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A common pathogenic mechanism linking type-2 diabetes and Alzheimer's disease: evidence from animal models
1Department of Neurology, Soonchunhyang University College of Medicine, Bucheon Hospital, Bucheon, Korea.
Abstract:
The failure of large-scale drug trials targeting the amyloidogenic pathway in Alzheimer's disease (AD) is increasing the need to identify a novel pathogenic mechanism. Studies finding a relationship between sporadic AD and type-2 diabetes mellitus (T2DM) are now receiving more attention. The risk for developing both T2DM and sporadic AD increases exponentially with age, and having T2DM doubles the risk of developing AD. The postmortem brains of AD patients show altered activities of insulin receptors and downstream molecules, as well as reduced protein and mRNA levels of insulin. More-recent laboratory research using animal models has identified mechanisms that are shared by diabetes and AD. Exogenous application of streptozotocin, which disrupts systemic insulin secretion, results in insulin deficiency, increased tau phosphorylation, and cognitive impairments that can be reversed by exogenous insulin supplementation. However, AD pathology is more severe in T2DM animal models exhibiting hyperinsulinemia and insulin resistance, and this is not modulated by insulin. The symptoms of this AD pathology included increased tau phosphorylation at multiple sites, increased tau cleavage, and greater neuronal and synaptic damage, even with increased amyloid β protein production. It has therefore been suggested that hyperinsulinemia and insulin resistance represent major factors underlying AD in T2DM. A recent study involving cross-mating ob/ob and amyloid precursor protein transgenic mice provided evidence that T2DM and AD aggravate each other, and suggested that cerebral vessels constitute an important substrate that is commonly damaged by the two major disorders. Given the evidence provided by animal models, further investigation of the mechanisms underlying T2DM in AD should help to identify potential treatment targets in AD.
Insights
Alzheimer's disease (AD) and type-2 diabetes mellitus (T2DM) share common pathways. Hyperinsulinemia and insulin resistance in T2DM worsen AD pathology, suggesting new therapeutic targets beyond amyloid.
Area of Science:
- Neuroscience
- Endocrinology
- Pathology
Background:
- Alzheimer's disease (AD) drug trials targeting amyloid have largely failed, necessitating new research avenues.
- Sporadic AD shares risk factors with type-2 diabetes mellitus (T2DM), with T2DM doubling AD risk.
- Altered insulin signaling and reduced insulin levels are observed in the brains of AD patients.
Purpose of the Study:
- To investigate the shared pathogenic mechanisms between Alzheimer's disease and type-2 diabetes mellitus.
- To explore the role of hyperinsulinemia and insulin resistance in exacerbating AD pathology.
Main Methods:
- Review of existing literature on AD and T2DM.
- Analysis of animal models demonstrating shared disease mechanisms.
- Examination of studies involving streptozotocin-induced diabetes and genetically modified mouse models.
Main Results:
- Insulin deficiency in animal models causes tau phosphorylation and cognitive impairment, reversible with insulin.
- T2DM models with hyperinsulinemia and insulin resistance show exacerbated AD pathology, including tau hyperphosphorylation, cleavage, and neuronal damage.
- Cross-mating studies indicate T2DM and AD aggravate each other, with cerebral vessels being a common site of damage.
Conclusions:
- Hyperinsulinemia and insulin resistance are significant contributors to AD pathogenesis in T2DM patients.
- Cerebral vascular damage is a shared pathway affected by both T2DM and AD.
- Understanding these shared mechanisms may reveal novel therapeutic targets for AD treatment.
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