Diurnal cortisol, neuroinflammation and cerebrovascular dysfunction biomarkers in a memory clinic cohort: findings from the Co-STAR study

Author:

Daniilidou Makrina1ORCID,Holleman Jasper,Hagman Göran,Kåreholt Ingemar,Sindi Shireen,Aspö Malin,Brinkmalm Ann,Zetterberg Henrik2ORCID,Blennow Kaj2ORCID,Solomon Alina,Kivipelto Miia3,Matton Anna1

Affiliation:

1. Karolinska Institutet

2. University of Gothenburg

3. Karolinska Institute

Abstract

Abstract Cortisol dysregulation, neuroinflammation and cerebrovascular dysfunction are biological processes that have been separately shown to be affected in Alzheimer’s disease (AD). Here, we aimed to identify biomarker signatures reflecting these pathways in 108 memory clinic patients with subjective cognitive decline (SCI, N=40), mild cognitive impairment (MCI, N=39) and AD (N=29). Participants were from the well characterized Cortisol and Stress in Alzheimer’s Disease (Co-STAR) cohort, recruited at Karolinska University Hospital. Salivary diurnal cortisol measures and 41 CSF proteins were analyzed. Principal component analysis was applied to identify combined biosignatures related to AD pathology, synaptic loss and neuropsychological assessments, in linear regressions adjusted for confounders, such as age, sex, education and diagnosis. We found increased CSF levels of C-reactive protein (CRP), interferon γ-inducible protein (IP-10), thymus and activation regulated chemokine (TARC), intercellular adhesion molecule-1 (ICAM-1), and vascular cell adhesion molecule-1 (VCAM-1) in MCI patients. Further, markers of cortisol dysregulation (flattened salivary cortisol awakening response and flattened cortisol slope) correlated with increased levels of placental growth factor (PlGF), IP-10 and chitinase 3-like 1 (YKL-40) in the total cohort. A biosignature composed of cortisol awakening response, cortisol slope and CSF IL-6 was downregulated in AD patients. Moreover, biomarker signatures reflecting overlapping pathophysiological processes of neuroinflammation and vascular injury were associated with AD pathology, synaptic loss and worsened processing speed. Our findings suggest an early dysregulation of immune and cerebrovascular processes during the MCI stage and provide insights into the interrelationship of chronic stress and neuroinflammation in AD.

Publisher

Research Square Platform LLC

Reference65 articles.

1. The amyloid hypothesis of Alzheimer’s disease at 25 years;Selkoe DJ;EMBO Mol Med,2016

2. Alzheimer’s disease;Scheltens P;The Lancet,2021

3. NIA-AA Research Framework: Toward a biological definition of Alzheimer’s disease;Jack CR;Alzheimer’s and Dementia,2018

4. Dissection of synaptic pathways through the CSF biomarkers for predicting Alzheimer disease;Tible M;Neurology,2020

5. Wellington H, Paterson RW, Portelius E, Törnqvist U, Magdalinou N, Fox NC et al. Increased CSF neurogranin concentration is specific to Alzheimer disease. Neurology 2016; 86: 829 LP – 835.

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