Fundamental neurochemistry review: Old brain stories ‐ Influence of age and sex on the neurodegeneration‐associated lipid changes

Author:

Cuenca‐Bermejo Lorena12ORCID,Prinetti Alessandro2ORCID,Kublickiene Karolina3ORCID,Raparelli Valeria45,Kautzky‐Willer Alexandra3,Norris Colleen M.67,Pilote Louise8,Herrero María Trinidad1,

Affiliation:

1. Clinical & Experimental Neuroscience (NiCE) Biomedical Research Institute of Murcia (IMIB‐ Pascual Parrilla), Institute for Ageing Research (IUIE‐ EUniWel), University of Murcia Murcia Spain

2. Department of Medical Biotechnology and Translational Medicine University of Milan Milan Italy

3. Division of Renal Medicine, Department of Clinical Science, Intervention and Technology Karolinska Institutet Stockholm Sweden

4. Department of Translational Medicine University of Ferrara Ferrara Italy

5. University Center for Studies on Gender Medicine, University of Ferrara Ferrara Italy

6. Faculty of Nursing University of Alberta Edmonton Alberta Canada

7. Cardiovascular and Stroke Strategic Clinical Network, Alberta Health Services Edmonton Alberta Canada

8. Division of Clinical Epidemiology Research Institute of McGill University Health Centre, McGill University Montreal Quebec Canada

Abstract

AbstractBrain aging is a naturally occurring process resulting in the decline of cognitive functions and increased vulnerability to develop age‐associated disorders. Fluctuation in lipid species is crucial for normal brain development and function. However, impaired lipid metabolism and changes in lipid composition in the brain have been increasingly recognized to play a crucial role in physiological aging, as well as in several neurodegenerative diseases. In the last decades, the role of sexual dimorphism in the vulnerability to develop age‐related neurodegeneration has increased. However, further studies are warranted for detailed assessment of how age, sex, and additional non‐biological factors may influence the lipid changes in brains. The aim of this work is to address the presence of sex differences in the brain lipid changes that occur along aging, and in the two most common age‐related neurodegenerative disorders (Alzheimer's and Parkinson's diseases). We included the studies that assessed lipid‐related alterations in the brain of both humans and experimental models. Additionally, we explored the influence of sex on lipid‐lowering therapies. We conclude that sex exerts a notable effect on lipid modifications occurring with age and neurodegeneration, and in lipid‐reducing interventions. Therefore, the application of sex as an experimental variable is strongly encouraged for future research in the field of precision medicine approach.image

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Biochemistry

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