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Complex hair cycle domain patterns and regenerative hair waves in living rodents

机译:活体啮齿动物中复杂的毛发循环域模式和可再生的毛发波

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摘要

Single hair follicles go through regeneration and involution cycles. In a population, hair follicles may affect each other during anagen re-entry, thus forming propagating regenerative hair waves. We review these regenerative hair waves and complex hair cycle domains which were recently reported in transgenic mice. Two non-invasive methods to track the propagating hair wave in large populations of hair follicles in vivo are described. We also reviewed early accounts of "hair growth patterns" from classical literature. We decipher the "behavior rules" that dictate how dynamic hair waves lead to complex hair cycle domains. In general, a single domain expands when a regenerative hair wave reaches a responsive region and boundaries form when the wave reaches a non-responsive region. As mice age, multiple hair cycle domains form, each with own regeneration rhythm. Domain patterns can be reset by physiological events such as pregnancy and lactation. Longitudinal sections across domains show arrays of follicles in a continuum of hair cycle stages. Hair cycle domains are different from regional specificity domains. Regenerative hair waves are different from the developmental wave of newly forming hair follicles. The study provides novel insights into the dynamic states of adult skin and physiological regulation of organ regeneration.
机译:单毛囊经历再生和内卷循环。在人群中,毛囊在生长期重新进入过程中可能会相互影响,从而形成传播性的再生发波。我们审查了最近在转基因小鼠中报告的这些再生的头发波和复杂的头发周期域。描述了两种在体内追踪大量毛囊中传播的毛发的非侵入性方法。我们还回顾了早期文献中有关“头发生长模式”的早期报道。我们破译了“行为规则”,该行为规则决定了动态发波如何导致复杂的头发循环域。通常,当再生发波到达响应区域时,单个域会扩展;当波到达非响应区域时,会形成边界。随着小鼠的衰老,会形成多个毛发循环域,每个域都有自己的再生节奏。可以通过诸如怀孕和哺乳之类的生理事件来重置域模式。跨域的纵向切片显示了在毛发循环阶段连续的毛囊阵列。毛发循环域与区域特异性域不同。再生性头发波不同于新形成的毛囊的发育波。该研究为成年皮肤的动态状态和器官再生的生理调节提供了新颖的见解。

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