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A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell

BACKGROUND: Our previous studies have shown that islet stellate cell (ISC), similar to pancreatic stellate cell (PSC) in phenotype and biological characters, may be responsible for the islet fibrosis in type 2 diabetes. To further identify the differences between PSC and ISC and for better understan...

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Autores principales: Wang, Xiaohang, Li, Wei, Chen, Juan, Zhao, Sheng, Qiu, Shanhu, Yin, Han, Carvalho, Vladmir, Zhou, Yunting, Shi, Ruifeng, Hu, Jiannan, Li, Shenyi, Nijiati, Munire, Sun, Zilin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5830286/
https://www.ncbi.nlm.nih.gov/pubmed/29619382
http://dx.doi.org/10.1155/2018/7361684
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author Wang, Xiaohang
Li, Wei
Chen, Juan
Zhao, Sheng
Qiu, Shanhu
Yin, Han
Carvalho, Vladmir
Zhou, Yunting
Shi, Ruifeng
Hu, Jiannan
Li, Shenyi
Nijiati, Munire
Sun, Zilin
author_facet Wang, Xiaohang
Li, Wei
Chen, Juan
Zhao, Sheng
Qiu, Shanhu
Yin, Han
Carvalho, Vladmir
Zhou, Yunting
Shi, Ruifeng
Hu, Jiannan
Li, Shenyi
Nijiati, Munire
Sun, Zilin
author_sort Wang, Xiaohang
collection PubMed
description BACKGROUND: Our previous studies have shown that islet stellate cell (ISC), similar to pancreatic stellate cell (PSC) in phenotype and biological characters, may be responsible for the islet fibrosis in type 2 diabetes. To further identify the differences between PSC and ISC and for better understanding of the physiological function of ISC, we employed genome-wide transcriptional analysis on the PSCs and ISCs of Wistar rats. METHOD: PSCs and ISCs from each rat were primarily cultured at the same condition. Genome-wide transcriptional sequence of stellate cells was generated. The identified differentially expressed genes were validated using RT-PCR. RESULTS: 32 significant differentially expressed genes between PSCs and ISCs were identified. Moreover, collagen type 11a1 (COL11A1), was found to be expressed 2.91-fold higher in ISCs compared with PSCs, indicating that COL11A1 might be a potential key gene modulating the differences between PSC and ISC. CONCLUSIONS: Our study identified and validated the differences between PSC and ISC in genome-wide transcriptional scale, confirming the assumption that ISC and PSC are similar other than identical. Moreover, our data might be instrumental for further investigation of ISC and islet fibrosis, and some differential expressed genes may provide an insight into new therapeutic targets for type 2 diabetes.
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spelling pubmed-58302862018-04-04 A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell Wang, Xiaohang Li, Wei Chen, Juan Zhao, Sheng Qiu, Shanhu Yin, Han Carvalho, Vladmir Zhou, Yunting Shi, Ruifeng Hu, Jiannan Li, Shenyi Nijiati, Munire Sun, Zilin J Diabetes Res Research Article BACKGROUND: Our previous studies have shown that islet stellate cell (ISC), similar to pancreatic stellate cell (PSC) in phenotype and biological characters, may be responsible for the islet fibrosis in type 2 diabetes. To further identify the differences between PSC and ISC and for better understanding of the physiological function of ISC, we employed genome-wide transcriptional analysis on the PSCs and ISCs of Wistar rats. METHOD: PSCs and ISCs from each rat were primarily cultured at the same condition. Genome-wide transcriptional sequence of stellate cells was generated. The identified differentially expressed genes were validated using RT-PCR. RESULTS: 32 significant differentially expressed genes between PSCs and ISCs were identified. Moreover, collagen type 11a1 (COL11A1), was found to be expressed 2.91-fold higher in ISCs compared with PSCs, indicating that COL11A1 might be a potential key gene modulating the differences between PSC and ISC. CONCLUSIONS: Our study identified and validated the differences between PSC and ISC in genome-wide transcriptional scale, confirming the assumption that ISC and PSC are similar other than identical. Moreover, our data might be instrumental for further investigation of ISC and islet fibrosis, and some differential expressed genes may provide an insight into new therapeutic targets for type 2 diabetes. Hindawi 2018-01-24 /pmc/articles/PMC5830286/ /pubmed/29619382 http://dx.doi.org/10.1155/2018/7361684 Text en Copyright © 2018 Xiaohang Wang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Xiaohang
Li, Wei
Chen, Juan
Zhao, Sheng
Qiu, Shanhu
Yin, Han
Carvalho, Vladmir
Zhou, Yunting
Shi, Ruifeng
Hu, Jiannan
Li, Shenyi
Nijiati, Munire
Sun, Zilin
A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell
title A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell
title_full A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell
title_fullStr A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell
title_full_unstemmed A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell
title_short A Transcriptional Sequencing Analysis of Islet Stellate Cell and Pancreatic Stellate Cell
title_sort transcriptional sequencing analysis of islet stellate cell and pancreatic stellate cell
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5830286/
https://www.ncbi.nlm.nih.gov/pubmed/29619382
http://dx.doi.org/10.1155/2018/7361684
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