Precision mass measurements in solution reveal properties of single cells and bioparticles

S. Olcum, N. Cermak, S. Manalis
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引用次数: 1

Abstract

Precise characterization of biological materials ranging from single cells (~1-20 microns) to extracellular vesicles (20-200 nm) is of fundamental interest because of their biological and translational value. Here we discuss the value of precision mass measurements in solution for informing various physical and biological parameters, such as mass accumulation rate, longitudinal cell growth or cell density. We introduce how the limits of the single-particle mass measurements can be pushed down to nano-scale dimensions enabling the resolution of extracellular vesicles and viruses in solution. We believe with future advancements on the precision and throughput of this approach, the capability of analyzing biologically relevant particles in solution will have broad biological and translational impact.
溶液中精确的质量测量揭示了单细胞和生物颗粒的特性
从单细胞(~1-20微米)到细胞外囊泡(20-200纳米)的生物材料的精确表征具有重要的生物学和翻译价值。在这里,我们讨论了溶液中精确质量测量的价值,以告知各种物理和生物参数,如质量积累率,纵向细胞生长或细胞密度。我们介绍了如何将单粒子质量测量的极限推到纳米尺度,从而能够分辨溶液中的细胞外囊泡和病毒。我们相信,随着这种方法在精度和吞吐量方面的未来进步,分析溶液中生物学相关颗粒的能力将具有广泛的生物学和翻译影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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