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Towards understanding the myometrial physiome: approaches for the construction of a virtual physiological uterus

机译:试图了解肌层物理组:虚拟生理子宫的构建方法

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摘要

Premature labour (PTL) is the single most significant factor contributing to neonatal morbidity in Europe with enormous attendant healthcare and social costs. Consequently, it remains a major challenge to alleviate the cause and impact of this condition. Our ability to improve the diagnosis and treatment of women most at risk of PTL is, however, actually hampered by an incomplete understanding of the ways in which the functions of the uterine myocyte are integrated to effect an appropriate biological response at the multicellular whole organ system. The level of organization required to co-ordinate labouring uterine contractile effort in time and space can be considered immense. There is a multitude of what might be considered mini-systems involved, each with their own regulatory feedback cycles, yet they each, in turn, will influence the behaviour of a related system. These include, but are not exclusive to, gestational-dependent regulation of transcription, translation, post-translational modifications, intracellular signaling dynamics, cell morphology, intercellular communication and tissue level morphology.We propose that in order to comprehend how these mini-systems integrate to facilitate uterine contraction during labour (preterm or term) we must, in concert with biological experimentation, construct detailed mathematical descriptions of our findings. This serves three purposes: firstly, providing a quantitative description of series of complex observations; secondly, proferring a database platform that informs further testable experimentation; thirdly, advancing towards the establishment of a virtual physiological uterus and in silico clinical diagnosis and treatment of PTL.
机译:早产(PTL)是造成欧洲新生儿发病率的最重要因素,并伴随着巨大的医疗保健和社会成本。因此,减轻这种情况的起因和影响仍然是一项重大挑战。但是,我们对子宫肌细胞功能整合如何在多细胞全器官系统中产生适当生物学反应的方式的不完全理解实际上阻碍了我们改善最有可能罹患PTL的女性的诊断和治疗的能力。可以认为在时间和空间上协调子宫收缩劳动的组织水平是巨大的。涉及的微型系统有很多,每个微型系统都有自己的监管反馈周期,但它们反过来又会影响相关系统的行为。这些包括但不限于妊娠依赖的转录调控,翻译,翻译后修饰,细胞内信号动力学,细胞形态,细胞间通讯和组织水平形态。我们建议理解这些微型系统如何整合为了促进分娩(早产或足月)期间的子宫收缩,我们必须与生物学实验相结合,对发现的结果进行详细的数学描述。这具有三个目的:首先,对一系列复杂的观测结果进行定量描述;其次,提供一个数据库平台,为进一步的可测试实验提供依据;第三,推进虚拟生理子宫的建立和PTL的计算机临床诊断与治疗。

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