Literature DB >> 12657516

A positive immunoselection method to isolate villous cytotrophoblast cells from first trimester and term placenta to high purity.

A J G Pötgens1, H Kataoka, S Ferstl, H-G Frank, P Kaufmann.   

Abstract

We developed a method for isolating highly pure villous cytotrophoblast cells from first trimester and term placenta that excludes extravillous trophoblast and syncytiotrophoblast fragments. The method is based on positive immunoselection using an antibody (mAb C76/18) reacting with hepatocyte growth factor activator inhibitor 1, HAI-1, a membrane antigen on villous cytotrophoblast. As a comparison, we also immunopurified cells using an antibody against CD105, present on syncytiotrophoblast and some extravillous trophoblast cells. The isolates were characterized by flow cytometry. HAI-1-positive cells from first trimester and term placentae were highly pure (>98 per cent cytokeratin 7-positive) mononuclear trophoblast cells. These isolations were contaminated with only very small percentages of vimentin and CD45-positive cells. HAI-1-positive trophoblast cells lacked CD105 and also HLA class I, a marker for extravillous trophoblast. In culture HAI-1-positive cells adhered, displayed an epithelial morphology, and survived for more than three days. In contrast, CD105-positive cell fractions from first trimester placenta were a heterogeneous mixture of mononuclear and multinuclear elements consisting of syncytiotrophoblast fragments, extravillous trophoblast cells, as well as around 5 per cent non-trophoblastic contaminants. In conclusion, the positive immunoselection method using antibody C76/18 yielded highly pure villous cytotrophoblast cells devoid of elements derived from syncytiotrophoblast or extravillous trophoblast.

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Year:  2003        PMID: 12657516     DOI: 10.1053/plac.2002.0914

Source DB:  PubMed          Journal:  Placenta        ISSN: 0143-4004            Impact factor:   3.481


  7 in total

1.  Hepatocyte growth factor activator inhibitor type 1 (HAI-1) is required for branching morphogenesis in the chorioallantoic placenta.

Authors:  Hiroyuki Tanaka; Koki Nagaike; Naoki Takeda; Hiroshi Itoh; Kazuyo Kohama; Tsuyoshi Fukushima; Shiro Miyata; Shuichiro Uchiyama; Shunro Uchinokura; Takeshi Shimomura; Keiji Miyazawa; Naomi Kitamura; Gen Yamada; Hiroaki Kataoka
Journal:  Mol Cell Biol       Date:  2005-07       Impact factor: 4.272

2.  Isolation and characterization of trophoblasts from enzymatic explants of human term placenta.

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3.  Gene expression profiles of HTR8-S/Vneo cells after changes in ABCA1 expression.

Authors:  Chengmao Xie; Xiaohui Cai; Xiaoju Wang; Li Lin; Yan Long; Xin Cui
Journal:  Funct Integr Genomics       Date:  2018-06-21       Impact factor: 3.410

4.  Expression of flotillins in the human placenta: potential implications for placental transcytosis.

Authors:  Janelle R Walton; Heather A Frey; Dale D Vandre; Jesse J Kwiek; Tomoko Ishikawa; Toshihiro Takizawa; John M Robinson; William E Ackerman
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5.  Human Primary Trophoblast Cell Culture Model to Study the Protective Effects of Melatonin Against Hypoxia/reoxygenation-induced Disruption.

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Journal:  J Vis Exp       Date:  2016-07-30       Impact factor: 1.355

6.  Isolation, purification and in vitro differentiation of cytotrophoblast cells from human term placenta.

Authors:  Liping Li; Danny J Schust
Journal:  Reprod Biol Endocrinol       Date:  2015-07-09       Impact factor: 5.211

7.  Trophoblast Differentiation Affects Crucial Nutritive Functions of Placental Membrane Transporters.

Authors:  Rona Karahoda; Jonas Zaugg; Barbara Fuenzalida; Sampada Kallol; Ruedi Moser-Haessig; Frantisek Staud; Christiane Albrecht
Journal:  Front Cell Dev Biol       Date:  2022-02-22
  7 in total

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