的快速降解可能会影响检测结果的准确性和可靠性。在本研究中,我们开发了多孔超吸收聚合物(PSAP)珠,用于生物流体样本的快速自驱动“微滤”。这种处理方法通过将生物流体中的小分析目标(如葡萄糖、过氧化氢酶和噬菌体)捕获在PSAP珠内部,并将大的不需要的成分(如细菌和血细胞)排除在PSAP珠外部,有效地分离了生物流体中的小分析目标和大的不需要的成分。我们已经成功证明,这种处理方法可以减少样本体积、自动分装液体样本、避免微生物污染、从血细胞中分离血浆、稳定珠内的目标物种,并能够在室温下长期保存。该技术的潜在实际应用可为医疗服务不足地区提供一种替代的样本采集和储存方法。