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Citations to this article

Pharmacological conversion of gut epithelial cells into insulin-producing cells lowers glycemia in diabetic animals
Wen Du, … , Sandro Belvedere, Domenico Accili
Wen Du, … , Sandro Belvedere, Domenico Accili
Published October 25, 2022
Citation Information: J Clin Invest. 2022;132(24):e162720. https://doi.org/10.1172/JCI162720.
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Research Article Endocrinology Article has an altmetric score of 12

Pharmacological conversion of gut epithelial cells into insulin-producing cells lowers glycemia in diabetic animals

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Abstract

As a highly regenerative organ, the intestine is a promising source for cellular reprogramming for replacing lost pancreatic β cells in diabetes. Gut enterochromaffin cells can be converted to insulin-producing cells by forkhead box O1 (FoxO1) ablation, but their numbers are limited. In this study, we report that insulin-immunoreactive cells with Paneth/goblet cell features are present in human fetal intestine. Accordingly, lineage-tracing experiments show that, upon genetic or pharmacologic FoxO1 ablation, the Paneth/goblet lineage can also undergo conversion to the insulin lineage. We designed a screening platform in gut organoids to accurately quantitate β-like cell reprogramming and fine-tune a combination treatment to increase the efficiency of the conversion process in mice and human adult intestinal organoids. We identified a triple blockade of FOXO1, Notch, and TGF-β that, when tested in insulin-deficient streptozotocin (STZ) or NOD diabetic animals, resulted in near normalization of glucose levels, associated with the generation of intestinal insulin-producing cells. The findings illustrate a therapeutic approach for replacing insulin treatment in diabetes.

Authors

Wen Du, Junqiang Wang, Taiyi Kuo, Liheng Wang, Wendy M. McKimpson, Jinsook Son, Hitoshi Watanabe, Takumi Kitamoto, Yunkyoung Lee, Remi J. Creusot, Lloyd E. Ratner, Kasi McCune, Ya-Wen Chen, Brendan H. Grubbs, Matthew E. Thornton, Jason Fan, Nishat Sultana, Bryan S. Diaz, Iyshwarya Balasubramanian, Nan Gao, Sandro Belvedere, Domenico Accili

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Total citations by year

Year: 2025 2024 2023 2022 Total
Citations: 3 6 2 1 12
Citation information
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Citations to this article (12)

Title and authors Publication Year
Carnosic acid attenuates diabetic retinopathy via the SIRT1 signaling pathway: neuroprotection and endothelial cell preservation
Mai H, Liu C, Fu B, Ji X, Chen M, Zhang Y, Lin Y, Chen J, Song Y, Gu S
American Journal of Translational Research 2025
Transcriptome Analysis of Non-coding RNAs and mRNAs in the Dorsal Root Ganglion of Peripheral Nerve Injury-Induced Neuropathic Pain.
Xiong W, Liu Y, Ge X, Wang J, Wang Z
Biochemical genetics 2025
Mechanistic insights and approaches for beta cell regeneration.
Karampelias C, Liu KC, Tengholm A, Andersson O
Nature chemical biology 2025
Knockdown of SCN5A alters metabolic-associated genes and aggravates hypertrophy in the cardiomyoblast.
Tariq U, Sarkar S, Malladi N, Kumar R, Bugga P, Chakraborty P, Banerjee SK
Molecular Biology Reports 2024
Application and challenge of pancreatic organoids in therapeutic research
Chen J, Lu J, Wang SN, Miao CY
Frontiers in pharmacology 2024
Diabetes treatment by conversion of gut epithelial cells to insulin‐producing cells
Accili D, Talchai SC, Bouchi R, Lee AY, Du W, Kitamoto T, McKimpson WM, Belvedere S, Lin HV
Journal of Diabetes Investigation 2024
Effects of potassium diformate on growth performance, apparent digestibility of nutrients, serum biochemical indices, and intestinal microflora in Cherry Valley ducks
Li M, Yuan X, Li L, Geng Y, Hong L, Pu L, Yang H, Li L, Zhang J
Poultry Science 2024
Molecular functions of HAX1 during disease progress.
Zhang D, Yang J, Huang Q, Zhao D, Wang T, Yu D, Qin L, Zhang K
Virus genes 2024
Integration of multi-omics transcriptome-wide analysis for the identification of novel therapeutic drug targets in diabetic retinopathy
Yi G, Li Z, Sun Y, Ma X, Wang Z, Chen J, Cai D, Zhang Z, Chen Z, Wu F, Cao M, Fu M
Journal of Translational Medicine 2024
Gut as a source of new β‐cells and Segi's cap
Yagihashi S
Journal of Diabetes Investigation 2023
Hypothermic oxygenated perfusion attenuates DCD liver ischemia–reperfusion injury by activating the JAK2/STAT3/HAX1 pathway to regulate endoplasmic reticulum stress
Yue P, Lv X, You J, Zou Y, luo J, Lu Z, Cao H, Liu Z, Fan X, Ye Q
Cellular & Molecular Biology Letters 2023
Harnessing gut cells for functional insulin production: Strategies and challenges.
Baafi K, March JC
Biotechnology notes (Amsterdam, Netherlands) 2022

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