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The Effects of Exercise and Probiotics on Dysmenorrhea and Microbiome

The Effects of Exercise and Probiotics on the Efficacy and Possible Mechanisms of Dysmenorrhea From the Perspective of Microbiome

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05326217
Enrollment
80
Registered
2022-04-13
Start date
2022-01-20
Completion date
2023-01-19
Last updated
2022-04-13

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Dysmenorrhea, Inflammation, Microbial Substitution

Keywords

Lactobacillus, Sport nutrition

Brief summary

The study try to investigate the possible effects of exercise and probiotics supplementation on dysmenorrhea amelioration from the perspective of microbiome.

Detailed description

In current study, there were two stages designed for current study. The definition of dysmenorrhea population depended on the Visual Analogue Scale (VAS) of McGill Pain Questionnaire (more than 5) and the VAS score less than 2 was considered as non-dysmenorrhea population. In the first stage, the 20 subjects were recruit for non-dysmenorrhea group (Control group) and other 60 subjects were randomly allocated into three group with original lifestyle, aerobic, and resistant exercise intervention (Dys-Control, Dys-Aerobic, and Dys-resistant groups). The questionnaires (Premenstrual syndrome, the Menstrual Distress, and McGill Pain), body composition, physical fitness, biochemistries, inflammation, hormones and microbiome analysis (feces and tampon) were evaluated and assessed before and after 10-weeks indicated exercise training. In the second stage, one hundred subjects (20 non-dysmenorrhea and 80 dysmenorrhea populations) will be recruited and the dysmenorrhea will be randomly allocated into Dys-Control, Dys-probiotics, Dys-exercise and Dys-probiotics and exercise groups. The questionnaires (Premenstrual syndrome, the Menstrual Distress, and McGill Pain), body composition, physical fitness, biochemistries, inflammation, hormones and microbiome analysis (feces and tampon) were evaluated and assessed before and after 10-weeks indicated interventions (probiotics and exercise).

Interventions

OTHERAerobic exercise

The aerobic exercise :In this study, the exercise intensity is set based on the subject's maximum heart rate, and the target heart rate is adjusted according to the literature to reach 60-90% of the maximum heart rate. A gradual increase of intermittent exercise will be designed for current exercise prescription. In terms of exercise frequency and time, there will be two times interventions per week for at least 60 minutes per time (including warm-up and cool down exercises).

The resistant exercise : muscular endurance (15-20RM) and muscular hypertrophy (8-12RM) are applied to main exercise intensity. The intensity is gradually adjusted according to the state of each subject, and the intervention is performed twice a week (50 minutes per time).The target muscles of resistance training include quadriceps femoris, biceps femoris, calf muscles, core muscles (including pelvic floor muscles), back muscles, pectoralis major, biceps/triceps and other muscle groups.

Sponsors

National Taipei University of Nursing and Health Sciences
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Masking description

First stage: Open Label Second stage: Single Blind for probiotics treatment

Eligibility

Sex/Gender
FEMALE
Age
18 Years to 40 Years
Healthy volunteers
Yes

Inclusion criteria

* Primary dysmenorrhea * Visual Analog Score of McGill pain questionnaire (0-2 for non-dysmenorrhea; \>5 for dysmenorrhea)

Exclusion criteria

* Pregnancy, menstrual disorders, obesity (BMI\>30), smoking, and alcohol or drug addiction * Cardiovascular disease, hypertension, diabetes, asthma, chronic pulmonary obstruction, mental illness

Design outcomes

Primary

MeasureTime frameDescription
The effects of different types of exercise on premenstrual syndrome questionnaire with dysmenorrhea10 weeksThe premenstrual syndrome questionnaire is applied for evaluation of premenstrual syndromes before mense. A higher score indicates severer indicated syndromes. Changes of the premenstrual syndrome questionnaire measure will be assessed at the 0 week and 10 weeks.
The effects of different types of exercise on menstrual distress questionnaire with dysmenorrhea10 weeksThe menstrual distress questionnaire is applied for evaluation of distress syndromes during mense. A higher score indicates severer indicated syndromes. Changes of the menstrual distress questionnaire measure will be assessed at the 0 week and 10 weeks.
The effects of different types of exercise on McGill pain questionnaire with dysmenorrhea10 weeksThe McGill pain questionnaire is applied for evaluation of types and degrees of pain during mense. A higher score indicates severer indicated syndromes. Changes of theMcGill pain questionnaire measure will be assessed at the 0 week and 10 weeks.
The effects of different types of exercise on cardiovascular capacity10 weeksThe cardiovascular capacity is evaluated by 3-minute step test. The higher index of cardiovascular capacity means the higher cardiovascular fitness. Changes of cardiovascular capacity will be assessed at the 0 week, and 10 weeks.
The effects of different types of exercise on muscular strength of upper limbs10 weeksThe muscular strength of upper limbs is evaluated by grip-strength test. The higher strength of test means the higher strength fitness in upper limbs. Changes of muscular strength of upper limbs will be assessed at the 0 week, and 10 weeks.
The effects of different types of exercise on power10 weeksThe power is evaluated by standing long jump. The higher distance of test means the higher power fitness. Changes of power will be assessed at the 0 week, and 10 weeks.
The effects of different types of exercise on core strength10 weeksThe core strength endurance is evaluated by 1-minute bent-knee sit-up test. The higher repetitions mean the higher core strength endurance fitness. Changes of core strength endurance will be assessed at the 0 week, and 10 weeks.
The effects of different types of exercise on body composition10 weeksThe body composition was simultaneously measured by Inbody 270 (Bioelectrical Impedance Analysis) for outcome measures including body-fat percentage, and muscular percentage in the upper and lower limbs. The higher muscular percentage and lower body-fat percentage are associated with better fitness. Changes of body-fat percentage, and muscular percentage in the upper and lower limbs measures will be assessed at the 0 week, and 10 weeks.
The microbiome succession of the dysmenorrhea with different types of exercise intervention10 weeksDetermination of the gut microbiota composition from the feces and tampon samples by 16S metagenomic, data analysis and building of a mathematical model to test the potential modulation of the gut microbiota architecture for primary dysmenorrhea.Changes of microbiota succession in the feces and tampons will be assessed at the 0 week, and 10 weeks.
The effects of different types of exercise on cytokines in dysmenorrhea10 weeksThe cytokines was simultaneously measured by enzyme-linked immunosorbent assay for outcome measures including TNF-α, IL-1β, IL-6, and IL-10. The higher TNF-α, IL-1β, and IL-6 cytokines mean the higher inflammation and higher IL-10 mean the higher immunosuppression. Changes of cytokines measures will be assessed at the 0 week, and 10 weeks.
The effects of different types of exercise on biochemistries in dysmenorrhea10 weeksThe biochemical variables were simultaneously measured by automated clinical chemistry analyzer for outcome measures including VEGF, Estrogen, Progesterone, adrenaline, cortisol, serotonin, PEG2, PGF2α, Prostacyclin, and Thromboxane. The expressive levels of indicated indexes mean different physiological modulations. Changes of biochemical measures will be assessed at the 0 week, and 10 weeks.

Countries

Taiwan

Contacts

Primary ContactWen Ching Huang, PhD
wenching@ntunhs.edu.tw+88628227101

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026