Charlotte Steenblock-Group

Stem-like Cells of the HPA axis and their role in stress

GHRH in diabetes and metabolism


Journal article


C. Steenblock, S. Bornstein
Reviews in Endocrine & Metabolic Disorders, 2024

Semantic Scholar DOI PubMedCentral PubMed
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APA   Click to copy
Steenblock, C., & Bornstein, S. (2024). GHRH in diabetes and metabolism. Reviews in Endocrine &Amp; Metabolic Disorders.


Chicago/Turabian   Click to copy
Steenblock, C., and S. Bornstein. “GHRH in Diabetes and Metabolism.” Reviews in Endocrine & Metabolic Disorders (2024).


MLA   Click to copy
Steenblock, C., and S. Bornstein. “GHRH in Diabetes and Metabolism.” Reviews in Endocrine &Amp; Metabolic Disorders, 2024.


BibTeX   Click to copy

@article{c2024a,
  title = {GHRH in diabetes and metabolism},
  year = {2024},
  journal = {Reviews in Endocrine & Metabolic Disorders},
  author = {Steenblock, C. and Bornstein, S.}
}

Abstract

Despite over a century of insulin therapy and recent advances in glucose monitoring, diabetes and its complications remain a significant burden. Current medications are not durable, with symptoms often returning after treatment ends, and responses vary between patients. Additionally, the effectiveness of many medications diminishes over time, highlighting the need for alternative approaches. Maintaining β-cell mass and promoting β-cell regeneration offer more curable treatments, while cell replacement therapies could be an option if regeneration is not feasible. For both strategies, enhancing β-cell survival is crucial. Growth hormone-releasing hormone (GHRH) was originally discovered for its ability to stimulate the production and release of growth hormone (GH) from the pituitary. Beyond the hypothalamus, GHRH is produced in peripheral tissues, with its receptor, GHRHR, expressed in tissues such as the pituitary, pancreas, adipose tissue, intestine, and liver. Several studies have shown that GHRH and its analogs enhance the survival of insulin-producing pancreatic β-cells both in vitro and in animal models. These beneficial effects strongly support the potential of GHRH agonists and antagonists for the clinical treatment of human metabolic diseases or for enhancing β-cell survival in cells used for transplantation. In the current review, we will discuss the roles of hypothalamic and extrahypothalamic GHRH in metabolism in physiological and pathological contexts, along with the underlying mechanisms. Furthermore, we will discuss the potential beneficial effects of GHRH analogs for the treatment of metabolic diseases.