Department of Bioengineering, The University of Texas at Dallas.
Department of Bioengineering, The University of Texas at Dallas; Department of Radiology, The University of Texas Southwestern;
J Vis Exp. 2021 Mar 23(169). doi: 10.3791/62203.
There are many methods that can be used for the production of vaporizable phase-shift droplets for imaging and therapy. Each method utilizes different techniques and varies in price, materials, and purpose. Many of these fabrication methods result in polydisperse populations with non-uniform activation thresholds. Additionally, controlling the droplet sizes typically requires stable perfluorocarbon liquids with high activation thresholds that are not practical in vivo. Producing uniform droplet sizes using low-boiling point gases would be beneficial for in vivo imaging and therapy experiments. This article describes a simple and economical method for the formation of size-filtered lipid-stabilized phase-shift nanodroplets with low-boiling point decafluorobutane (DFB). A common method of generating lipid microbubbles is described, in addition to a novel method of condensing them with high-pressure extrusion in a single step. This method is designed to save time, maximize efficiency, and generate larger volumes of microbubble and nanodroplet solutions for a wide variety of applications using common laboratory equipment found in many biological laboratories.
有许多方法可用于生产用于成像和治疗的可蒸发相移液滴。每种方法都使用不同的技术,价格、材料和用途也各不相同。许多这些制造方法导致多分散群体具有不均匀的激活阈值。此外,控制液滴尺寸通常需要具有高激活阈值的稳定全氟碳液体,这在体内是不实际的。使用低沸点气体产生均匀的液滴尺寸将有利于体内成像和治疗实验。本文描述了一种简单经济的方法,用于形成具有低沸点十氟丁烷 (DFB) 的尺寸过滤脂质稳定的相移纳米液滴。描述了一种生成脂质微泡的常用方法,以及一种使用高压挤出在单个步骤中冷凝它们的新颖方法。该方法旨在节省时间,提高效率,并使用许多生物学实验室中常见的普通实验室设备为各种应用生成更大体积的微泡和纳米液滴溶液。