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可调谐微泡制剂的快速表征方法。

Methods for Rapid Characterization of Tunable Microbubble Formulations.

作者信息

Harpster Savannah L, Piñeiro Alexandra M, Wong Joyce Y

机构信息

Department of Biomedical Engineering, Boston University, Boston, MA 02215, USA.

Division of Materials Science & Engineering, Boston University, Boston, MA 02215, USA.

出版信息

Bioengineering (Basel). 2024 Dec 3;11(12):1224. doi: 10.3390/bioengineering11121224.

Abstract

To optimize microbubble formulations for clinical applications, the size distribution, concentration, and acoustic intensity must be rapidly measurable to allow for the successful iteration of microbubble design. In this paper, a comprehensive method was developed to compare microbubble formulations with different lipid shell compositions using optical and acoustic methods of measurement to collect the size distribution, concentration, and mean scattering intensity. An open-source ImageJ macro code was modified for the selective counting and sizing of brightfield microbubble images. A high-throughput agarose phantom was designed to collect multiple scattering reflections of microbubble samples to estimate the echogenicity of each microbubble solution. The information contained in the size distribution and concentration, combined with the instantaneous scattering power, can identify modifications needed for prototyping specific microbubble formulations.

摘要

为优化用于临床应用的微泡制剂,必须能够快速测量其尺寸分布、浓度和声强,以便成功迭代微泡设计。本文开发了一种综合方法,使用光学和声学测量方法比较具有不同脂质壳组成的微泡制剂,以收集尺寸分布、浓度和平均散射强度。对开源的ImageJ宏代码进行了修改,用于明场微泡图像的选择性计数和尺寸测量。设计了一种高通量琼脂糖模型,以收集微泡样品的多次散射反射,从而估计每种微泡溶液的回声性。尺寸分布和浓度中包含的信息,结合瞬时散射功率,可以确定特定微泡制剂原型设计所需的改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9698/11673760/960148e7e882/bioengineering-11-01224-g001.jpg

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