scholarly journals Particulate matter and episodic memory decline mediated by early neuroanatomic biomarkers of Alzheimer’s disease

Brain ◽  
2019 ◽  
Vol 143 (1) ◽  
pp. 289-302 ◽  
Author(s):  
Diana Younan ◽  
Andrew J Petkus ◽  
Keith F Widaman ◽  
Xinhui Wang ◽  
Ramon Casanova ◽  
...  

Abstract Evidence suggests exposure to particulate matter with aerodynamic diameter <2.5 μm (PM2.5) may increase the risk for Alzheimer’s disease and related dementias. Whether PM2.5 alters brain structure and accelerates the preclinical neuropsychological processes remains unknown. Early decline of episodic memory is detectable in preclinical Alzheimer’s disease. Therefore, we conducted a longitudinal study to examine whether PM2.5 affects the episodic memory decline, and also explored the potential mediating role of increased neuroanatomic risk of Alzheimer’s disease associated with exposure. Participants included older females (n = 998; aged 73–87) enrolled in both the Women’s Health Initiative Study of Cognitive Aging and the Women’s Health Initiative Memory Study of Magnetic Resonance Imaging, with annual (1999–2010) episodic memory assessment by the California Verbal Learning Test, including measures of immediate free recall/new learning (List A Trials 1–3; List B) and delayed free recall (short- and long-delay), and up to two brain scans (MRI-1: 2005–06; MRI-2: 2009–10). Subjects were assigned Alzheimer’s disease pattern similarity scores (a brain-MRI measured neuroanatomical risk for Alzheimer’s disease), developed by supervised machine learning and validated with data from the Alzheimer’s Disease Neuroimaging Initiative. Based on residential histories and environmental data on air monitoring and simulated atmospheric chemistry, we used a spatiotemporal model to estimate 3-year average PM2.5 exposure preceding MRI-1. In multilevel structural equation models, PM2.5 was associated with greater declines in immediate recall and new learning, but no association was found with decline in delayed-recall or composite scores. For each interquartile increment (2.81 μg/m3) of PM2.5, the annual decline rate was significantly accelerated by 19.3% [95% confidence interval (CI) = 1.9% to 36.2%] for Trials 1–3 and 14.8% (4.4% to 24.9%) for List B performance, adjusting for multiple potential confounders. Long-term PM2.5 exposure was associated with increased Alzheimer’s disease pattern similarity scores, which accounted for 22.6% (95% CI: 1% to 68.9%) and 10.7% (95% CI: 1.0% to 30.3%) of the total adverse PM2.5 effects on Trials 1–3 and List B, respectively. The observed associations remained after excluding incident cases of dementia and stroke during the follow-up, or further adjusting for small-vessel ischaemic disease volumes. Our findings illustrate the continuum of PM2.5 neurotoxicity that contributes to early decline of immediate free recall/new learning at the preclinical stage, which is mediated by progressive atrophy of grey matter indicative of increased Alzheimer’s disease risk, independent of cerebrovascular damage.

Brain ◽  
2019 ◽  
Vol 143 (1) ◽  
pp. 8-10
Author(s):  
Melinda C Power

This scientific commentary refers to ‘Particulate matter and episodic memory decline mediated by early neuroanatomic biomarkers of Alzheimer’s disease’, by Younan et al. (doi: 10.1093/brain/awz348).


2016 ◽  
Vol 27 ◽  
pp. 15-22 ◽  
Author(s):  
Mohamad El Haj ◽  
Pascal Antoine ◽  
Philippe Amouyel ◽  
Jean-Charles Lambert ◽  
Florence Pasquier ◽  
...  

2016 ◽  
Vol 23 (5) ◽  
pp. 566-577 ◽  
Author(s):  
Sascha R.A. Meyer ◽  
Pauline E.J. Spaan ◽  
Leo Boelaarts ◽  
Rudolf W.H.M. Ponds ◽  
Ben Schmand ◽  
...  

2019 ◽  
Vol 15 ◽  
pp. P1271-P1272
Author(s):  
Andrew J. Petkus ◽  
Diana Younan ◽  
Keith F. Widaman ◽  
Xinhui Wang ◽  
Ramon Casanova ◽  
...  

GeroPsych ◽  
2014 ◽  
Vol 27 (4) ◽  
pp. 161-169 ◽  
Author(s):  
Nienke A. Hofrichter ◽  
Sandra Dick ◽  
Thomas G. Riemer ◽  
Carsten Schleussner ◽  
Monique Goerke ◽  
...  

Hippocampal dysfunction and deficits in episodic memory have been reported for both Alzheimer’s disease (AD) and major depressive disorder (MDD). Primacy performance has been associated with hippocampus-dependent episodic memory, while recency may reflect working memory performance. In this study, serial position profiles were examined in a total of 73 patients with MDD, AD, both AD and MDD, and healthy controls (HC) by means of CERAD-NP word list memory. Primacy performance was most impaired in AD with comorbid MDD, followed by AD, MDD, and HC. Recency performance, on the other hand, was comparable across groups. These findings indicate that primacy in AD is impaired in the presence of comorbid MDD, suggesting additive performance decrements in this specific episodic memory function.


2013 ◽  
Vol 10 (10) ◽  
pp. 1107-1117 ◽  
Author(s):  
Jennifer Lalanne ◽  
Johanna Rozenberg ◽  
Pauline Grolleau ◽  
Pascale Piolino

Marine Drugs ◽  
2021 ◽  
Vol 19 (4) ◽  
pp. 190
Author(s):  
Nikita Martens ◽  
Melissa Schepers ◽  
Na Zhan ◽  
Frank Leijten ◽  
Gardi Voortman ◽  
...  

We recently found that dietary supplementation with the seaweed Sargassum fusiforme, containing the preferential LXRβ-agonist 24(S)-saringosterol, prevented memory decline and reduced amyloid-β (Aβ) deposition in an Alzheimer’s disease (AD) mouse model without inducing hepatic steatosis. Here, we examined the effects of 24(S)-saringosterol as a food additive on cognition and neuropathology in AD mice. Six-month-old male APPswePS1ΔE9 mice and wildtype C57BL/6J littermates received 24(S)-saringosterol (0.5 mg/25 g body weight/day) (APPswePS1ΔE9 n = 20; C57BL/6J n = 19) or vehicle (APPswePS1ΔE9 n = 17; C57BL/6J n = 19) for 10 weeks. Cognition was assessed using object recognition and object location tasks. Sterols were analyzed by gas chromatography/mass spectrometry, Aβ and inflammatory markers by immunohistochemistry, and gene expression by quantitative real-time PCR. Hepatic lipids were quantified after Oil-Red-O staining. Administration of 24(S)-saringosterol prevented cognitive decline in APPswePS1ΔE9 mice without affecting the Aβ plaque load. Moreover, 24(S)-saringosterol prevented the increase in the inflammatory marker Iba1 in the cortex of APPswePS1ΔE9 mice (p < 0.001). Furthermore, 24(S)-saringosterol did not affect the expression of lipid metabolism-related LXR-response genes in the hippocampus nor the hepatic neutral lipid content. Thus, administration of 24(S)-saringosterol prevented cognitive decline in APPswePS1ΔE9 mice independent of effects on Aβ load and without adverse effects on liver fat content. The anti-inflammatory effects of 24(S)-saringosterol may contribute to the prevention of cognitive decline.


Author(s):  
Stephanie M George ◽  
Jill Reedy ◽  
Elizabeth M Cespedes Feliciano ◽  
Aaron Aragaki ◽  
Bette J Caan ◽  
...  

Abstract Poor diet quality is a leading risk factor for death in the United States (U.S.). We examined the association between Healthy Eating Index-2015 (HEI-2015) scores and death from all-causes, cardiovascular disease (CVD), cancer, Alzheimer’s Disease and Dementia not otherwise specified (NOS) among postmenopausal women in the Women’s Health Initiative Observational Study (1993-2017). This analysis included 59,388 participants who completed a food frequency questionnaire and were free of cancer, CVD and diabetes at enrollment. Stratified Cox proportional hazards models were fit using person-years from enrollment as the underlying time metric. We estimated multivariable adjusted hazard ratios and 95% confidence intervals for risk of death associated with HEI-2015 quintiles, with higher scores reflecting more optimal diet quality. Over a median of 18.2 years, 9,679 total deaths 3,303 cancer deaths, 2,362 CVD deaths, and 488 deaths from Alzheimer’s Disease and Dementia NOS occurred. Compared to those with lower scores, women with higher HEI-2015 scores had an 18% lower risk of all-cause mortality and 21% lower risk of cancer mortality. HEI-2015 scores were not associated with mortality from CVD, Alzheimer’s Disease and dementia NOS. Consuming a diet aligned with 2015-2020 U.S. Dietary Guidelines may have beneficial impacts for preventing death from cancer and overall.


2020 ◽  
Vol 16 (S4) ◽  
Author(s):  
Lloyd Prosser ◽  
Thomas Veale ◽  
Ian B Malone ◽  
William Coath ◽  
Nick C Fox ◽  
...  

2007 ◽  
Vol 19 (4) ◽  
pp. 231-237 ◽  
Author(s):  
Karel J. Bemelmans ◽  
Annemarie Noort ◽  
Roel de Rijk ◽  
Huub A. M. Middelkoop ◽  
Godfried M. J. van Kempen ◽  
...  

Objective:Alzheimer’s disease (AD) is characterized by effortful retrieval memory impairments, loss of hippocampal neurons and elevated plasma cortisol (CORT) concentrations. The latter could induce further memory decline. AD is also characterized by increased central and peripheral noradrenergic activity. Since noradrenergic function is involved in memory formation, this upregulated function could counteract memory decline. The aim of the present study was to test these hypotheses using plasma norepinephrine (NE) as a noradrenergic parameter, and recall of the prerecency part of neutral valence word lists as a measure of effortful retrieval.Methods:Area under the curve (AUC) of morning, midday and afternoon plasma CORT and plasma NE concentrations was related to two measures of recall performance, ie summated recall scores of the prerecency and recency parts of three word lists, and to the stage of the Clinical Dementia Rating (CDR).Results:Partial correlation between each hormone AUC value and prerecency recall performance, controlling for the effect of the other hormone, showed opposite relations between recall and either plasma CORT or NE. Similar stronger correlations were found with the CDR score.Conclusions:Plasma CORT and NE are oppositely related with effortful retrieval and the stage of progression in AD.


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