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Worms under Pressure: Bulk Mechanical Properties of C. elegans Are Independent of the Cuticle

机译:蠕虫在压力下:秀丽隐杆线虫的整体力学性能与角质层无关

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摘要

The mechanical properties of cells and tissues play a well-known role in physiology and disease. The model organism Caenorhabditis elegans exhibits mechanical properties that are still poorly understood, but are thought to be dominated by its collagen-rich outer cuticle. To our knowledge, we use a novel microfluidic technique to reveal that the worm responds linearly to low applied hydrostatic stress, exhibiting a volumetric compression with a bulk modulus, κ = 140 ± 20 kPa; applying negative pressures leads to volumetric expansion of the worm, with a similar bulk modulus. Surprisingly, however, we find that a variety of collagen mutants and pharmacological perturbations targeting the cuticle do not impact the bulk modulus. Moreover, the worm exhibits dramatic stiffening at higher stresses—behavior that is also independent of the cuticle. The stress-strain curves for all conditions can be scaled onto a master equation, suggesting that C. elegans exhibits a universal elastic response dominated by the mechanics of pressurized internal organs.
机译:细胞和组织的机械特性在生理和疾病中起着众所周知的作用。模型生物秀丽隐杆线虫的机械性能尚不清楚,但据认为主要由其富含胶原的外表皮决定。据我们所知,我们使用一种新颖的微流体技术来揭示蠕虫对低施加的静水压力具有线性响应,表现出体积压缩,体积模量为κ= 140±20 kPa;施加负压会导致蜗杆的体积膨胀,体积模量类似。然而,令人惊讶地,我们发现靶向表皮的多种胶原突变体和药理学扰动不影响体积模量。此外,蠕虫在较高的应力下会表现出明显的变硬现象,这种行为也与表皮无关。可以将所有条件下的应力-应变曲线定标为一个主方程,这表明秀丽隐杆线虫表现出由受压内部器官的力学支配的普遍弹性响应。

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