Literature DB >> 21465525

The bulge area is the origin of nestin-expressing pluripotent stem cells of the hair follicle.

Aisada Uchugonova1, Jennifer Duong, Nan Zhang, Karsten König, Robert M Hoffman.   

Abstract

Nestin-expressing pluripotent stem cells have been found both in the bulge area (BA) as well as the dermal papilla (DP). Nestin-expressing stem cells of both the BA and DP have been previously shown to be able to form neurons and other non-follicle cell types. The nestin-expressing stem cells from the DP have been termed skin precursor or SKP cells. Both nestin-expressing DP and BA cells have been previously shown to effect repair of the injured spinal cord and peripheral nerve, with the BA being the greater and more constant source of the stem cells. The BA contains nestin-expressing stem cells throughout the hair cycle, whereas nestin-expressing dermal papillae stem cells were found in early and mid-anagen only. Our previous studies have shown that the nestin-expressing stem cells in the BA and DP have similar morphological features. The cells from both regions have a small body diameter of approximately 7 µm with long extrusions, as shown by 2-photon imaging. In the present study, using 2-photon imaging of whisker follicles from transgenic mice expressing nestin-driven green fluorescent protein (ND-GFP), we demonstrate that the BA is the source of the nestin-expressing stem cells of the hair follicle. The nestin-expressing stem cells migrate from the BA to the DP as well as into the surrounding skin tissues including the epidermis, and during wound healing, suggesting that the BA may be the source of the stem cells of the skin itself.
Copyright © 2011 Wiley-Liss, Inc.

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Year:  2011        PMID: 21465525     DOI: 10.1002/jcb.23122

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  54 in total

1.  Tenuigenin promotes proliferation and differentiation of hippocampal neural stem cells.

Authors:  Yujing Chen; Xiaobo Huang; Wenqiang Chen; Ningqun Wang; Lin Li
Journal:  Neurochem Res       Date:  2011-12-18       Impact factor: 3.996

2.  Increased expression of nestin in human pterygial epithelium.

Authors:  Dan Wen; Hua Wang; Boon Chin Heng; Hua Liu
Journal:  Int J Ophthalmol       Date:  2013-06-18       Impact factor: 1.779

3.  Clonal precursor of bone, cartilage, and hematopoietic niche stromal cells.

Authors:  Charles K F Chan; Paul Lindau; Wen Jiang; James Y Chen; Lillian F Zhang; Ching-Cheng Chen; Jun Seita; Debashis Sahoo; Jae-Beom Kim; Andrew Lee; Sujin Park; Divya Nag; Yongquan Gong; Subhash Kulkarni; Cynthia A Luppen; Alexander A Theologis; Derrick C Wan; Anthony DeBoer; Eun Young Seo; Justin D Vincent-Tompkins; Kyle Loh; Graham G Walmsley; Daniel L Kraft; Joseph C Wu; Michael T Longaker; Irving L Weissman
Journal:  Proc Natl Acad Sci U S A       Date:  2013-07-15       Impact factor: 11.205

4.  Heterogeneous cell-cycle behavior in response to UVB irradiation by a population of single cancer cells visualized by time-lapse FUCCI imaging.

Authors:  Shinji Miwa; Shuya Yano; Hiroaki Kimura; Mako Yamamoto; Makoto Toneri; Takashi Murakami; Katsuhiro Hayashi; Norio Yamamoto; Toshiyoshi Fujiwara; Hiroyuki Tsuchiya; Robert M Hoffman
Journal:  Cell Cycle       Date:  2015       Impact factor: 4.534

5.  GFP labeling kinetics of triple-negative human breast cancer by a killer-reporter adenovirus in 3D Gelfoam® histoculture.

Authors:  Shuya Yano; Kiyoto Takehara; Shinji Miwa; Hiroyuki Kishimoto; Hiroshi Tazawa; Yasuo Urata; Shunsuke Kagawa; Michael Bouvet; Toshiyoshi Fujiwara; Robert M Hoffman
Journal:  In Vitro Cell Dev Biol Anim       Date:  2017-02-23       Impact factor: 2.416

6.  High-metastatic triple-negative breast-cancer variants selected in vivo become chemoresistant in vitro.

Authors:  Shuya Yano; Kiyoto Takehara; Hiroyuki Kishimoto; Hiroshi Tazawa; Yasuo Urata; Shunsuke Kagawa; Michael Bouvet; Toshiyoshi Fujiwara; Robert M Hoffman
Journal:  In Vitro Cell Dev Biol Anim       Date:  2017-01-26       Impact factor: 2.416

7.  Comparison of in vitro invasiveness of high- and low-metastatic triple-negative human breast cancer visualized by color-coded imaging.

Authors:  Shuya Yano; Kiyoto Takehara; Hiroshi Tazawa; Hiroyuki Kishimoto; Shunsuke Kagawa; Toshiyoshi Fujiwara; Robert M Hoffman
Journal:  In Vitro Cell Dev Biol Anim       Date:  2016-10-24       Impact factor: 2.416

8.  Color-coded intravital imaging demonstrates a transforming growth factor-β (TGF-β) antagonist selectively targets stromal cells in a human pancreatic-cancer orthotopic mouse model.

Authors:  Takashi Murakami; Yukihiko Hiroshima; Kentaro Miyake; Ho Kyoung Hwang; Tasuku Kiyuna; Jonathan C DeLong; Thinzar M Lwin; Ryusei Matsuyama; Ryutaro Mori; Takafumi Kumamoto; Takashi Chishima; Kuniya Tanaka; Yasushi Ichikawa; Michael Bouvet; Itaru Endo; Robert M Hoffman
Journal:  Cell Cycle       Date:  2017-04-25       Impact factor: 4.534

9.  Invading cancer cells are predominantly in G0/G1 resulting in chemoresistance demonstrated by real-time FUCCI imaging.

Authors:  Shuya Yano; Shinji Miwa; Sumiyuki Mii; Yukihiko Hiroshima; Fuminari Uehara; Mako Yamamoto; Hiroyuki Kishimoto; Hiroshi Tazawa; Michael Bouvet; Toshiyoshi Fujiwara; Robert M Hoffman
Journal:  Cell Cycle       Date:  2014-01-20       Impact factor: 4.534

Review 10.  Tissue engineering for the oncologic urinary bladder.

Authors:  Tomasz Drewa; Jan Adamowicz; Arun Sharma
Journal:  Nat Rev Urol       Date:  2012-08-21       Impact factor: 14.432

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