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CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin

Beyond their role in bone and lung homeostasis, mesenchymal stem cells (MSCs) are becoming popular in cell therapy. Various insults may disrupt the repair mechanisms involving MSCs. One such insult is smoking, which is a major risk factor for osteoporosis and respiratory diseases. Upon cigarette smo...

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Autores principales: Ouhtit, Allal, Thouta, Rajesh, Zayed, Hatem, Gaur, Rajiv L., Fernando, Augusta, Rahman, Mizanur, Welsh, David A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6945551/
https://www.ncbi.nlm.nih.gov/pubmed/31929744
http://dx.doi.org/10.7150/ijms.33125
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author Ouhtit, Allal
Thouta, Rajesh
Zayed, Hatem
Gaur, Rajiv L.
Fernando, Augusta
Rahman, Mizanur
Welsh, David A.
author_facet Ouhtit, Allal
Thouta, Rajesh
Zayed, Hatem
Gaur, Rajiv L.
Fernando, Augusta
Rahman, Mizanur
Welsh, David A.
author_sort Ouhtit, Allal
collection PubMed
description Beyond their role in bone and lung homeostasis, mesenchymal stem cells (MSCs) are becoming popular in cell therapy. Various insults may disrupt the repair mechanisms involving MSCs. One such insult is smoking, which is a major risk factor for osteoporosis and respiratory diseases. Upon cigarette smoke-induced damage, a series of reparatory mechanisms ensue; one such mechanism involves Glycosaminoglycans (GAG). One of these GAGs, namely hyaluronic acid (HA), serves as a potential therapeutic target in lung injury. However, much of its mechanisms of action through its major receptor CD44 remains unexplored. Our previous studies have identified and functionally validated that both cortactin (CTTN: marker of motility) and Survivin (BIRC5: required for cell survival) act as novel HA/CD44-downstream transcriptional targets underpinning cell motility. Here, human MSCs were treated with “Water-pipe” smoke to investigate the effects of cigarette smoke condensate (CSC) on these HA-CD44 novel signaling pathways. Our results show that CSC decreased the expression of both CD44 and its downstream targets CTTN and BIRC5 in MSCs, and that HA reversed these effects. Interestingly, CSC inhibited migration and invasion of MSCs upon CD44-targeted RNAi treatment. This shows the importance of CD44-HA/CTTN and CD44-HA/BIRC5 signaling pathways in MSC motility, and further suggests that these signaling pathways may provide a novel mechanism implicated in migration of MSCs during repair of lung tissue injury. These findings suggest that one should use caution before utilizing MSC from donors with history of smoking, and further pave the way towards the development of targeted therapeutic approaches against CD44-associated diseases.
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spelling pubmed-69455512020-01-10 CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin Ouhtit, Allal Thouta, Rajesh Zayed, Hatem Gaur, Rajiv L. Fernando, Augusta Rahman, Mizanur Welsh, David A. Int J Med Sci Research Paper Beyond their role in bone and lung homeostasis, mesenchymal stem cells (MSCs) are becoming popular in cell therapy. Various insults may disrupt the repair mechanisms involving MSCs. One such insult is smoking, which is a major risk factor for osteoporosis and respiratory diseases. Upon cigarette smoke-induced damage, a series of reparatory mechanisms ensue; one such mechanism involves Glycosaminoglycans (GAG). One of these GAGs, namely hyaluronic acid (HA), serves as a potential therapeutic target in lung injury. However, much of its mechanisms of action through its major receptor CD44 remains unexplored. Our previous studies have identified and functionally validated that both cortactin (CTTN: marker of motility) and Survivin (BIRC5: required for cell survival) act as novel HA/CD44-downstream transcriptional targets underpinning cell motility. Here, human MSCs were treated with “Water-pipe” smoke to investigate the effects of cigarette smoke condensate (CSC) on these HA-CD44 novel signaling pathways. Our results show that CSC decreased the expression of both CD44 and its downstream targets CTTN and BIRC5 in MSCs, and that HA reversed these effects. Interestingly, CSC inhibited migration and invasion of MSCs upon CD44-targeted RNAi treatment. This shows the importance of CD44-HA/CTTN and CD44-HA/BIRC5 signaling pathways in MSC motility, and further suggests that these signaling pathways may provide a novel mechanism implicated in migration of MSCs during repair of lung tissue injury. These findings suggest that one should use caution before utilizing MSC from donors with history of smoking, and further pave the way towards the development of targeted therapeutic approaches against CD44-associated diseases. Ivyspring International Publisher 2020-01-01 /pmc/articles/PMC6945551/ /pubmed/31929744 http://dx.doi.org/10.7150/ijms.33125 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Ouhtit, Allal
Thouta, Rajesh
Zayed, Hatem
Gaur, Rajiv L.
Fernando, Augusta
Rahman, Mizanur
Welsh, David A.
CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin
title CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin
title_full CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin
title_fullStr CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin
title_full_unstemmed CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin
title_short CD44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, Cortactin and Survivin
title_sort cd44 mediates stem cell mobilization to damaged lung via its novel transcriptional targets, cortactin and survivin
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6945551/
https://www.ncbi.nlm.nih.gov/pubmed/31929744
http://dx.doi.org/10.7150/ijms.33125
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