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Published on: June 16, 2011
Molecular mechanisms of β-cell dysfunction and death in monogenic forms of diabetes
Laura Sanchez Caballero1, Vyron Gorgogietas1, Maria Nicol Arroyo1
1ULB Center for Diabetes Research (UCDR), Université Libre de Bruxelles, Brussels, Belgium. http://www.ucdr.be/.
Abstract:
Monogenetic forms of diabetes represent 1%-5% of all diabetes cases and are caused by mutations in a single gene. These mutations, that affect genes involved in pancreatic β-cell development, function and survival, or insulin regulation, may be dominant or recessive, inherited or de novo. Most patients with monogenic diabetes are very commonly misdiagnosed as having type 1 or type 2 diabetes. The severity of their symptoms depends on the nature of the mutation, the function of the affected gene and, in some cases, the influence of additional genetic or environmental factors that modulate severity and penetrance. In some patients, diabetes is accompanied by other syndromic features such as deafness, blindness, microcephaly, liver and intestinal defects, among others. The age of diabetes onset may also vary from neonatal until early adulthood manifestations. Since the different mutations result in diverse clinical presentations, patients usually need different treatments that range from just diet and exercise, to the requirement of exogenous insulin or other hypoglycemic drugs, e.g., sulfonylureas or glucagon-like peptide 1 analogs to control their glycemia. As a consequence, awareness and correct diagnosis are crucial for the proper management and treatment of monogenic diabetes patients. In this chapter, we describe mutations causing different monogenic forms of diabetes associated with inadequate pancreas development or impaired β-cell function and survival, and discuss the molecular mechanisms involved in β-cell demise.
Insights
Monogenetic diabetes, caused by single-gene mutations, is often misdiagnosed. Correct diagnosis is crucial for tailored treatments, improving patient outcomes for these rare diabetes forms.
Area of Science:
- Genetics
- Endocrinology
- Molecular Biology
Background:
- Monogenetic diabetes accounts for 1%-5% of all diabetes cases, stemming from single-gene mutations affecting pancreatic beta-cell function or insulin regulation.
- These mutations can be inherited or de novo, dominant or recessive, leading to diverse clinical presentations and often misdiagnosis as type 1 or type 2 diabetes.
- Symptoms vary based on mutation type, affected gene, and genetic/environmental modifiers, sometimes including syndromic features and a wide age of onset.
Purpose of the Study:
- To describe mutations causing monogenetic diabetes linked to pancreatic development issues or impaired beta-cell function.
- To discuss the molecular mechanisms underlying beta-cell demise in monogenetic diabetes.
- To highlight the importance of accurate diagnosis for effective patient management.
Main Methods:
- Review of genetic mutations associated with monogenetic diabetes.
- Analysis of molecular mechanisms in pancreatic beta-cell dysfunction.
- Clinical case review focusing on diagnosis and treatment variability.
Main Results:
- Identified mutations affecting pancreatic beta-cell development, function, and survival as causes of monogenetic diabetes.
- Detailed diverse clinical presentations, from neonatal to adulthood onset, with or without syndromic features.
- Highlighted the need for individualized treatment strategies, including diet, exercise, insulin, sulfonylureas, or GLP-1 analogs.
Conclusions:
- Accurate diagnosis of monogenetic diabetes is essential for appropriate management and treatment.
- Understanding the molecular basis of beta-cell demise is key to developing targeted therapies.
- Awareness of monogenetic diabetes subtypes is critical for healthcare providers to avoid misdiagnosis and optimize patient care.
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