表皮-真皮偶联球体是重建皮肤外植体培养中组织模式再生的重要因素。

IF 6.4 1区 医学 Q1 CELL & TISSUE ENGINEERING
Mingxing Lei, Jingwei Jiang, Mengyue Wang, Wang Wu, Jinwei Zhang, Wanqian Liu, Wei Zhou, Yung-Chih Lai, Ting-Xin Jiang, Randall B Widelitz, Hans I-Chen Harn, Li Yang, Cheng-Ming Chuong
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引用次数: 0

摘要

组织模式对器官的发育和再生至关重要。为了促进工程重建皮肤器官的应用,我们研究了组织模式和头发再生的重要特征。我们发现它们自发形成球形结构,极化的表皮细胞通过新形成的基膜与真皮细胞偶联。在功能上,球体成为能促进组织模式再生的形态发生单位(CMU)。利用scrna测序分析了CMU形成过程中新细胞类型的出现和分子相互作用。令人惊讶的是,在新生皮肤外植体中,IFNr信号可以诱导表皮细胞聚集的顶基极性。真皮- tgfb诱导基底膜形成。同时,VEGF信号传导介导真皮细胞附着于表皮囊肿壳,形成CMU。成年小鼠和人类胎儿头皮细胞不能形成CMU,但可以通过添加IFNr或VEGF来实现头发再生。我们发现不同的多细胞结构和分子途径用于实现皮肤发育、伤口诱导的毛发新生和重建的外植体培养的形态发生能力。因此,可以使用多条路径来实现组织图案化。这些见解鼓励更多的“体外形态发生”研究,这可能提供新的策略,以提高再生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Epidermal-dermal coupled spheroids are important for tissue pattern regeneration in reconstituted skin explant cultures.

Epidermal-dermal coupled spheroids are important for tissue pattern regeneration in reconstituted skin explant cultures.

Tissue patterning is critical for the development and regeneration of organs. To advance the use of engineered reconstituted skin organs, we study cardinal features important for tissue patterning and hair regeneration. We find they spontaneously form spheroid configurations, with polarized epidermal cells coupled with dermal cells through a newly formed basement membrane. Functionally, the spheroid becomes competent morphogenetic units (CMU) that promote regeneration of tissue patterns. The emergence of new cell types and molecular interactions during CMU formation was analyzed using scRNA-sequencing. Surprisingly, in newborn skin explants, IFNr signaling can induce apical-basal polarity in epidermal cell aggregates. Dermal-Tgfb induces basement membrane formation. Meanwhile, VEGF signaling mediates dermal cell attachment to the epidermal cyst shell, thus forming a CMU. Adult mouse and human fetal scalp cells fail to form a CMU but can be restored by adding IFNr or VEGF to achieve hair regeneration. We find different multi-cellular configurations and molecular pathways are used to achieve morphogenetic competence in developing skin, wound-induced hair neogenesis, and reconstituted explant cultures. Thus, multiple paths can be used to achieve tissue patterning. These insights encourage more studies of "in vitro morphogenesis" which may provide novel strategies to enhance regeneration.

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来源期刊
npj Regenerative Medicine
npj Regenerative Medicine Engineering-Biomedical Engineering
CiteScore
10.00
自引率
1.40%
发文量
71
审稿时长
12 weeks
期刊介绍: Regenerative Medicine, an innovative online-only journal, aims to advance research in the field of repairing and regenerating damaged tissues and organs within the human body. As a part of the prestigious Nature Partner Journals series and in partnership with ARMI, this high-quality, open access journal serves as a platform for scientists to explore effective therapies that harness the body's natural regenerative capabilities. With a focus on understanding the fundamental mechanisms of tissue damage and regeneration, npj Regenerative Medicine actively encourages studies that bridge the gap between basic research and clinical tissue repair strategies.
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