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Oscillations and accelerations of ice crystal growth rates in microgravity in presence of antifreeze glycoprotein impurity in supercooled water

机译:过冷水中存在抗冻糖蛋白杂质的微重力下冰晶生长速率的振荡和加速

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摘要

The free growth of ice crystals in supercooled bulk water containing an impurity of glycoprotein, a bio-macromolecule that functions as ‘antifreeze’ in living organisms in a subzero environment, was observed under microgravity conditions on the International Space Station. We observed the acceleration and oscillation of the normal growth rates as a result of the interfacial adsorption of these protein molecules, which is a newly discovered impurity effect for crystal growth. As the convection caused by gravity may mitigate or modify this effect, secure observations of this effect were first made possible by continuous measurements of normal growth rates under long-term microgravity condition realized only in the spacecraft. Our findings will lead to a better understanding of a novel kinetic process for growth oscillation in relation to growth promotion due to the adsorption of protein molecules and will shed light on the role that crystal growth kinetics has in the onset of the mysterious antifreeze effect in living organisms, namely, how this protein may prevent fish freezing.
机译:在国际太空站的微重力条件下,观察到冰晶在含有糖蛋白杂质(一种生物大分子,在零度以下环境中的活生物体中充当“防冻剂”)的过冷散装水中自由生长。由于这些蛋白质分子的界面吸附,我们观察到正常生长速率的加速和振荡,这是新发现的晶体生长的杂质效应。由于重力引起的对流可以减轻或改变这种影响,因此,通过仅在航天器中实现的长期微重力条件下连续测量正常生长速率,就可以对该效应进行可靠的观察。我们的发现将使人们更好地理解与蛋白质分子吸附有关的,与生长促进有关的生长振荡的新动力学过程,并将阐明晶体生长动力学在起居中神秘的抗冻作用中的作用。生物体,即这种蛋白质如何防止鱼类冻结。

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