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Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery

We have previously demonstrated that the pancreas can recover from chronic pancreatitis (CP) lesions in the cerulein-induced mouse model. To explore how pancreatic recovery is achieved at the molecular level, we used RNA-sequencing (seq) and profiled transcriptomes during CP transition to recovery....

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Autores principales: Zhang, Yinjie, Yang, Baibing, Davis, Joy M., Drake, Madeline M., Younes, Mamoun, Shen, Qiang, Zhao, Zhongming, Cao, Yanna, Ko, Tien C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158417/
https://www.ncbi.nlm.nih.gov/pubmed/34104113
http://dx.doi.org/10.1155/2021/5595464
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author Zhang, Yinjie
Yang, Baibing
Davis, Joy M.
Drake, Madeline M.
Younes, Mamoun
Shen, Qiang
Zhao, Zhongming
Cao, Yanna
Ko, Tien C.
author_facet Zhang, Yinjie
Yang, Baibing
Davis, Joy M.
Drake, Madeline M.
Younes, Mamoun
Shen, Qiang
Zhao, Zhongming
Cao, Yanna
Ko, Tien C.
author_sort Zhang, Yinjie
collection PubMed
description We have previously demonstrated that the pancreas can recover from chronic pancreatitis (CP) lesions in the cerulein-induced mouse model. To explore how pancreatic recovery is achieved at the molecular level, we used RNA-sequencing (seq) and profiled transcriptomes during CP transition to recovery. CP was induced by intraperitoneally injecting cerulein in C57BL/6 mice. Time-matched controls (CON) were given normal saline. Pancreata were harvested from mice 4 days after the final injections (designated as CP and CON) or 4 weeks after the final injections (designated as CP recovery (CPR) and control recovery (CONR)). Pancreatic RNAs were extracted for RNA-seq and quantitative (q) PCR validation. Using RNA-seq, we identified a total of 3,600 differentially expressed genes (DEGs) in CP versus CON and 166 DEGs in CPR versus CONR. There are 132 DEGs overlapped between CP and CPR and 34 DEGs unique to CPR. A number of selected pancreatic fibrosis-relevant DEGs were validated by qPCR. The top 20 gene sets enriched from DEGs shared between CP and CPR are relevant to extracellular matrix and cancer biology, whereas the top 10 gene sets enriched from DEGs specific to CPR are pertinent to DNA methylation and specific signaling pathways. In conclusion, we identified a distinct set of DEGs in association with extracellular matrix and cancer cell activities to contrast CP and CPR. Once during ongoing CP recovery, DEGs relevant to DNA methylation and specific signaling pathways were induced to express. The DEGs shared between CP and CPR and the DEGs specific to CPR may serve as the unique transcriptomic signatures and biomarkers for determining CP recovery and monitoring potential therapeutic responses at the molecular level to reflect pancreatic histological resolution.
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spelling pubmed-81584172021-06-07 Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery Zhang, Yinjie Yang, Baibing Davis, Joy M. Drake, Madeline M. Younes, Mamoun Shen, Qiang Zhao, Zhongming Cao, Yanna Ko, Tien C. Mediators Inflamm Research Article We have previously demonstrated that the pancreas can recover from chronic pancreatitis (CP) lesions in the cerulein-induced mouse model. To explore how pancreatic recovery is achieved at the molecular level, we used RNA-sequencing (seq) and profiled transcriptomes during CP transition to recovery. CP was induced by intraperitoneally injecting cerulein in C57BL/6 mice. Time-matched controls (CON) were given normal saline. Pancreata were harvested from mice 4 days after the final injections (designated as CP and CON) or 4 weeks after the final injections (designated as CP recovery (CPR) and control recovery (CONR)). Pancreatic RNAs were extracted for RNA-seq and quantitative (q) PCR validation. Using RNA-seq, we identified a total of 3,600 differentially expressed genes (DEGs) in CP versus CON and 166 DEGs in CPR versus CONR. There are 132 DEGs overlapped between CP and CPR and 34 DEGs unique to CPR. A number of selected pancreatic fibrosis-relevant DEGs were validated by qPCR. The top 20 gene sets enriched from DEGs shared between CP and CPR are relevant to extracellular matrix and cancer biology, whereas the top 10 gene sets enriched from DEGs specific to CPR are pertinent to DNA methylation and specific signaling pathways. In conclusion, we identified a distinct set of DEGs in association with extracellular matrix and cancer cell activities to contrast CP and CPR. Once during ongoing CP recovery, DEGs relevant to DNA methylation and specific signaling pathways were induced to express. The DEGs shared between CP and CPR and the DEGs specific to CPR may serve as the unique transcriptomic signatures and biomarkers for determining CP recovery and monitoring potential therapeutic responses at the molecular level to reflect pancreatic histological resolution. Hindawi 2021-05-15 /pmc/articles/PMC8158417/ /pubmed/34104113 http://dx.doi.org/10.1155/2021/5595464 Text en Copyright © 2021 Yinjie Zhang et al. https://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
Zhang, Yinjie
Yang, Baibing
Davis, Joy M.
Drake, Madeline M.
Younes, Mamoun
Shen, Qiang
Zhao, Zhongming
Cao, Yanna
Ko, Tien C.
Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery
title Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery
title_full Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery
title_fullStr Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery
title_full_unstemmed Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery
title_short Distinct Murine Pancreatic Transcriptomic Signatures during Chronic Pancreatitis Recovery
title_sort distinct murine pancreatic transcriptomic signatures during chronic pancreatitis recovery
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158417/
https://www.ncbi.nlm.nih.gov/pubmed/34104113
http://dx.doi.org/10.1155/2021/5595464
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