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Morphogenetic fields in embryogenesis, regeneration, and cancer: Non-local control of complex patterning

机译:胚胎发生,再生和癌症中的形态发生场:复杂模式的非局部控制

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Establishment of shape during embryonic development, and the maintenance of shape against injury or tumorigenesis, requires constant coordination of cell behaviors toward the patterning needs of the host organism. Molecular cell biology and genetics have made great strides in understanding the mechanisms that regulate cell function. However, generalized rational control of shape is still largely beyond our current capabilities. Significant instructive signals function at long range to provide positional information and other cues to regulate organism-wide systems properties like anatomical polarity and size control. Is complex morphogenesis best understood as the emergent property of local cell interactions, or as the outcome of a computational process that is guided by a physically encoded map or template of the final goal state? Here I review recent data and molecular mechanisms relevant to morphogenetic fields: large-scale systems of physical properties that have been proposed to store patterning information during embryogenesis, regenerative repair, and cancer suppression that ultimately controls anatomy. Placing special emphasis on the role of endogenous bioelectric signals as an important component of the morphogenetic field, I speculate on novel approaches for the computational modeling and control of these fields with applications to synthetic biology, regenerative medicine, and evolutionary developmental biology.
机译:胚胎发育过程中形状的建立以及针对损伤或肿瘤发生的形状维持需要细胞行为与宿主生物的图案需求不断协调。分子细胞生物学和遗传学在理解调节细胞功能的机制方面取得了长足的进步。但是,形状的广义合理控制仍大大超出了我们当前的能力。重要的指示性信号在远距离起作用,以提供位置信息和其他提示,以调节整个生物体系统的属性,例如解剖学极性和大小控制。最好将复杂形态发生理解为局部细胞相互作用的新兴属性,还是最终目标状态的物理编码图或模板所指导的计算过程的结果?在这里,我回顾了与形态发生领域有关的最新数据和分子机制:提出了在胚胎发生,再生修复和最终控制解剖结构的癌症抑制过程中存储模式信息的大规模物理特性系统。我特别强调内源性生物电信号作为形态发生领域的重要组成部分的作用,我推测了用于这些领域的计算建模和控制的新方法,并将其应用于合成生物学,再生医学和进化发育生物学。

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