The menopausal transition is associated with a decline in oestrogen levels, contributing to adverse metabolic changes including increased central adiposity, systemic inflammation, and insulin resistance. These changes are linked to a higher risk of developing type 2 diabetes in postmenopausal women. Recent evidence suggests that the gut microbiota plays an important role in metabolic regulation and glucose homeostasis. Menopause-related hormonal changes may alter the composition and function of the gut microbiome, with downstream effects on insulin sensitivity. Additionally, certain gut bacteria (i.e., Bifidobacterium species) regulate circulating oestrogen via β-glucuronidase activity, highlighting a potential interaction between microbial composition and hormonal balance. Observational findings support associations between menopausal stage, gut microbiota alterations, and insulin homeostasis. Prebiotics are non-digestible compounds that selectively stimulate beneficial gut bacteria and may improve metabolic outcomes. Modulation of the gut microbiota through prebiotic supplementation represents a promising non-pharmacological strategy to improve glucose control. Multiple studies have demonstrated that inulin (a common prebiotic) can improve glucose regulation and aid weight loss in individuals with obesity, prediabetes, or type 2 diabetes. However, to date, no randomised controlled trials have specifically investigated prebiotic supplementation in postmenopausal women with prediabetes using dynamic measures such as the Oral Glucose Tolerance Test (OGTT). The present study aims to investigate the effect of daily consumption of an inulin-containing prebiotic gut health drink (ió everyday) on glucose control in postmenopausal women with prediabetes. The primary objective is to determine whether the intervention improves glycaemic control. Secondary objectives include exploration of changes in metabolic markers and assessment of the role of the gut microbiota in mediating these effects. It is hypothesised that consumption of ió everyday will improve glucose control in prediabetic women who have recently undergone menopause. This hypothesis is supported by evidence demonstrating that inulin and soluble corn fibre can improve glucose regulation and support weight management in individuals with obesity, prediabetes, or type 2 diabetes, as well as findings from a previous study (Ethics Ref ID: LSC 23/383), which demonstrated that one month of ió everyday consumption significantly reduced fasting glucose, with a trend towards weight reduction and no reported adverse effects.
This is a 4-week, randomised, placebo-controlled pilot trial investigating the effects of a gut ió everyday on glucose control in postmenopausal women with prediabetes. Participants will be allocated to either an intervention or placebo group. The intervention consists of ió everyday consumed daily for 4 weeks (one sachet daily in week 1, increasing to two sachets daily in weeks 2-4, taken with meals). The placebo group will receive matched sachets without inulin but equivalent in energy content. This is an investigator-initiated, randomised, placebo-controlled pilot study.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
TRIPLE
Enrollment
30
Participants will consume the equivalent placebo comparator for 4 weeks. Each sachet contains 5 g inulin of maltodextrin. Participants will consume one sachet daily in week 1 to allow acclimatisation, increasing to two sachets daily in weeks 2-4. Sachets are diluted in 500 mL of water and consumed with lunch and dinner.
Participants will consume ió everyday for 4 weeks. Each sachet contains 4.5 g inulin and 6 g total fibre. Participants will consume one sachet daily in week 1 to allow acclimatisation, increasing to two sachets daily in weeks 2-4. Sachets are diluted in 500 mL of water and consumed with lunch and dinner.
Health Sciences Research Centre, Life Sciences Department, University of Roehampton
London, UK, United Kingdom
Fasting Plasma Glucose
Change in fasting plasma glucose measured from venous blood samples.
Time frame: Baseline and 4 weeks (end of intervention).
Anthropometric Measurements
Change in body fat percentage measured using standardised clinical methods.
Time frame: Baseline and 4 weeks (end of intervention).
HbA1c (Glycated Haemoglobin)
Change in HbA1c as an exploratory marker of glycaemic control (interpretation is limited due to the short 4-week intervention duration).
Time frame: Baseline and 4 weeks (end of intervention).
Inflammatory Markers
Change in circulating inflammatory markers associated with metabolic risk
Time frame: Baseline and 4 weeks (end of intervention).
Gut Microbiota Composition
Changes in gut microbiota diversity and composition assessed via stool samples and 16S rRNA sequencing.
Time frame: Baseline and 4 weeks (end of intervention).
Gastrointestinal Symptoms
Changes in self-reported gastrointestinal symptoms (score max 10 and less of 1) including stool frequency and consistency (Bristol Stool Scale), bloating, abdominal pain, and flatulence.
Time frame: Baseline and 4 weeks (end of intervention).
Dietary Intake
Change in habitual dietary intake assessed using 4-day food records at baseline and after 4 weeks.
Time frame: Baseline and 4 weeks (end of intervention).
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