Maurya Anamika, Murallidharan Janani Srree, Sharma Atul, Agarwal Amit
Department of Mechanical Engineering, Indian Institute of Technology Mumbai, Mumbai, 400076 India.
Microfluid Nanofluidics. 2022;26(10):73. doi: 10.1007/s10404-022-02578-4. Epub 2022 Sep 4.
The last two decades witnessed a significant advancement in the field of diluted and whole blood plasma separation. This is one of the common procedures used to diagnose, cure and treat numerous acute and chronic diseases. For this separation purpose, various types of geometries of microfluidic devices, such as T-channel, Y-channel, trifurcation, constriction-expansion, curved/bend/spiral channels, a combination of any of the two geometries, etc., are being exploited, and this is detailed in this review article. The evaluation of the performance of such devices is based on the several parameters such as separation efficiency, flow rate, hematocrits, channel dimensions, etc. Thus, the current extensive review article endeavours to understand how particular geometry influences the separation efficiency for a given hematocrit. Additionally, a comparative analysis of various geometries is presented to demonstrate the less explored geometric configuration for the diluted and whole blood plasma separation. Also, a meta-analysis has been performed to highlight which geometry serves best to give a consistent separation efficiency. This article also presents tabulated data for various geometries with necessary details required from a designer's perspective such as channel dimensions, targeted component, studied range of hematocrit and flow rate, separation efficiency, etc. The maximum separation efficiency that can be achieved for a given hematocrits and geometry has also been plotted. The current review highlights the critical findings relevant to this field, state of the art understanding and the future challenges.
在过去二十年中,稀释血浆和全血血浆分离领域取得了重大进展。这是用于诊断、治疗众多急慢性疾病的常见程序之一。为了实现这种分离,人们正在利用各种类型微流控装置的几何结构,如T形通道、Y形通道、三岔口、收缩-扩张通道、弯曲/弯折/螺旋通道以及任意两种几何结构的组合等,本文将对此进行详细阐述。此类装置性能的评估基于分离效率、流速、血细胞比容、通道尺寸等多个参数。因此,当前这篇全面的综述文章旨在了解特定几何结构如何影响给定血细胞比容下的分离效率。此外,还对各种几何结构进行了比较分析,以展示在稀释血浆和全血血浆分离中较少被探索的几何结构配置。同时,进行了荟萃分析以突出哪种几何结构最有助于实现一致的分离效率。本文还提供了各种几何结构的表格数据,包含从设计者角度所需的必要细节,如通道尺寸、目标成分、血细胞比容和流速的研究范围、分离效率等。还绘制了给定血细胞比容和几何结构下可实现的最大分离效率。当前的综述突出了与该领域相关的关键发现、最新认识以及未来挑战。