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Citations to this article

Preexisting pancreatic acinar cells contribute to acinar cell, but not islet β cell, regeneration
Biva M. Desai, … , Steven D. Leach, Doris A. Stoffers
Biva M. Desai, … , Steven D. Leach, Doris A. Stoffers
Published April 2, 2007
Citation Information: J Clin Invest. 2007;117(4):971-977. https://doi.org/10.1172/JCI29988.
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Preexisting pancreatic acinar cells contribute to acinar cell, but not islet β cell, regeneration

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Abstract

It has been suggested that pancreatic acinar cells can serve as progenitors for pancreatic islets, a concept with substantial implications for therapeutic efforts to increase insulin-producing β cell mass in patients with diabetes. We report what we believe to be the first in vivo lineage tracing approach to determine the plasticity potential of pancreatic acinar cells. We developed an acinar cell–specific inducible Cre recombinase transgenic mouse, which, when mated with a reporter strain and pulsed with tamoxifen, resulted in permanent and specific labeling of acinar cells and their progeny. During various time periods of observation and using several models to provoke injury, we failed to observe any chase of the labeled cells into the endocrine compartment, indicating that acinar cells do not normally transdifferentiate into islet β cells in vivo in adult mice. In contrast, we observed a substantial role for replication of preexisting acinar cells in the regeneration of new acinar cells after partial pancreatectomy. These results indicate that mature acinar cells harbor a facultative acinar but not endocrine progenitor capacity.

Authors

Biva M. Desai, Jennifer Oliver-Krasinski, Diva D. De Leon, Cyrus Farzad, Nankang Hong, Steven D. Leach, Doris A. Stoffers

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 Total
Citations: 3 6 7 4 11 13 7 6 5 15 10 12 12 11 17 12 8 4 4 167
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2013 (12)

Title and authors Publication Year
No Evidence For Beta Cell Neogenesis In The Adult Pancreas
Xiangwei Xiao, Zean Chen, Chiyo Shiota, Krishna Prasadan, Ping Guo, Yousef El-Gohary, Jose Paredes, Carey Welsh, John Wiersch, George Gittes
Journal of Clinical Investigation 2013
Sox9 and programming of liver and pancreatic progenitors
Yoshiya Kawaguchi
Journal of Clinical Investigation 2013
Neurogenin3 activation is not sufficient to direct duct-to-beta cell transdifferentiation in the adult pancreas
X Xiao, P Guo, C Shiota, K Prasadan, Y El-Gohary, J Wiersch, I Gaffar, GK Gittes
The Journal of biological chemistry 2013
The use of stem cells for pancreatic regeneration in diabetes mellitus
L Bouwens, I Houbracken, JK Mfopou
Nature Reviews Endocrinology 2013
Making β Cells from Adult Cells Within the Pancreas
PA Lysy, GC Weir, S Bonner-Weir
Current Diabetes Reports 2013
Pancreatic Duct Ligation After Almost Complete β-Cell Loss: Exocrine Regeneration but No Evidence of β-Cell Regeneration
C Cavelti-Weder, M Shtessel, JE Reuss, A Jermendy, T Yamada, F Caballero, S Bonner-Weir, GC Weir
Endocrinology 2013
Isolation, culture and genetic manipulation of mouse pancreatic ductal cells
M Reichert, S Takano, S Heeg, B Bakir, GP Botta, AK Rustgi
Nature Protocols 2013
Pancreas-Specific Cre Driver Lines and Considerations for Their Prudent Use
MA Magnuson, AB Osipovich
Cell Metabolism 2013
Transient cytokine treatment induces acinar cell reprogramming and regenerates functional beta cell mass in diabetic mice
L Baeyens, M Lemper, G Leuckx, SD Groef, P Bonfanti, G Stangé, R Shemer, C Nord, DW Scheel, FC Pan, U Ahlgren, G Gu, DA Stoffers, Y Dor, J Ferrer, G Gradwohl, CV Wright, MV de Casteele, MS German, L Bouwens, H Heimberg
Nature Biotechnology 2013
Pathogenesis of Pancreatic Cancer: Lessons from Animal Models
LC Murtaugh
Toxicologic pathology 2013
Spatiotemporal patterns of multipotentiality in Ptf1a -expressing cells during pancreas organogenesis and injury-induced facultative restoration
FC Pan, ED Bankaitis, D Boyer, X Xu, MV de Casteele, MA Magnuson, H Heimberg, CV Wright
Development (Cambridge, England) 2013
p53 status determines the role of autophagy in pancreatic tumour development
MT Rosenfeldt, J OPrey, JP Morton, C Nixon, G MacKay, A Mrowinska, A Au, TS Rai, L Zheng, R Ridgway, PD Adams, KI Anderson, E Gottlieb, OJ Sansom, KM Ryan
Nature 2013

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