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Do Iron Supplements Impact the Gut Microbiome of Women of Reproductive Age?

Primary Purpose

Iron-deficiency, Microbial Colonization, Anemia

Status
Completed
Phase
Not Applicable
Locations
Australia
Study Type
Interventional
Intervention
Ferrous Fumarate
Placebo
Sponsored by
South Australian Health and Medical Research Institute
About
Eligibility
Locations
Arms
Outcomes
Full info

About this trial

This is an interventional other trial for Iron-deficiency focused on measuring iron supplements, microbiome, women

Eligibility Criteria

18 Years - 45 Years (Adult)FemaleAccepts Healthy Volunteers

Inclusion Criteria:

  • Able to give informed consent

Exclusion Criteria:

  • Pregnant or breastfeeding.
  • Planning on becoming pregnant
  • Diagnosed with iron deficiency and/or anaemia in the previous three months
  • Taken antibiotics in the past three months
  • Taken iron containing supplements in the past three months

Sites / Locations

  • SAHMRI

Arms of the Study

Arm 1

Arm 2

Arm Type

Experimental

Active Comparator

Arm Label

Iron Supplement

Placebo

Arm Description

65.7 mg of iron as ferrous fumarate

0 mg of iron

Outcomes

Primary Outcome Measures

Weighted UniFrac dissimilarity score
Measure of microbiota beta-diversity

Secondary Outcome Measures

Bray-Curtis dissimilarity score
Measure of microbiota beta-diversity
Shannon Wiener Diversity
Microbiota alpha-diversity score with adjustment for baseline levels
Faith's phylogenetic diversity
Microbiota alpha-diversity score with adjustment for baseline levels
Taxonomic richness
Microbiota alpha-diversity score with adjustment for baseline levels
Relative abundance of core bacterial taxa
Relative abundance of taxa present in >40% of baseline samples, with adjustment for baseline levels

Full Information

First Posted
August 13, 2021
Last Updated
April 11, 2023
Sponsor
South Australian Health and Medical Research Institute
Collaborators
Flinders University
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1. Study Identification

Unique Protocol Identification Number
NCT05033483
Brief Title
Do Iron Supplements Impact the Gut Microbiome of Women of Reproductive Age?
Official Title
Do Iron Supplements Impact the Gut Microbiome of Women of Reproductive Age?
Study Type
Interventional

2. Study Status

Record Verification Date
November 2021
Overall Recruitment Status
Completed
Study Start Date
August 31, 2021 (Actual)
Primary Completion Date
November 6, 2021 (Actual)
Study Completion Date
January 1, 2022 (Actual)

3. Sponsor/Collaborators

Responsible Party, by Official Title
Sponsor
Name of the Sponsor
South Australian Health and Medical Research Institute
Collaborators
Flinders University

4. Oversight

Studies a U.S. FDA-regulated Drug Product
No
Studies a U.S. FDA-regulated Device Product
No
Data Monitoring Committee
No

5. Study Description

Brief Summary
In this randomised controlled trial the investigators will determine whether taking iron supplements compared to placebo for 21 days alters the bacteria (microbiome) in the large intestine of non-pregnant female participants.
Detailed Description
BACKGROUND: Many women take iron-containing supplements during pregnancy. Indeed, the World Health Organization recommends that all pregnant women in low-income countries take an iron supplement containing 60 mg/day of elemental iron to reduce iron deficiency and iron-deficiency anaemia. However, oral iron has poor bioavailability, less than 10% absorbed with the remainder passing into the large intestine unbound, potentially providing a competitive advantage to iron-dependent opportunistic pathogens in the large intestine. In a large randomized control trial in children, iron supplementation was shown to promote the growth of pathogenic species (E. coli, S. aureus, and L. monocytogenes) and inhibited the growth of commensal species (Lactobacillus and Bifidobacterium). These pathogens are associated with enteric infections, while the commensals act on the host's immune system to prevent colonization and invasion by pathogens. It is NOT known if iron supplementation during pregnancy impacts the maternal and infant microbiome and, by extension, how this affects the neonatal risk of infection and immune dysregulation. Vertical transmission of the maternal microbiome to the newborn is a major determinant of infant health. If maternal iron supplementation affects the infant's health, strategies would be required to mitigate this risk. The investigators require preliminary data to show how oral iron supplementation alters the intestinal microbiome in women. The Investigators will recruit non-pregnant female participants as there is no risk of vertical transmission to an infant in non-pregnant women. The investigators will conduct the study in Australia because there is not a natural abundance of pathogens that could potentially cause harm to the women. Nevertheless, the investigators would expect a shift in the microbiome from non-iron to iron, requiring bacterial species to return to baseline after women stop taking the iron. HYPOTHESIS: Daily iron supplementation versus placebo for 21 days will alter the stool microbiome composition compared to placebo in non-pregnant female participants of reproductive age. METHODS: 80 female participants (18-45 y) will be randomized to receive capsules containing iron (65.7 mg of elemental iron as ferrous fumarate) or placebo to take daily for 21 days. Stool samples will be collected at baseline, 21 days, and 42 days (washout).

6. Conditions and Keywords

Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Iron-deficiency, Microbial Colonization, Anemia
Keywords
iron supplements, microbiome, women

7. Study Design

Primary Purpose
Other
Study Phase
Not Applicable
Interventional Study Model
Parallel Assignment
Model Description
A randomized, controlled, researcher and participant blinded trial with two parallel groups
Masking
ParticipantInvestigatorOutcomes Assessor
Masking Description
Supplements were packaged by LifeCare Compounding Pharmacy and labelled by staff not involved in the trial, with 2 colours per treatment group. The randomisation schedule was prepared by an independent statistician. The schedule allocates women to one of the four colours in the ratio 1:1:1:1 using randomly permuted blocks.
Allocation
Randomized
Enrollment
82 (Actual)

8. Arms, Groups, and Interventions

Arm Title
Iron Supplement
Arm Type
Experimental
Arm Description
65.7 mg of iron as ferrous fumarate
Arm Title
Placebo
Arm Type
Active Comparator
Arm Description
0 mg of iron
Intervention Type
Dietary Supplement
Intervention Name(s)
Ferrous Fumarate
Other Intervention Name(s)
Iron Fumarate, ferro-tab
Intervention Description
Gelatin capsule containing 200 mg ferrous fumarate and microcrystalline cellulose
Intervention Type
Dietary Supplement
Intervention Name(s)
Placebo
Other Intervention Name(s)
Control
Intervention Description
Gelatin capsule containing microcrystalline cellulose
Primary Outcome Measure Information:
Title
Weighted UniFrac dissimilarity score
Description
Measure of microbiota beta-diversity
Time Frame
21 days
Secondary Outcome Measure Information:
Title
Bray-Curtis dissimilarity score
Description
Measure of microbiota beta-diversity
Time Frame
21 days
Title
Shannon Wiener Diversity
Description
Microbiota alpha-diversity score with adjustment for baseline levels
Time Frame
21 days
Title
Faith's phylogenetic diversity
Description
Microbiota alpha-diversity score with adjustment for baseline levels
Time Frame
21 days
Title
Taxonomic richness
Description
Microbiota alpha-diversity score with adjustment for baseline levels
Time Frame
21 days
Title
Relative abundance of core bacterial taxa
Description
Relative abundance of taxa present in >40% of baseline samples, with adjustment for baseline levels
Time Frame
21 days
Other Pre-specified Outcome Measures:
Title
Weighted UniFrac dissimilarity score
Description
Measure of microbiota beta-diversity
Time Frame
42 days (washout)
Title
Shannon-Wiener diversity
Description
Microbiota alpha-diversity score with adjustment for baseline levels
Time Frame
42 days (washout)
Title
Bray-Curtis dissimilarity score
Description
Measure of microbiota beta-diversity
Time Frame
42 days (washout)
Title
Faith's phylogenetic diversity
Description
Microbiota alpha-diversity score with adjustment for baseline levels
Time Frame
42 days (washout)
Title
Taxonomic richness
Description
Microbiota alpha-diversity score with adjustment for baseline levels
Time Frame
42 days (washout)
Title
Relative abundance of core bacterial taxa
Description
Relative abundance of taxa present in >40% of baseline samples, with adjustment for baseline levels
Time Frame
42 days (washout)

10. Eligibility

Sex
Female
Minimum Age & Unit of Time
18 Years
Maximum Age & Unit of Time
45 Years
Accepts Healthy Volunteers
Accepts Healthy Volunteers
Eligibility Criteria
Inclusion Criteria: Able to give informed consent Exclusion Criteria: Pregnant or breastfeeding. Planning on becoming pregnant Diagnosed with iron deficiency and/or anaemia in the previous three months Taken antibiotics in the past three months Taken iron containing supplements in the past three months
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Steven Taylor, PhD
Organizational Affiliation
South Australian Health and Medical Research Institute
Official's Role
Principal Investigator
Facility Information:
Facility Name
SAHMRI
City
Adelaide
State/Province
South Australia
ZIP/Postal Code
5000
Country
Australia

12. IPD Sharing Statement

Plan to Share IPD
Yes
IPD Sharing Plan Description
Outlined below
IPD Sharing Time Frame
Following final data analysis and primary publication
IPD Sharing Access Criteria
Access to study data may be granted, upon review and approval of the Institutional Review Board, investigators, in accordance with South Australian Health and Medical Research Institute Women and Kids 'Guidelines and Agreement for the use of materials in an ancillary study associated with original clinical trials or cohort studies.

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Do Iron Supplements Impact the Gut Microbiome of Women of Reproductive Age?

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