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Modeling Mechanisms of Cell Secretion

机译:细胞分泌的建模机制

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摘要

Secretion is a fundamental cellular process involving the regulated release of intracellular products from cells. Physiological functions such as neurotransmission, or the release of hormones and digestive enzymes, are all governed by cell secretion. Anomalies in the processes involved in secretion contribute to the development and progression of diseases such as diabetes and other hormonal disorders. To unravel the mechanisms that govern such diseases, it is essential to understand how hormones, growth factors and neurotransmitters are synthesized and processed, and how their signals are recognized, amplified and transmitted by intracellular signaling pathways in the target cells. Here, we discuss diverse aspects of the detailed mechanisms involved in secretion based on mathematical models. The models range from stochastic ones describing the trafficking of secretory vesicles to deterministic ones investigating the regulation of cellular processes that underlie hormonal secretion. In all cases, the models are closely related to experimental results and suggest theoretical predictions for the secretion mechanisms.
机译:分泌是基本的细胞过程,涉及细胞内产物的调节释放。诸如神经传递,或激素和消化酶的释放等生理功能均由细胞分泌决定。分泌过程中的异常会导致疾病的发展和进展,例如糖尿病和其他荷尔蒙失调。为了弄清控制此类疾病的机制,必须了解激素,生长因子和神经递质的合成和加工方式,以及它们如何通过靶细胞内的细胞内信号通路识别,放大和传递信号。在这里,我们讨论基于数学模型的分泌中涉及的详细机制的各个方面。该模型的范围从描述分泌小泡运输的随机模型到研究荷尔蒙分泌基础的细胞过程调控的确定性模型。在所有情况下,模型均与实验结果密切相关,并为分泌机制提供了理论预测。

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