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Building functional materials for health care and pharmacy from microfluidic principles and Flow Focusing

机译:从微流控原理和Flow Focusing构建用于保健和药学的功能材料

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摘要

In this review, we aim at establishing a relationship between the fundamentals of the microfluidics technologies used in the Pharmacy field, and the achievements accomplished by those technologies. We describe the main methods for manufacturing micrometer drops, bubbles, and capsules, as well as the corresponding underlying physical mechanisms. In this regard, the review is intended to show non-specialist readers the dynamical processes which determine the success of microfluidics techniques. Flow focusing (FF) is a droplet-based method widely used to produce different types of fluid entities on a continuous basis by applying an extensional co-flow. We take this technique as an example to illustrate how microfluidics technologies for drug delivery are progressing from a deep understanding of the physics of fluids involved. Specifically, we describe the limitations of FF, and review novel methods which enhance its stability and robustness. In the last part of this paper, we review some of the accomplishments of microfluidics when it comes to drug manufacturing and delivery. Special attention is paid to the production of the microencapsulated form because this fluidic structure gathers the main functionalities sought for in Pharmacy. We also show how FF has been adapted to satisfy an ample variety of pharmaceutical requirements to date.
机译:在这篇综述中,我们旨在建立药学领域中使用的微流控技术的基本原理与这些技术所取得的成就之间的关系。我们描述了制造微米滴,气泡和胶囊的主要方法,以及相应的潜在物理机制。在这方面,本综述旨在向非专业读者展示决定微流控技术成功的动力学过程。流动聚焦(FF)是一种基于液滴的方法,广泛用于通过应用扩展同流来连续生产不同类型的流体实体。我们以该技术为例来说明对药物输送的微流控技术是如何从对所涉及流体的物理学的深刻理解中获得进步的。具体来说,我们描述了FF的局限性,并回顾了增强FF稳定性和鲁棒性的新颖方法。在本文的最后一部分,我们回顾了微流控技术在药物生产和交付方面的一些成就。特别注意微囊形式的生产,因为这种流体结构聚集了Pharmacy所寻求的主要功能。我们还展示了迄今为止FF如何适应各种药品的需求。

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