proof-of-concept study to adequately design a larger trial to investigate the effect of supplementation of a probiotic (SLAB51) on AD biomarker.
BACKGROUND: A growing body of evidence suggests an effect of gut bacteria and their metabolites on brain health, including the development of neurodegenerative conditions and Alzheimer's disease (AD). Probiotic supplementation is commonplace in medicine but targeting the gut microbiome to prevent AD is poorly understood and little is known on the dynamic effects of probiotics on physiology. AIM: This is a proof-of-concept study to adequately design a larger trial to investigate the effect of supplementation of a probiotic (SLAB51) on AD biomarker. The study will use a high frequency sampling to closely monitor the physiological dynamics as the result of low and high dose consumption of the probiotic. METHODS: Study subjects will be three patients with prodromal AD between 60 and 80 years old and carrying the apolipoprotein E (APOE) e4 allele. Participants will sequentially receive no supplement (run-in), low and high doses of probiotics for five consecutive days with a washout period in-between. Blood and stools will be collected every day or every second days. The main readout will be the established plasma markers of AD, and more exploratory analysis will be performed on putative mediators of the gut-brain axis. EXPECTED OUTCOME: Curves of dynamic change of the readouts will be built for each subject, and a model of the response will be estimated. The results of this project will help design a larger trial to identify the most promising analytes showing a dynamic response to probiotic consumption and better understand the link to the pathology.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
3
One dose of probiotic consists of a bag of probiotic powder to dissolve in a glass of water according to the manufacturer instructions. Each bag contains 100 billion bacteria of the following strains: streptococcus thermophilus DSM 32245, 2 Bifidobacteria lactis DSM 32246 and DSM 32247, Lactobacillus acidophilus DSM 32241, Lactobacillus helveticus DSM 32242, Lactobacillus paracasei DSM 32243, Lactobacillus plantarum DSM 32244 and Lactobacillus brevis DSM 27961.
Geneva University hospitals - Memory clinic
Geneva, Switzerland
Concentration of plasma AD biomarker, Amyloid
The dynamic changes of plasma amyloid concentration, namely Ab40 and Ab42 in pg/ml, will be reported in the blood shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study
Concentration of plasma AD biomarker, Tau
The dynamic changes of plasma Tau concentration more specifically p-Tau-181, p-Tau-231 and Tau in pg/ml, will be reported in the blood shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study
Concentration of plasma AD biomarker, Nfl
The dynamic changes of plasma concentration neurofilament light (NfL in pg/ml), will be reported in the blood shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study
Plasma concentration of GFAP
The dynamic changes in concentration of plasma glial fibrillary acidic protein (GFAP), as a marker of neuroinflammation, will be reported shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study
Plasma concentration of a panel of cytokines
The dynamic changes in concentraion of a large panel of cytokines measured in plasma, as markers of systemic inflammation, will be reported shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
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Time frame: within a year of last participant finalising the study
Plasma concentration of VCAM and NCAM
The dynamic changes in concentration of plasma VCAM and NCAM, as markers of endothelial dysfunction, will be reported shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study
Profiling of gut bacterial population isolated from stools
The dynamic changes in alpha and beta diversity, as well as the functionality of gut bacterial population isolated from stools will be reported shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study
Plasma and stool concentration of bacterial derived metabolites
The dynamic changes of plasma and stool concentration of bacterial derived metabolites or small molecules (eg: short chain fatty acids (SCFAs) or lipopolysaccharide (LPS) will be reported shortly before, during and shortly after the consumption of probiotic (low or high doses) as compared to the baseline without treatment.
Time frame: within a year of last participant finalising the study