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A theoretical study of biological membrane response to temperature gradients at the single-cell level

机译:单细胞水平上生物膜对温度梯度响应的理论研究

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摘要

Recent experimental studies provide evidence for the existence of a spatially non-uniform temperature field in living cells and in particular in their plasma membrane. These findings have led to the development of a new and exciting field: thermal biology at the single-cell level. Here, we examine theoretically a specific aspect of this field, i.e. how temperature gradients at the single-cell level affect the phase behaviour and geometry of heterogeneous membranes. We address this issue by using the Onsager reciprocal relations combined with a simple model for a binary lipid mixture. We demonstrate that even small temperature variations along the membrane may introduce intriguing phenomena, such as phase separation above the critical temperature and unusual shape response. These results also suggest that the shape of a membrane can be manipulated by dynamically controlling the temperature field in its vicinity. The effects of intramembranous temperature gradients have never been studied experimentally. Thus, the predictions of the current contribution are of a somewhat speculative nature. Experimental verification of these results could mark the beginning of a new line of research in the field of biological membranes. We report our findings with the hope of inspiring others to perform such experiments.
机译:最近的实验研究为活细胞特别是其质膜中存在空间不均匀的温度场提供了证据。这些发现导致了一个新的令人兴奋的领域的发展:单细胞水平的热生物学。在这里,我们从理论上检查该领域的特定方面,即单细胞水平的温度梯度如何影响异相膜的相行为和几何形状。我们通过使用Onsager倒数关系与二元脂质混合物的简单模型相结合来解决此问题。我们证明,即使沿膜的温度变化很小,也可能会引入有趣的现象,例如在临界温度以上发生相分离和异常的形状响应。这些结果还表明,可以通过动态控制其附近的温度场来控制膜的形状。膜内温度梯度的影响从未进行过实验研究。因此,对当前贡献的预测具有某种投机性质。这些结果的实验​​验证可能标志着生物膜领域新研究的开始。我们报告我们的发现,以期启发其他人进行此类实验。

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