نتایج جستجو برای: hair follicle stem cells

تعداد نتایج: 1541323  

Journal: :PloS one 2015
Wenluo Cao Lingna Li Benjamin Tran Satoshi Kajiura Yasuyuki Amoh Fang Liu Robert M Hoffman

We previously demonstrated that whole hair follicles could be cryopreserved to maintain their stem-cells differentation potential. In the present study, we demonstrated that cryopreserved mouse whisker hair follicles maintain their hair growth potential. DMSO better cryopreserved mouse whisker follicles compared to glycerol. Cryopreserved hair follicles also maintained the hair follicle-associa...

2018
Ekaterina P. Kalabusheva Elina S. Chermnykh Vasily V. Terskikh Ekaterina A. Vorotelyak

De novo hair follicle (HF) formation in embryonic skin and hair growth in postnatal skin are the result of epithelial-mesenchymal interactions between specialized mesenchymal dermal papilla (DP) and epithelial stem cells that give rise to hairs. Adult HF is a valuable source of different lineages of stem cells (SCs) with morphogenetic potential. Epithelial stem cells are residing in the special...

2017
Long He Mingxing Lei Yizhan Xing Yuhong Li Chunyan Hu Peixing Chen Xiaohua Lian Tian Yang Wanqian Liu Li Yang

Hair follicle is a mini-organ that consists of complex but well-organized structures, which are differentiated from hair follicle progenitor or stem cells. How non-canonical Wnt signaling pathway is involved in regulating hair follicle differentiation remains elusive. Here we showed that Wnt5a regulates hair follicle differentiation through an epithelial-mesenchymal interaction mechanism in mic...

Journal: :The Journal of clinical investigation 2006
Manabu Ohyama Atsushi Terunuma Christine L Tock Michael F Radonovich Cynthia A Pise-Masison Steven B Hopping John N Brady Mark C Udey Jonathan C Vogel

The human hair follicle bulge is an important niche for keratinocyte stem cells (KSCs). Elucidation of human bulge cell biology could be facilitated by analysis of global gene expression profiles and identification of unique cell-surface markers. The lack of distinctive bulge morphology in human hair follicles has hampered studies of bulge cells and KSCs. In this study, we determined the distri...

2013
Shangxi Liu Andrew Leask

It is critical to understand how stem cell activity is regulated during regeneration. Hair follicles constitute an important model for organ regeneration because, throughout adult life, they undergo cyclical regeneration. Hair follicle stem cells-epithelial cells located in the follicle bulge-are activated by periodic β-catenin activity, which is regulated not only by epithelial-derived Wnt, bu...

2012
Juan Li Hai Zheng Junfeng Wang Fang Yu Rebecca J. Morris Timothy C. Wang Shiang Huang Walden Ai

BACKGROUND Kruppel-like factor KLF4 is a transcription factor critical for the establishment of the barrier function of the skin. Its function in stem cell biology has been recently recognized. Previous studies have revealed that hair follicle stem cells contribute to cutaneous wound healing. However, expression of KLF4 in hair follicle stem cells and the importance of such expression in cutane...

2012
Mari Cleide Sogayar Maria F. Forni Marina Trombetta-Lima Mari C. Sogayar

The skin is a complex stratifi ed organ which acts not only as a permeability barrier and defense against external agents, but also has essential thermoregulatory, sensory and metabolic functions. Due to its high versatility and activity, the skin undergoes continuous selfrenewal to repair damaged tissue and replace old cells. Consequently, the skin is a reservoir for adult stem cells of diff e...

Journal: :The Journal of investigative dermatology 2013
Ji Li Ting Xin Jiang Cheng Ming Chuong

Alopecia can be caused by defective formation, defective regeneration, or increased destruction of hair follicles. Much work has elucidated the roles of diffusible morphogens in modulating hair follicle stem cell activities. Recent studies have revealed novel molecular events within the nucleus, which are required for the activation and progression of hair stem cells. These studies will provide...

2009
Kim B. Jensen Charlotte A. Collins Elisabete Nascimento David W. Tan Michaela Frye Satoshi Itami Fiona M. Watt

Lrig1 is a marker of human interfollicular epidermal stem cells and helps maintain stem cell quiescence. We show that, in mouse epidermis, Lrig1 defines the hair follicle junctional zone adjacent to the sebaceous glands and infundibulum. Lrig1 is a Myc target gene; loss of Lrig1 increases the proliferative capacity of stem cells in culture and results in epidermal hyperproliferation in vivo. Lr...

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