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Low-Fat Diet With Caloric Restriction Reduces White Matter Microglia Activation During Aging
Zhuoran Yin1,2, Divya D Raj2, Wandert Schaafsma2
1Department of Neurology, Tongji Hospital, Tongji Medical College of HUST, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Rodent models of both aging and obesity are characterized by inflammation in specific brain regions, notably the corpus callosum, fornix, and hypothalamus. Microglia, the resident macrophages of the central nervous system, are important for brain development, neural support, and homeostasis. However, the effects of diet and lifestyle on microglia during aging are only partly understood. Here, we report alterations in microglia phenotype and functions in different brain regions of mice on a high-fat diet (HFD) or low-fat diet (LFD) during aging and in response to voluntary running wheel exercise. We compared the expression levels of genes involved in immune response, phagocytosis, and metabolism in the hypothalamus of 6-month-old HFD and LFD mice. We also compared the immune response of microglia from HFD or LFD mice to peripheral inflammation induced by intraperitoneal injection of lipopolysaccharide (LPS). Finally, we investigated the effect of diet, physical exercise, and caloric restriction (40% reduction compared to ad libitum intake) on microglia in 24-month-old HFD and LFD mice. Changes in diet caused morphological changes in microglia, but did not change the microglia response to LPS-induced systemic inflammation. Expression of phagocytic markers (i.e., Mac-2/Lgals3, Dectin-1/Clec7a, and CD16/CD32) in the white matter microglia of 24-month-old brain was markedly decreased in calorically restricted LFD mice. In conclusion, LFD resulted in reduced activation of microglia, which might be an underlying mechanism for the protective role of caloric restriction during aging-associated decline.
Insights
Caloric restriction and low-fat diets reduce microglia activation in aging brains. This may explain how dietary changes protect against age-related cognitive decline.
Area of Science:
- Neuroscience
- Immunology
- Aging Research
Background:
- Aging and obesity are linked to brain inflammation, particularly in regions like the hypothalamus.
- Microglia, the brain's immune cells, play crucial roles in neural health, but their aging response to diet is unclear.
Purpose of the Study:
- To investigate how high-fat diet (HFD) and low-fat diet (LFD) affect microglia phenotype and function during aging.
- To examine the impact of exercise and caloric restriction on microglia in aged mice.
Main Methods:
- Compared gene expression in hypothalamus microglia from young HFD and LFD mice.
- Assessed microglia response to lipopolysaccharide (LPS)-induced inflammation in HFD and LFD mice.
- Analyzed microglia in aged mice (24 months) on HFD/LFD with exercise and caloric restriction.
Main Results:
- Dietary changes induced morphological alterations in microglia but did not alter their response to LPS.
- Caloric restriction in LFD mice significantly decreased phagocytic marker expression in white matter microglia.
- LFD led to reduced microglia activation, potentially contributing to protective effects of caloric restriction.
Conclusions:
- Low-fat diet and caloric restriction reduce microglia activation in aging brains.
- These dietary interventions may offer neuroprotection against aging-related decline by modulating microglial function.
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