Literature DB >> 22778223

Differentiation of human embryonic stem cells and human induced pluripotent stem cells into steroid-producing cells.

Takuhiro Sonoyama1, Masakatsu Sone, Kyoko Honda, Daisuke Taura, Katsutoshi Kojima, Megumi Inuzuka, Naotetsu Kanamoto, Naohisa Tamura, Kazuwa Nakao.   

Abstract

Although there have been reports of the differentiation of mesenchymal stem cells and mouse embryonic stem (ES) cells into steroid-producing cells, the differentiation of human ES/induced pluripotent stem (iPS) cells into steroid-producing cells has not been reported. The purpose of our present study was to establish a method for inducing differentiation of human ES/iPS cells into steroid-producing cells. The first approach we tried was embryoid body formation and further culture on adherent plates. The resultant differentiated cells expressed mRNA encoding the steroidogenic enzymes steroidogenic acute regulatory protein, 3β-hydroxysteroid dehydrogenase, cytochrome P450-containing enzyme (CYP)-11A1, CYP17A1, and CYP19, and secreted progesterone was detected in the cell medium. However, expression of human chorionic gonadotropin was also detected, suggesting the differentiated cells were trophoblast like. We next tried a multistep approach. As a first step, human ES/iPS cells were induced to differentiate into the mesodermal lineage. After 7 d of differentiation induced by 6-bromoindirubin-3'-oxime (a glycogen synthase kinase-3β inhibitor), the human ES/iPS cells had differentiated into fetal liver kinase-1- and platelet derived growth factor receptor-α-expressing mesodermal lineage cells. As a second step, plasmid DNA encoding steroidogenic factor-1, a master regulator of steroidogenesis, was introduced into these mesodermal cells. The forced expression of steroidogenic factor-1 and subsequent addition of 8-bromoadenosine 3',5'-cyclic monophosphate induced the mesodermal cells to differentiate into the steroidogenic cell lineage, and expression of CYP21A2 and CYP11B1, in addition to steroidogenic acute regulatory protein, 3β-hydroxysteroid dehydrogenase, CYP11A1, and CYP17A1, was detected. Moreover, secreted cortisol was detected in the medium, but human chorionic gonadotropin was not. These findings indicate that the steroid-producing cells obtained through the described multistep method are not trophoblast like; instead, they exhibit characteristics of adrenal cortical cells.

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Year:  2012        PMID: 22778223     DOI: 10.1210/en.2012-1060

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  28 in total

1.  Directed mouse embryonic stem cells into leydig-like cells rescue testosterone-deficient male rats in vivo.

Authors:  Yan Yang; Zhijian Su; Wenting Xu; Jiao Luo; Rui Liang; Qi Xiang; Qihao Zhang; Ren-shan Ge; Yadong Huang
Journal:  Stem Cells Dev       Date:  2014-12-18       Impact factor: 3.272

2.  Direct conversion of human fibroblasts into functional Leydig-like cells by SF-1, GATA4 and NGFI-B.

Authors:  Yan-Ping Hou; Zhi-Yuan Zhang; Xiao-Yu Xing; Jin Zhou; Jie Sun
Journal:  Am J Transl Res       Date:  2018-01-15       Impact factor: 4.060

3.  Directing differentiation of human induced pluripotent stem cells toward androgen-producing Leydig cells rather than adrenal cells.

Authors:  Lu Li; Yuchang Li; Chantal Sottas; Martine Culty; Jinjiang Fan; Yiman Hu; Garett Cheung; Héctor E Chemes; Vassilios Papadopoulos
Journal:  Proc Natl Acad Sci U S A       Date:  2019-10-07       Impact factor: 11.205

Review 4.  Differentiation of mesenchymal stem cells into gonad and adrenal steroidogenic cells.

Authors:  Takashi Yazawa; Yoshitaka Imamichi; Kaoru Miyamoto; Akihiro Umezawa; Takanobu Taniguchi
Journal:  World J Stem Cells       Date:  2014-04-26       Impact factor: 5.326

Review 5.  Human pituitary development and application of iPSCs for pituitary disease.

Authors:  Ryusaku Matsumoto; Yutaka Takahashi
Journal:  Cell Mol Life Sci       Date:  2020-11-18       Impact factor: 9.261

Review 6.  Novel methods in adrenal research: a metabolomics approach.

Authors:  Thomas G Papathomas; Na Sun; Vasileios Chortis; Angela E Taylor; Wiebke Arlt; Susan Richter; Graeme Eisenhofer; Gerard Ruiz-Babot; Leonardo Guasti; Axel Karl Walch
Journal:  Histochem Cell Biol       Date:  2019-02-06       Impact factor: 4.304

Review 7.  Adrenal cortex renewal in health and disease.

Authors:  Rodanthi Lyraki; Andreas Schedl
Journal:  Nat Rev Endocrinol       Date:  2021-05-19       Impact factor: 43.330

8.  Differentiation of human umbilical cord mesenchymal stem cells into Leydig-like cells with defined molecular compounds.

Authors:  Weiping Ji; Yong Chen; Long Wang; Zhangye Xu; Jahanzeb Ahmed; Renshan Ge; Maoping Chu; Xiaoling Guo
Journal:  Hum Cell       Date:  2020-02-07       Impact factor: 4.374

Review 9.  Advances in stem cell research for the treatment of primary hypogonadism.

Authors:  Lu Li; Vassilios Papadopoulos
Journal:  Nat Rev Urol       Date:  2021-06-29       Impact factor: 14.432

Review 10.  Stem Leydig Cells in the Adult Testis: Characterization, Regulation and Potential Applications.

Authors:  Panpan Chen; Barry R Zirkin; Haolin Chen
Journal:  Endocr Rev       Date:  2020-02-01       Impact factor: 19.871

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