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微流控液滴簇具有分布式蒸发率,可作为生物气溶胶的模型。

Microfluidic Droplet Cluster with Distributed Evaporation Rates as a Model for Bioaerosols.

机构信息

Indian Institute of Science Education and Research Tirupati, Mangalam P.O. PIN 517507 Tirupati, Andhra Pradesh, India.

出版信息

Langmuir. 2022 Apr 19;38(15):4567-4577. doi: 10.1021/acs.langmuir.1c03273. Epub 2022 Apr 8.

Abstract

Aerosols and microdroplets are known to act as carriers for pathogens or vessels for chemical reactions. The natural occurrence of evaporation of these droplets has implications for the viability of pathogens or chemical processes. For example, it is important to understand how pathogens survive extreme physiochemical conditions such as confinement and osmotic stress induced by evaporation of aerosol droplets. Previously, larger evaporating droplets were proposed as model systems as the processes in the tiny aerosol droplets are difficult to image. In this context, we propose the concept of evaporation of capillary-clustered aqueous microdroplets dispersed in a thin oil layer. The configuration produces spatially segregated evaporation rates. It allows comparing the consequences of evaporation and its rate for processes occurring in droplets. As a proof of concept, we study the consequences of evaporation and its rate using (E. coli) and as model organisms. Our experiments indicate that the rate of evaporation of microdroplets is an important parameter in deciding the viability of contained microorganisms. With slow evaporation, could mitigate the osmotic stress by K ion uptake. Our method may also be applicable to other evaporating droplet systems, for example, microdroplet chemistry to understand the implications of evaporation rates.

摘要

气溶胶和液滴微滴已被证实是病原体的载体或化学反应的容器。这些液滴的自然蒸发会对病原体或化学过程的存活能力产生影响。例如,了解病原体如何在极端物理化学条件下存活,例如由气溶胶液滴蒸发引起的限制和渗透胁迫,这一点很重要。以前,较大的蒸发液滴被提议作为模型系统,因为微小气溶胶液滴中的过程难以成像。在这种情况下,我们提出了在薄油层中分散的毛细管簇状水微滴蒸发的概念。该配置产生了空间分隔的蒸发速率。它允许比较在液滴中发生的蒸发及其速率的后果。作为概念验证,我们使用 (大肠杆菌)和 作为模型生物来研究蒸发及其速率的后果。我们的实验表明,微滴的蒸发速率是决定所含微生物活力的重要参数。通过缓慢蒸发, 可以通过摄取 K 离子来缓解渗透压。我们的方法也可能适用于其他蒸发液滴系统,例如微滴化学,以了解蒸发速率的影响。

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