| Literature DB >> 31073376 |
Tatiane Martins Matos1, Juliana Nery De Souza-Talarico2.
Abstract
Allostatic load is defined as the frequent activation of the neuroendocrine, immunological, metabolic and cardiovascular systems, which makes individuals more susceptible to stress-related health problems. According to this model, physiological dysregulations start to emerge decades before diseases manifest. Consequently, stress research has shifted its attention to anticipating the degree of this dysregulation to better understand the impact of stress hormones and other biomarkers on disease progression. In view of the growing number of studies that demonstrate the influence of modifiable risk factors on cognitive decline, in addition to the effects of chronic stress mediators, the objective of the present review was to present an overview of the development of cognitive changes based on studies on stress and its mediators.Entities:
Keywords: Alzheimer’s disease; allostatic load; cognitive decline; memory; stress
Year: 2019 PMID: 31073376 PMCID: PMC6497016 DOI: 10.1590/1980-57642018dn13-010002
Source DB: PubMed Journal: Dement Neuropsychol ISSN: 1980-5764
Effects of the primary mediators of chronic stress and their similarity with the mechanisms that trigger Alzheimer's disease.
| Primary mediators | Mechanisms | Effects | Relationship with |
|---|---|---|---|
| Cortisol and glucose | ↑Cortisol induces hyperglycemia and insulin resistance | • Increased Ab peptide formation | • In individuals with MCI or AD, there is
a change in the HPA axis and cortisol concentration |
| DHEA-S | ↓DHEA-S is associated with immunological dysfunction | • Lower brain protection against Ab
toxicity | • DHEA-S decreased in AD patients |
| Proinflammatory cytokines | ↑IL-6 and IL-1 | • Change in APP metabolism, facilitating
the amyloidogenic pathway | • IL-6 increased in AD patients |
Ab: beta-amyloid; MCI: mild cognitive impairment; AD: Alzheimer's disease; HPA: hypothalamic-pituitary-adrenal; DM2: type 2 diabetes mellitus; DHEA-S: Dehydroepiandrosterone sulfate; IL-6: interleukin 6; IL-1: interleukin 1; APP: amyloid precursor protein.