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Hormetic electric field theory of pattern formation.

机译:图案形成的电场电场理论。

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摘要

The hormetic morphogen theory of curvature (Fosslien 2009) proposes that hormetic morphogen concentration gradients modulate the synthesis of adenosine triphosphate (ATP) by cells along the gradients (field cells) and thus regulate their proliferation and induce curvature such as vascular wall curvature; however, it is unclear whether such morphogen gradients can also determine the histological pattern of the walls. Here, I propose that the ATP gradients modulate export of H(+) by vacuolar H(+)-ATPase (V-ATPase) located on the surface of field cells and generate extracellular ion concentration gradients, ion currents and electrical fields along the paths of morphogen gradients. In vitro, electrical fields can induce directional migration and elongation of vascular cells and align the cells with their long axis perpendicular to electrical field vectors (Bai et al. 2004). I suggest that likewise, in vivo vascular transmural electrical fields induced by hormetic morphogen concentration gradients can modulate cell shape i.e. cell elongation and cell curvature, and determine cell orientation. Moreover, I suggest that the electrical fields can modulate bidirectional cell migration and cell sorting via dynamic hormetic galvanotaxis analogous to in vitro isoelectric focusing in proton gradients, thus, hormetic morphogen gradients can determine the curvature of vessel walls and their histological patterns.
机译:Hormorph morphogen曲率理论(Fosslien 2009)提出,hormorph morphogen浓度梯度调节细胞沿梯度(场细胞)的合成三磷酸腺苷(ATP)的合成,从而调节其增殖并诱发曲率,例如血管壁曲率。然而,目前尚不清楚这种形态发生子梯度是否还能确定壁的组织学模式。在这里,我建议ATP梯度通过位于场细胞表面的液泡H(+)-ATPase(V-ATPase)来调节H(+)的输出,并沿路径生成细胞外离子浓度梯度,离子电流和电场形态发生子梯度。在体外,电场可以诱导血管细胞的定向迁移和伸长,并使细胞的长轴与电场矢量垂直(Bai等,2004)。我建议同样地,由有毒的吗啡原浓度梯度引起的体内血管透壁电场可以调节细胞形状,即细胞伸长率和细胞曲率,并确定细胞取向。此外,我认为电场可以通过动态钟频电刺激来调节双向细胞迁移和细胞分选,类似于在质子梯度中的体外等电聚焦,因此,激素形态发生素梯度可以确定血管壁的曲率及其组织学模式。

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