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Pancreatic β-cell failure, clinical implications, and therapeutic strategies in type 2 diabetes
Daxin Cui1, Xingrong Feng2, Siman Lei3
1Molecular Medicine Research Center and Department of Endocrinology and Metabolism, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.
Abstract:
Pancreatic β-cell failure due to a reduction in function and mass has been defined as a primary contributor to the progression of type 2 diabetes (T2D). Reserving insulin-producing β-cells and hence restoring insulin production are gaining attention in translational diabetes research, and β-cell replenishment has been the main focus for diabetes treatment. Significant findings in β-cell proliferation, transdifferentiation, pluripotent stem cell differentiation, and associated small molecules have served as promising strategies to regenerate β-cells. In this review, we summarize current knowledge on the mechanisms implicated in β-cell dynamic processes under physiological and diabetic conditions, in which genetic factors, age-related alterations, metabolic stresses, and compromised identity are critical factors contributing to β-cell failure in T2D. The article also focuses on recent advances in therapeutic strategies for diabetes treatment by promoting β-cell proliferation, inducing non-β-cell transdifferentiation, and reprograming stem cell differentiation. Although a significant challenge remains for each of these strategies, the recognition of the mechanisms responsible for β-cell development and mature endocrine cell plasticity and remarkable advances in the generation of exogenous β-cells from stem cells and single-cell studies pave the way for developing potential approaches to cure diabetes.
Insights
Pancreatic beta-cell failure drives type 2 diabetes (T2D) progression. Regenerative strategies like promoting beta-cell proliferation and stem cell differentiation offer promising therapeutic avenues for diabetes treatment.
Area of Science:
- Endocrinology and Metabolism
- Regenerative Medicine
Background:
- Pancreatic beta-cell dysfunction and loss are central to type 2 diabetes (T2D) pathogenesis.
- Restoring beta-cell mass and function is a key goal in diabetes research.
Approach:
- Review of mechanisms underlying beta-cell failure in T2D, including genetic, aging, and metabolic factors.
- Exploration of therapeutic strategies focused on beta-cell regeneration.
Key Points:
- Beta-cell failure involves reduced function and mass, critically impacting T2D.
- Regenerative approaches include enhancing beta-cell proliferation, inducing transdifferentiation, and differentiating pluripotent stem cells.
- Understanding beta-cell plasticity and development is crucial for therapeutic advancements.
Conclusions:
- Current strategies for beta-cell regeneration face challenges but show promise.
- Advances in stem cell differentiation and single-cell studies are paving the way for potential diabetes cures.
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