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Clinical Trials/NCT03847714
NCT03847714CompletedNot Applicable

Probiotics in Dementia

Medical University of Graz1 site in 1 country17 target enrollmentStarted: June 15, 2019Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Sponsor
Enrollment
17
Locations
1
Primary Endpoint
Butyrate producing bacteria

Study Overview

Brief Summary

Dementia is associated with changes in gut microbiome composition, gut barrier dysfunction, intestinal inflammation and systemic inflammation. Probiotics are a possibility to modulate the gut-brain axis. In this study the effect of probiotics on the gut microbiome and, gut barrier function, inflammation and cognitive dysfunction will be studied.

Detailed Description

Dementia is a disease that presents with deterioration in memory, thinking, behaviour and the ability to perform everyday activities. Worldwide 47.5 million people are affected and incidence of dementia is increasing. Dementia leads to disability and dependency among older people worldwide and thereby has a huge physical, psychological, social and economic impact on caregivers, families and society. Alzheimer's disease (AD) is the most common form of dementia accounting for 60-70% of the cases; other forms include Lewy body dementia, frontotemporal dementia, vascular dementia and Parkinson's disease with dementia. In AD, pathologic protein aggregates of amyloid beta and hyperphosphorylated tangles of tau-protein which deposit as neurofibrillary tangles are typical features. This leads to neuroinflammation, mainly mediated by the innate immune system. The most important cells in this process are microglia cells, which represent the resident macrophages of the brain. Although microglia is able to remove extracellular amyloid beta, in later stages of the disease cells remain in a dystrophic state and cannot exert their beneficial functions. Microglia maturation and function is critically dependent on short-chain fatty acids produced by the gut microbiome and therefore highlights the microbiome as a potential diagnostic and therapeutic target in dementia.

The role of the commensal microbial population of the human body - especially the intestinal microbiome - in various diseases is emerging due to the development of advanced analysis techniques. Recently the concept of the gut brain-axis has been established. Several pathways including the autonomic nervous system, the enteric nervous system, the neuroendocrine system and the immune system allow a communication between gut and brain but may also be involved in disease development.

During ageing, the gut microbiome composition undergoes changes. A decrease in diversity, a loss of beneficial taxa and an increase of facultative pathogens has been described. Diet and the place of residence play an important role in the shaping of the microbiome. Aging is also associated with inflammation - often termed as "inflammaging" associated with an increase in gut permeability, mucosal inflammation and bacterial translocation.

Since the main risk factor for developing dementia, especially AD, is aging, it is very likely that the gut-brain axis is critically involved in dementia development.

Animal studies so far suggest that AD is associated with changes in the gut microbiome composition with a decrease in beneficial, anti-inflammatory genera. Furthermore, genetic alterations in amyloid genes can influence microbiome composition in mice, pointing towards a vicious cycle in AD development.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel
Primary Purpose
Treatment
Masking
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

Masking Description

similar looking and tasting placebo

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Age >18 years
  • Dementia of Alzheimer type and mixed type (diagnosis by a board-certified neurologist/psychiatrist and according to ICD10)
  • Mini Mental State Examination 21-26
  • Stable treatment with anti-dementia drugs including phytotherapeutics (>3 months) or no intention to start anti-dementia drugs
  • Informed consent

Exclusion Criteria

  • Other forms of dementia
  • Inflammatory bowel diseases
  • Liver cirrhosis
  • Antibiotic treatment within the last 4 weeks
  • Febrile illness within the last 4 weeks
  • Acute hospital admission for dementia-unrelated reasons within the last 4 weeks
  • Dysphagia
  • Any other condition or circumstance, which, in the opinion of the investigator, would affect the patient's ability to participate in the protocol

Arms & Interventions

Probiotic

Active Comparator

Bifidobacterium bifidum W23, B. lactis W51, B. lactis W52, Lactobacillus acidophilus W22, L. casei W56, L. paracasei W20, L. plantarum W62, L. salivarius W24, Lactococcus lactis W19, 7.5 × 109 Colony Forming Units/g twice daily dissolved in water

Intervention: Omni-Biotic Stress Repair (Dietary Supplement)

Placebo

Placebo Comparator

3g of a similar looking and tasting powder, twice daily

Intervention: placebo (Dietary Supplement)

Outcomes

Primary Outcomes

Butyrate producing bacteria

Time Frame: 6 months

abundance of butyrate producing bacteria

Secondary Outcomes

  • soluble CD 14 concentration in serum(12 months)
  • lipopolysaccharide concentration in serum(12 months)
  • diaminooxidase concentration in serum(12 months)
  • zonulin concentration in stool(12 months)
  • Alzheimer's Disease Assessment Scale-Cognitive Subscale (ADAS cog)(12 months)
  • Butyrate producing bacteria(12 months)
  • calprotectin concentration in stool(12 months)
  • clinician's interview-based impression of change with caregiver input (CIBIC+)(12 months)
  • lipopolysaccharide binding protein concentration in serum(12 months)
  • Barthel index(12 months)
  • bacterial DNA concentration in serum(12 months)
  • Mini mental state examination(12 months)
  • peptidoglycan concentration in serum(12 months)

Investigators

Sponsor
Medical University of Graz
Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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