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用于脱发治疗不同应用的体外毛囊设计——综述

Design of In Vitro Hair Follicles for Different Applications in the Treatment of Alopecia-A Review.

作者信息

Žnidarič Matej, Žurga Žan Michel, Maver Uroš

机构信息

Faculty of Medicine, Institute of Biomedical Sciences, University of Maribor, SI-2000 Maribor, Slovenia.

出版信息

Biomedicines. 2021 Apr 16;9(4):435. doi: 10.3390/biomedicines9040435.

Abstract

The hair research field has seen great improvement in recent decades, with in vitro hair follicle (HF) models being extensively developed. However, due to the cellular complexity and number of various molecular interactions that must be coordinated, a fully functional in vitro model of HFs remains elusive. The most common bioengineering approach to grow HFs in vitro is to manipulate their features on cellular and molecular levels, with dermal papilla cells being the main focus. In this study, we focus on providing a better understanding of HFs in general and how they behave in vitro. The first part of the review presents skin morphology with an emphasis on HFs and hair loss. The remainder of the paper evaluates cells, materials, and methods of in vitro growth of HFs. Lastly, in vitro models and assays for evaluating the effects of active compounds on alopecia and hair growth are presented, with the final emphasis on applications of in vitro HFs in hair transplantation. Since the growth of in vitro HFs is a complicated procedure, there is still a great number of unanswered questions aimed at understanding the long-term cycling of HFs without losing inductivity. Incorporating other regions of HFs that lead to the successful formation of different hair classes remains a difficult challenge.

摘要

近几十年来,毛发研究领域取得了巨大进步,体外毛囊(HF)模型得到了广泛发展。然而,由于细胞复杂性以及必须协调的各种分子相互作用的数量,一个功能齐全的体外毛囊模型仍然难以实现。体外培养毛囊最常见的生物工程方法是在细胞和分子水平上操纵其特征,其中真皮乳头细胞是主要关注点。在本研究中,我们致力于更全面地了解毛囊以及它们在体外的行为。综述的第一部分介绍皮肤形态,重点是毛囊和脱发。本文的其余部分评估了毛囊体外生长的细胞、材料和方法。最后,介绍了用于评估活性化合物对脱发和头发生长影响的体外模型和检测方法,最后重点阐述了体外毛囊在毛发移植中的应用。由于体外毛囊的生长是一个复杂的过程,旨在理解毛囊长期循环而不丧失诱导能力的大量问题仍未得到解答。纳入导致成功形成不同毛发类型的毛囊其他区域仍然是一项艰巨的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c8c/8072628/46127969d92d/biomedicines-09-00435-g001.jpg

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