Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions

10.1038/s41598-020-80326-w

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Main Authors: Kukumberg, Marek, Phermthai, Tatsanee, Wichitwiengrat, Suparat, Wang, Xiaoyuan, Arjunan, Subramanian, Chong, Suet Yen, Fong, Chui-Yee, Wang, Jiong-Wei, Rufaihah, Abdul Jalil, Mattar, Citra Nurfarah Zaini
Other Authors: DEAN'S OFFICE (MEDICINE)
Format: Article
Language:English
Published: NATURE RESEARCH 2021
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/207077
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Institution: National University of Singapore
Language: English
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spelling sg-nus-scholar.10635-2070772024-11-15T12:55:33Z Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions Kukumberg, Marek Phermthai, Tatsanee Wichitwiengrat, Suparat Wang, Xiaoyuan Arjunan, Subramanian Chong, Suet Yen Fong, Chui-Yee Wang, Jiong-Wei Rufaihah, Abdul Jalil Mattar, Citra Nurfarah Zaini DEAN'S OFFICE (MEDICINE) SURGERY OBSTETRICS & GYNAECOLOGY Dr Marek Kukumberg Science & Technology Multidisciplinary Sciences Science & Technology - Other Topics 10.1038/s41598-020-80326-w SCIENTIFIC REPORTS 11 1 completed 2021-11-22T08:39:40Z 2021-11-22T08:39:40Z 2021-01-08 2021-11-19T11:03:03Z Article Kukumberg, Marek, Phermthai, Tatsanee, Wichitwiengrat, Suparat, Wang, Xiaoyuan, Arjunan, Subramanian, Chong, Suet Yen, Fong, Chui-Yee, Wang, Jiong-Wei, Rufaihah, Abdul Jalil, Mattar, Citra Nurfarah Zaini (2021-01-08). Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions. SCIENTIFIC REPORTS 11 (1). ScholarBank@NUS Repository. https://doi.org/10.1038/s41598-020-80326-w 20452322 https://scholarbank.nus.edu.sg/handle/10635/207077 en NATURE RESEARCH Elements
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
language English
topic Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
spellingShingle Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
Kukumberg, Marek
Phermthai, Tatsanee
Wichitwiengrat, Suparat
Wang, Xiaoyuan
Arjunan, Subramanian
Chong, Suet Yen
Fong, Chui-Yee
Wang, Jiong-Wei
Rufaihah, Abdul Jalil
Mattar, Citra Nurfarah Zaini
Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
description 10.1038/s41598-020-80326-w
author2 DEAN'S OFFICE (MEDICINE)
author_facet DEAN'S OFFICE (MEDICINE)
Kukumberg, Marek
Phermthai, Tatsanee
Wichitwiengrat, Suparat
Wang, Xiaoyuan
Arjunan, Subramanian
Chong, Suet Yen
Fong, Chui-Yee
Wang, Jiong-Wei
Rufaihah, Abdul Jalil
Mattar, Citra Nurfarah Zaini
format Article
author Kukumberg, Marek
Phermthai, Tatsanee
Wichitwiengrat, Suparat
Wang, Xiaoyuan
Arjunan, Subramanian
Chong, Suet Yen
Fong, Chui-Yee
Wang, Jiong-Wei
Rufaihah, Abdul Jalil
Mattar, Citra Nurfarah Zaini
author_sort Kukumberg, Marek
title Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
title_short Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
title_full Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
title_fullStr Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
title_full_unstemmed Hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
title_sort hypoxia-induced amniotic fluid stem cell secretome augments cardiomyocyte proliferation and enhances cardioprotective effects under hypoxic-ischemic conditions
publisher NATURE RESEARCH
publishDate 2021
url https://scholarbank.nus.edu.sg/handle/10635/207077
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