Effect of Probiotic Fungi against Cognitive Impairment in Mice via Regulation of the Fungal Microbiota-Gut-Brain Axis.
Tao YeShushu YuanYu KongHuiqun YangHongming WeiYuhe ZhangHangqi JinQingxia YuJiaming LiuSongfang ChenJing SunPublished in: Journal of agricultural and food chemistry (2022)
The fungal microbiota may be involved in the regulation of cognition and behavior, while the role of probiotic fungi against cognitive impairment is unclear. Here, we explored the idea that probiotic Saccharomyces boulardii could participate in the regulation of microglia-induced neuroinflammation in Alzheimer's disease (AD) model mice. Cognitive deficits, deposits of amyloid-β (Aβ) and phosphorylation of tau, synaptic plasticity, microglia activation, and neuroinflammatory reactions were observed. The expression levels of Toll-like receptors (TLRs) pathway-related proteins were detected. Meanwhile, intestinal barrier integrity and fungal microbiota composition were evaluated. Our results showed fungal microbiota dysbiosis in APP/PS1 mice, which might result in the neuroinflammation of AD. The increased levels of interleukin (IL)-6, IL-1β, and cluster of differentiation 11b (CD11b) were observed in APP/PS1 mice, which were associated with activation of microglia, indicative of a broader recognition of neuroinflammation mediated by fungal microbiota compared to hitherto appreciated. Probiotic S. boulardii treatment improved dysbiosis, alleviated the neuroinflammation as well as synaptic injury, and ultimately improved cognitive impairment. Moreover, S. boulardii therapy could inhibit microglia activation and the TLRs pathway, which were reversed by antifungal treatment. These findings revealed that S. boulardii actively participated in regulating the TLRs pathway to inhibit the neuroinflammation via the gut-brain axis.
Keyphrases
- cognitive impairment
- inflammatory response
- high fat diet induced
- lipopolysaccharide induced
- lps induced
- traumatic brain injury
- cerebral ischemia
- neuropathic pain
- white matter
- poor prognosis
- cell wall
- spinal cord
- resting state
- stem cells
- multiple sclerosis
- bone marrow
- long non coding rna
- candida albicans
- adipose tissue
- wild type
- combination therapy
- single cell
- cognitive decline
- lactic acid
- cell therapy
- replacement therapy
- subarachnoid hemorrhage
- smoking cessation