Intracellular dry mass density increases under growth-induced pressure

Hyojun Kim, Baptiste Alric, Nolan Chan, Julien Roul, Morgan Delarue
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Abstract

Cells that proliferate in confined environments develop mechanical compressive stress, referred to as growth-induced pressure, which inhibits growth and division across various organisms. Recent studies have shown that in these confined spaces, the diffusivity of intracellular nanoparticles decreases. However, the physical mechanisms behind this reduction remain unclear. In this study, we use quantitative phase imaging to measure the refractive index and dry mass density of Saccharomyces cerevisiae cells proliferating under confinement in a microfluidic bioreactor. Our results indicate that the observed decrease in diffusivity can be at least attributed to the intracellular accumulation of macromolecules. Furthermore, the linear scaling between cell content and growth-induced pressure suggests that the concentrations of macromolecules and osmolytes are maintained proportionally under such pressure in S. cerevisiae.
细胞内干物质密度在生长诱导压力下增加
在密闭环境中增殖的细胞会产生机械压应力,即生长诱导压力,这种压力会抑制各种生物的生长和分裂。最近的研究表明,在这些密闭空间中,细胞内纳米粒子的扩散性会降低。然而,这种降低背后的物理机制仍不清楚。在本研究中,我们利用定量相成像技术测量了在微流控生物反应器中受限增殖的酿酒酵母细胞的折射率和干质量密度。我们的结果表明,观察到的扩散率下降至少可归因于大分子在细胞内的积累。此外,细胞含量与生长诱导压力之间的线性比例关系表明,在这种压力下,S. cerevisiae 中大分子和渗透溶质的浓度保持成比例。
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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