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Quantitative 3D In Silico Modeling q3DISM of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
Gut microbiome alterations in preclinical Alzheimer's disease
Joon Hyung Jung1,2, Gihyeon Kim3, Min Soo Byun1,2
1Department of Psychiatry, Seoul National University College of Medicine, Seoul, Republic of Korea.
Background:
Although some human studies have reported gut microbiome changes in individuals with Alzheimer's disease (AD) dementia or mild cognitive impairment (MCI), gut microbiome alterations in preclinical AD, i.e., cerebral amyloidosis without cognitive impairment, is largely unknown.
Objective:
We aimed to identify gut microbial alterations associated with preclinical AD by comparing cognitively normal (CN) older adults with cerebral Aβ deposition (Aβ+ CN) and those without cerebral Aβ deposition (Aβ- CN).
Methods:
Seventy-eight CN older participants (18 Aβ+ CN and 60 Aβ- CN) were included, and all participants underwent clinical assessment and Pittsburg compound B-positron emission tomography. The V3-V4 region of the 16S rRNA gene of genomic DNA extracted from feces was amplified and sequenced to establish the microbial community.
Results:
Generalized linear model analysis revealed that the genera Megamonas (B = 3.399, q<0.001), Serratia (B = 3.044, q = 0.005), Leptotrichia (B = 5.862, q = 0.024) and Clostridium (family Clostridiaceae) (B = 0.788, q = 0.034) were more abundant in the Aβ+ CN group than the Aβ- CN group. In contrast, genera CF231 (B = -3.237, q< 0.001), Victivallis (B = -3.447, q = 0.004) Enterococcus (B = -2.044, q = 0.042), Mitsuokella (B = -2.119, q = 0.042) and Clostridium (family Erysipelotrichaceae) (B = -2.222, q = 0.043) were decreased in Aβ+ CN compared to Aβ- CN. Notably, the classification model including the differently abundant genera could effectively distinguish Aβ+ CN from Aβ- CN (AUC = 0.823).
Conclusion:
Our findings suggest that specific alterations of gut bacterial taxa are related to preclinical AD, which means these changes may precede cognitive decline. Therefore, examining changes in the microbiome may be helpful in preclinical AD screening.
Insights
Specific gut microbiome alterations are linked to preclinical Alzheimer's disease (AD) in cognitively normal individuals. These gut bacteria changes may help in early AD screening before cognitive decline.
Area of Science:
- Microbiology
- Neuroscience
- Gerontology
Background:
- Gut microbiome alterations are documented in Alzheimer's disease (AD) dementia and mild cognitive impairment (MCI).
- However, changes in the gut microbiome during preclinical AD (cerebral amyloidosis without cognitive impairment) remain largely unexplored.
Purpose of the Study:
- To identify specific gut microbial alterations associated with preclinical AD.
- To compare gut microbiota composition between cognitively normal older adults with and without cerebral amyloid-beta (Aβ) deposition.
Main Methods:
- Inclusion of seventy-eight cognitively normal (CN) older adults (18 Aβ+ CN and 60 Aβ- CN).
- Utilized Pittsburg compound B-positron emission tomography for assessing cerebral amyloidosis.
- Analyzed the V3-V4 region of the 16S rRNA gene from fecal samples to characterize the gut microbial community.
Main Results:
- Genera Megamonas, Serratia, Leptotrichia, and Clostridium (Clostridiaceae) were significantly more abundant in the Aβ+ CN group.
- Genera CF231, Victivallis, Enterococcus, Mitsuokella, and Clostridium (Erysipelotrichaceae) were significantly decreased in the Aβ+ CN group.
- A classification model incorporating these differentially abundant genera achieved high accuracy (AUC = 0.823) in distinguishing between Aβ+ CN and Aβ- CN individuals.
Conclusions:
- Specific gut bacterial taxa alterations are associated with preclinical AD.
- These gut microbiome changes may precede the onset of cognitive decline.
- Gut microbiome analysis could serve as a potential tool for preclinical AD screening.
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