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Autophagy is essential for maintaining the growth of a human (mini-)organ: Evidence from scalp hair follicle organ culture

机译:自噬对于维持人类(微型)器官的生长至关重要:来自头皮毛囊器官培养的证据

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摘要

Autophagy plays a crucial role in health and disease, regulating central cellular processes such as adaptive stress responses, differentiation, tissue development, and homeostasis. However, the role of autophagy in human physiology is poorly understood, highlighting a need for a model human organ system to assess the efficacy and safety of strategies to therapeutically modulate autophagy. As a complete, cyclically remodelled (mini-)organ, the organ culture of human scalp hair follicles (HFs), which, after massive growth (anagen), spontaneously enter into an apoptosis-driven organ involution (catagen) process, may provide such a model. Here, we reveal that in anagen, hair matrix keratinocytes (MKs) of organ-cultured HFs exhibit an active autophagic flux, as documented by evaluation of endogenous lipidated Light Chain 3B (LC3B) and sequestosome 1 (SQSTM1/p62) proteins and the ultrastructural visualization of autophagosomes at all stages of the autophagy process. This autophagic flux is altered during catagen, and genetic inhibition of autophagy promotes catagen development. Conversely, an anti–hair loss product markedly enhances intrafollicular autophagy, leading to anagen prolongation. Collectively, our data reveal a novel role of autophagy in human hair growth. Moreover, we show that organ-cultured scalp HFs are an excellent preclinical research model for exploring the role of autophagy in human tissue physiology and for evaluating the efficacy and tissue toxicity of candidate autophagy-modulatory agents in a living human (mini-)organ.
机译:自噬在健康和疾病中起着至关重要的作用,调节中央细胞过程,例如适应性应激反应,分化,组织发育和体内平衡。然而,人们对自噬在人体生理中的作用了解甚少,这凸显了对模型人体器官系统进行评估以调节自噬策略的有效性和安全性的需求。作为完整的,周期性重塑的(微型)器官,人头皮毛囊(HF)的器官培养物在大量生长(生长期)后自发进入凋亡驱动的器官退化(催化)过程,可以提供这种功能。一个模型。在这里,我们揭示了在生长期中,器官培养的HFs的毛发基质角质形成细胞(MKs)表现出主动的自噬通量,如内源性脂化轻链3B(LC3B)和螯合体1(SQSTM1 / p62)蛋白质和超微结构的评估所证明自噬过程各个阶段的自噬体可视化。这种自噬通量在催化过程中被改变,并且自噬的遗传抑制促进了催化的发展。相反,抗脱发产品可明显增强毛囊内自噬,导致生长期延长。总的来说,我们的数据揭示了自噬在人类头发生长中的新作用。此外,我们表明,器官培养的头皮HFs是探索自噬在人类组织生理中的作用以及评估在人类(微型)器官中候选自噬调节剂的功效和组织毒性的出色的临床前研究模型。

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