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Completed

NCT Number: NCT06039267

Brain Health & the Microbiome

The GW SMHS supports research in complementary and integrative approaches to treatment of sickness and disease and for health promotion. Sometimes, research may involve asking questions of patients, students, and health providers. In this study, individuals are being asked to participate in this study as either 1) a healthy volunteer, 2) a person with Mild Cognitive Impairment (MCI), or 3) a person with early Alzheimer's disease (eAD). We are trying to learn more about if the gut microbiome (the microbes that live in our digestive tract) of individuals with eAD, MCI, and healthy controls are altered following lifestyle changes. This research will provide the pilot data to begin to understand if these changes in the gut microbiome are beneficial to health and/or may slow or halt the progression of MCI or early Alzheimer's.

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Key information

Age range

50 year–90 year

Sex eligibility

All sexes

Study type

Observational

Primary location

George Washington University School of Medicine & Health Sciences

Washington D.C., District of Columbia, 20037, United States

About this study

AD is, in a word, devastating. The massive psychological and physical trauma experienced by people with dementia and their loved ones is catastrophic and incapable of overestimation. It is incumbent upon researchers and clinicians to not only better understand the etiology of this disease, but also to translate this knowledge into actionable evidence to facilitate clinical care and prevention. The MGBA serves as a major etiological factor, in both cause and potentiation of the disease process, that possesses great potential for intervention. Interventions have the greatest opportunity for success earlier in the disease pathogenesis; therefore, MCI is an ideal target for intervention to prevent progression to AD. To effectively apply knowledge of this bidirectional relationship, a clearer picture of dysbiosis relevant to cognitive decline must be identified. The inclusion of HC, MCI, and early AD allows for the detection of a dose-response relationship, which is one of Bradford Hill's criteria for causality. 1 This means we will begin to investigate causality (using one of Hill's eight criteria) in addition to association in this proof-of-concept study.

Most previous research has been done at too high a phylogenetic level to be truly informative in terms of interventions-in other words the data is too low resolution. The microbiome field was launched at the phylum/genus level for many reasons including the need to start somewhere in such a complex system. To put this in perspective, comparing a genus, such as Lactobacillus, would be akin to comparing a compilation or average of all species of the genus Homo: H. sapiens, H. habilis, H. errectus, H. heigelbergensis, H. neanderthalensis, and H. naledi. The diversity in Homo sapiens alone is staggering. How could we possibly think this is specific or high resolution enough to be clinically meaningful? Well, the research has shown that it is not. This coupled with advancements in technology (qPCR to 16S to shotgun metagenomics) has changed the landscape of the microbiome field. However, such advanced testing and understanding has yet to make it to the clinic and has largely not been applied to MCI or AD populations to date.

The sum of the evidence suggests that restoration of the gut microbiome may serve to prevent, slow, or even reverse MCI/AD. Whether this entails the use of diet, supplements, medications, etc. or some combination thereof remains to be discovered. Before an intervention can be designed, a firm grasp of the specific alterations to the gut microbiome must be identified using higher resolution than simply genus alone-we must understand species level at least, ideally strain level in many cases. Once we understand the species-level alterations, therapeutic interventions may then be implemented to determine the effect size of said interventions.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Age 50-90
  • Early Alzheimer's Disease (eAD)
  • Mild Cognitive Impairment (MCI)
  • Healthy Control (no eAD or MCI)

Exclusion criteria

  • Criteria or pathology that may affect the outcomes of the study or the risk/benefit ratio as determined by the study team

Treatment and study plan

Gut Microbiome Testing

Other

Stool microbiome testing using shotgun metagenomic sequencing

Primary outcomes

  1. Gut Microbiome Composition

    Time frame: 3- and 6-months

    To compare the gut microbiomes of patients with early Alzheimer's disease, mild cognitive impairment, and healthy controls using diversity as well as genus, species, and strain level differences in composition (shotgun metagenomics).

  2. Gut Microbiome Function

    Time frame: 3- and 6-months

    To compare the gut microbiomes of patients with early Alzheimer's disease, mild cognitive impairment, and healthy controls using diversity as well as genus, species, and strain level differences in function (shotgun metagenomics).

  3. Document microbiome changes following lifestyle changes in subjects with early Alzheimer's disease, mild cognitive impairment, and healthy controls for future study design.

    Time frame: 3- and 6-months

    Observationally collect gut microbiome and lifestyle changes to inform the design of a trial to study lifestyle interventions.

Other outcomes

  1. Gut Microbiome Diversity (Index)

    Time frame: 6 months

    Gut microbiome diversity (index) will exhibit a dose-response relationship among subjects with early Alzheimer's disease, mild cognitive impairment, and healthy controls.

  2. Gut Microbiome Composition (Shotgun Metagenomics)

    Time frame: 6 months

    Gut microbiome composition (shotgun metagenomics) will exhibit a dose-response relationship among subjects with early Alzheimer's disease, mild cognitive impairment, and healthy controls.

  3. Gut Microbiome Function (Shotgun Metagenomics)

    Time frame: 6 months

    Gut microbiome function (shotgun metagenomics) will exhibit a dose-response relationship among subjects with early Alzheimer's disease, mild cognitive impairment, and healthy controls.

  4. Diet as Effect-Modifier (DietID)

    Time frame: 6 months

    Implementing dietary changes (DietID) like increasing microbiota accessible carbohydrates (i.e. prebiotic dietary fiber and resistant starches) will modify the relationship between MCI status and gut microbiome composition and function, dependent upon magnitude and regularity of implementation.

  5. Physical Activity as Effect-Modifier (Self-report)

    Time frame: 6 months

    Implementing physical activity changes (self-report) will modify the relationship between MCI status and gut microbiome composition and function, dependent upon magnitude and regularity of implementation.

  6. Probiotic as Effect-Modifier (Self-report)

    Time frame: 6 months

    Taking a personalized probiotic strain (self-report) will modify the relationship between MCI status and gut microbiome composition and function, dependent upon effectiveness of the probiotic and adherence to the probiotic regimen.

  7. Bowel Movement Position as Effect-Modifier (Self-report)

    Time frame: 6 months

    Improving bowel movement position (i.e. from 90° to 35°, self-report) will modify the relationship between MCI status and gut microbiome composition and function, dependent upon regularity of implementation.

Sponsors and collaborators

Lead sponsor

George Washington University

Other

Registry information

Official study title

Brain Health & the Microbiome: A Proof-of-Concept Study in Patients With Mild Cognitive Impairment

Acronym: bMicrobiome

Important dates

Study start
2023
Primary completion
2025
Study completion
2025
First posted
Sep 15, 2023
Registry last updated
Jan 29, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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