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◆ Science translational medicine2026-09-02

Loss of function of ALDH3B2 transdifferentiates human pancreatic duct cells into β-like cells.

Jian Li, Kevin Bode, Yu-Chi Lee, Noelle Morrow, Andy Ma, Mulin He, Siying Wei, Jessica da Silva Pereira, Taylor Stewart, Alexander Lee-Papastavros, Jennifer Hollister-Lock, Brooke A Sullivan, Hui Pan, Jonathan M Dreyfuss, Susan Bonner-Weir, Peng Yi

原始摘要(英文原文)· Original abstract
Replenishment of pancreatic β cells is key to a cure for diabetes. β cell regeneration is achieved predominantly by self-replication, especially in rodents, but it was also shown that pancreatic duct cells can transdifferentiate into β cells. How pancreatic duct cells are transdifferentiated and whether we can manipulate transdifferentiation to replenish β cell mass are not well understood. Using a genome-wide clustered regularly interspaced short palindromic repeats (CRISPR) screen, we found that the loss of function of aldehyde dehydrogenase family 3 member B2 (ALDH3B2) was sufficient to transdifferentiate cell line-based and human pancreatic duct cells into functional β-like cells. The transdifferentiated cells had substantially increased the expression of β cell marker genes, secreted insulin in response to glucose, and lowered blood glucose to near normal for 6 weeks after transplantation into streptozotocin-induced diabetic mice under the kidney capsule. Our study identifies a gene that could potentially be targeted in human pancreatic duct cells to replenish β cell mass for diabetes therapy.
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Loss of function of ALDH3B2 transdifferentiates human pancreatic duct cells into β-like cells. — 科研速览 Science Skim