A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle
The female reproductive tract constitutes the ovary, fallopian tubes, uterus, and cervix, but it is challenging to engineer this systemin vitro. Here, the authors develop a microfluidic device (EVATAR) with reproductive tract and peripheral tissues to replicate hormone release of a 28-day menstrual...
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Nature Portfolio
2017
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oai:doaj.org-article:502594c466a14109b2eb6d7e22593a422021-12-02T14:41:18ZA microfluidic culture model of the human reproductive tract and 28-day menstrual cycle10.1038/ncomms145842041-1723https://doaj.org/article/502594c466a14109b2eb6d7e22593a422017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14584https://doaj.org/toc/2041-1723The female reproductive tract constitutes the ovary, fallopian tubes, uterus, and cervix, but it is challenging to engineer this systemin vitro. Here, the authors develop a microfluidic device (EVATAR) with reproductive tract and peripheral tissues to replicate hormone release of a 28-day menstrual cycle.Shuo XiaoJonathan R. CoppetaHunter B. RogersBrett C. IsenbergJie ZhuSusan A. OlalekanKelly E. McKinnonDanijela DokicAlexandra S. RashediDaniel J. HaisenlederSaurabh S. MalpaniChanel A. Arnold-MurrayKuanwei ChenMingyang JiangLu BaiCatherine T. NguyenJiyang ZhangMonica M. LarondaThomas J. HopeKruti P. ManiarMary Ellen PavoneMichael J. AvramElizabeth C. SeftonSpiro GetsiosJoanna E. BurdetteJ. Julie KimJeffrey T. BorensteinTeresa K. WoodruffNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017) |
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Science Q Shuo Xiao Jonathan R. Coppeta Hunter B. Rogers Brett C. Isenberg Jie Zhu Susan A. Olalekan Kelly E. McKinnon Danijela Dokic Alexandra S. Rashedi Daniel J. Haisenleder Saurabh S. Malpani Chanel A. Arnold-Murray Kuanwei Chen Mingyang Jiang Lu Bai Catherine T. Nguyen Jiyang Zhang Monica M. Laronda Thomas J. Hope Kruti P. Maniar Mary Ellen Pavone Michael J. Avram Elizabeth C. Sefton Spiro Getsios Joanna E. Burdette J. Julie Kim Jeffrey T. Borenstein Teresa K. Woodruff A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
description |
The female reproductive tract constitutes the ovary, fallopian tubes, uterus, and cervix, but it is challenging to engineer this systemin vitro. Here, the authors develop a microfluidic device (EVATAR) with reproductive tract and peripheral tissues to replicate hormone release of a 28-day menstrual cycle. |
format |
article |
author |
Shuo Xiao Jonathan R. Coppeta Hunter B. Rogers Brett C. Isenberg Jie Zhu Susan A. Olalekan Kelly E. McKinnon Danijela Dokic Alexandra S. Rashedi Daniel J. Haisenleder Saurabh S. Malpani Chanel A. Arnold-Murray Kuanwei Chen Mingyang Jiang Lu Bai Catherine T. Nguyen Jiyang Zhang Monica M. Laronda Thomas J. Hope Kruti P. Maniar Mary Ellen Pavone Michael J. Avram Elizabeth C. Sefton Spiro Getsios Joanna E. Burdette J. Julie Kim Jeffrey T. Borenstein Teresa K. Woodruff |
author_facet |
Shuo Xiao Jonathan R. Coppeta Hunter B. Rogers Brett C. Isenberg Jie Zhu Susan A. Olalekan Kelly E. McKinnon Danijela Dokic Alexandra S. Rashedi Daniel J. Haisenleder Saurabh S. Malpani Chanel A. Arnold-Murray Kuanwei Chen Mingyang Jiang Lu Bai Catherine T. Nguyen Jiyang Zhang Monica M. Laronda Thomas J. Hope Kruti P. Maniar Mary Ellen Pavone Michael J. Avram Elizabeth C. Sefton Spiro Getsios Joanna E. Burdette J. Julie Kim Jeffrey T. Borenstein Teresa K. Woodruff |
author_sort |
Shuo Xiao |
title |
A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
title_short |
A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
title_full |
A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
title_fullStr |
A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
title_full_unstemmed |
A microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
title_sort |
microfluidic culture model of the human reproductive tract and 28-day menstrual cycle |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/502594c466a14109b2eb6d7e22593a42 |
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