Literature DB >> 21361791

CD24-positive cells from normal adult mouse liver are hepatocyte progenitor cells.

Qiong Qiu1, Julio Cesar Hernandez, Adam M Dean, Pulivarthi H Rao, Gretchen J Darlington.   

Abstract

The identification of specific cell surface markers that can be used to isolate liver progenitor cells will greatly facilitate experimentation to determine the role of these cells in liver regeneration and their potential for therapeutic transplantation. Previously, the cell surface marker, CD24, was observed to be expressed on undifferentiated bipotential mouse embryonic liver stem cells and 3,5-diethoxycarbonyl-1,4-dihydrocollidine-induced oval cells. Here, we describe the isolation and characterization of a rare, primary, nonhematopoietic, CD24+ progenitor cell population from normal, untreated mouse liver. By immunohistochemistry, CD24-expressing cells in normal adult mouse liver were colocalized with CK19-positive cholangiocytes. This nonhematopoietic (CD45-, Ter119-) CD24+ cell population isolated by flow cytometry represented 0.04% of liver cells and expressed several markers of liver progenitor/oval cells. The immunophenotype of nonhematopoietic CD24+ cells was CD133, Dlk, and Sca-1 high, but c-Kit, Thy-1, and CD34 low. The CD24+ cells had increased expression of CK19, epithelial cell adhesion molecule, Sox 9, and FN14 compared with the unsorted cells. Upon transplantation of nonhematopoietic CD24+ cells under the sub-capsule of the livers of Fah knockout mice, cells differentiated into mature functional hepatocytes. Analysis of X and Y chromosome complements were used to determine whether or not fusion of the engrafted cells with the recipient hepatocytes occurred. No cells were found that contained XXXY or any other combination of donor and host sex chromosomes as would be expected if cell fusion had occurred. These results suggested that CD24 can be used as a cell surface marker for isolation of hepatocyte progenitor cells from normal adult liver that are able to differentiate into hepatocytes.

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Year:  2011        PMID: 21361791      PMCID: PMC3225069          DOI: 10.1089/scd.2010.0352

Source DB:  PubMed          Journal:  Stem Cells Dev        ISSN: 1547-3287            Impact factor:   3.272


  45 in total

1.  Enrichment of a bipotent hepatic progenitor cell from naïve adult liver tissue.

Authors:  Natasha Wright; Lisa Samuelson; Maggie H Walkup; Prakash Chandrasekaran; David A Gerber
Journal:  Biochem Biophys Res Commun       Date:  2007-12-04       Impact factor: 3.575

2.  Transcriptional profiling of bipotential embryonic liver cells to identify liver progenitor cell surface markers.

Authors:  Scott A Ochsner; Hélène Strick-Marchand; Qiong Qiu; Susan Venable; Adam Dean; Margaret Wilde; Mary C Weiss; Gretchen J Darlington
Journal:  Stem Cells       Date:  2007-07-19       Impact factor: 6.277

3.  Human hepatic stem-like cells isolated using c-kit or CD34 can differentiate into biliary epithelium.

Authors:  H A Crosby; D A Kelly; A J Strain
Journal:  Gastroenterology       Date:  2001-02       Impact factor: 22.682

4.  Intrahepatic bile ducts develop according to a new mode of tubulogenesis regulated by the transcription factor SOX9.

Authors:  Aline Antoniou; Peggy Raynaud; Sabine Cordi; Yiwei Zong; François Tronche; Ben Z Stanger; Patrick Jacquemin; Christophe E Pierreux; Frederic Clotman; Frederic P Lemaigre
Journal:  Gastroenterology       Date:  2009-02-21       Impact factor: 22.682

5.  Identification of adult hepatic progenitor cells capable of repopulating injured rat liver.

Authors:  Mladen I Yovchev; Petar N Grozdanov; Hongchao Zhou; Harini Racherla; Chandan Guha; Mariana D Dabeva
Journal:  Hepatology       Date:  2008-02       Impact factor: 17.425

6.  Thy-1 is expressed in hepatic myofibroblasts and not oval cells in stem cell-mediated liver regeneration.

Authors:  Katalin Dezso; Peter Jelnes; Viktória László; Kornélia Baghy; Csaba Bödör; Sándor Paku; Niels Tygstrup; Hanne Cathrine Bisgaard; Peter Nagy
Journal:  Am J Pathol       Date:  2007-09-20       Impact factor: 4.307

7.  Fate-mapping evidence that hepatic stellate cells are epithelial progenitors in adult mouse livers.

Authors:  Liu Yang; Youngmi Jung; Alessia Omenetti; Rafal P Witek; Steve Choi; Hendrika M Vandongen; Jiawen Huang; Gianfranco D Alpini; Anna Mae Diehl
Journal:  Stem Cells       Date:  2008-05-29       Impact factor: 6.277

8.  Flow cytometric isolation and clonal identification of self-renewing bipotent hepatic progenitor cells in adult mouse liver.

Authors:  Atsushi Suzuki; Sayaka Sekiya; Makiko Onishi; Naoko Oshima; Hiroshi Kiyonari; Hiromitsu Nakauchi; Hideki Taniguchi
Journal:  Hepatology       Date:  2008-12       Impact factor: 17.425

9.  Establishment and characterization of hepatic stem-like cell lines from normal adult rat liver.

Authors:  Mitsuhi Hirata; Kumiko Amano; Ayumi Miyashita; Mayu Yasunaga; Tomoko Nakanishi; Kenzo Sato
Journal:  J Biochem       Date:  2008-10-30       Impact factor: 3.387

10.  Surface markers for the murine oval cell response.

Authors:  Craig Dorrell; Laura Erker; Kelsea M Lanxon-Cookson; Stephanie L Abraham; Tristan Victoroff; Simon Ro; Pamela S Canaday; Philip R Streeter; Markus Grompe
Journal:  Hepatology       Date:  2008-10       Impact factor: 17.425

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  37 in total

1.  Myofibroblastic cells function as progenitors to regenerate murine livers after partial hepatectomy.

Authors:  M Swiderska-Syn; W K Syn; G Xie; L Krüger; M V Machado; G Karaca; G A Michelotti; S S Choi; R T Premont; A M Diehl
Journal:  Gut       Date:  2013-10-30       Impact factor: 23.059

2.  Model systems and clinical applications of hepatic stem cells for liver regeneration.

Authors:  Min Zhang; Yan Zhong; Jun Chen
Journal:  Hepatol Int       Date:  2011-12-21       Impact factor: 6.047

3.  Effect of heparin on the biological properties and molecular signature of human mesenchymal stem cells.

Authors:  Ling Ling; Emily T Camilleri; Torben Helledie; Rebekah M Samsonraj; Drew M Titmarsh; Ren Jie Chua; Oliver Dreesen; Christian Dombrowski; David A Rider; Mario Galindo; Ian Lee; Wanjin Hong; James H Hui; Victor Nurcombe; Andre J van Wijnen; Simon M Cool
Journal:  Gene       Date:  2015-10-17       Impact factor: 3.688

4.  Heterogeneity of The CD90+ Population in Different Stages of Hepatocarcinogenesis.

Authors:  Smathorn Thakolwiboon; Jianhui Zhu; Qixing Liang; Theodore H Welling; Min Zhang; David M Lubman
Journal:  J Proteomics Bioinform       Date:  2014-09-12

5.  Elevated cerebral cortical CD24 levels in patients and mice with traumatic brain injury: a potential negative role in nuclear factor κb/inflammatory factor pathway.

Authors:  Wei Li; Hai-Ping Ling; Wan-Chun You; Huan-Dong Liu; Qing Sun; Meng-Liang Zhou; Wei Shen; Jin-Bing Zhao; Lin Zhu; Chun-Hua Hang
Journal:  Mol Neurobiol       Date:  2013-07-24       Impact factor: 5.590

6.  A Paracrine Mechanism Accelerating Expansion of Human Induced Pluripotent Stem Cell-Derived Hepatic Progenitor-Like Cells.

Authors:  Kota Tsuruya; Hiromi Chikada; Kinuyo Ida; Kazuya Anzai; Tatehiro Kagawa; Yutaka Inagaki; Tetsuya Mine; Akihide Kamiya
Journal:  Stem Cells Dev       Date:  2015-04-28       Impact factor: 3.272

Review 7.  The origin, biology, and therapeutic potential of facultative adult hepatic progenitor cells.

Authors:  Soona Shin; Klaus H Kaestner
Journal:  Curr Top Dev Biol       Date:  2014       Impact factor: 4.897

Review 8.  Ductular Reaction in Liver Diseases: Pathological Mechanisms and Translational Significances.

Authors:  Keisaku Sato; Marco Marzioni; Fanyin Meng; Heather Francis; Shannon Glaser; Gianfranco Alpini
Journal:  Hepatology       Date:  2018-12-27       Impact factor: 17.425

Review 9.  The potential role of liver stem cells in initiation of primary liver cancer.

Authors:  Xiao-Song Zhi; Jun Xiong; Xiao-Yuan Zi; Yi-Ping Hu
Journal:  Hepatol Int       Date:  2016-05-02       Impact factor: 6.047

Review 10.  Cancer stem cells in the development of liver cancer.

Authors:  Taro Yamashita; Xin Wei Wang
Journal:  J Clin Invest       Date:  2013-05-01       Impact factor: 14.808

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