The aim of this study was to access the efficacy of probiotics combined with metformin on improvement of menstrual and metabolic patterns in women with polycystic ovary syndrome (PCOS). In this single-centre, controlled, randomized clinical trial (NCT03336840), 60 non-obese women with PCOS were randomly assigned (1:1:1) to receive probiotics (4 g daily), metformin (1.5 g daily) or their combination for 12 weeks. The primary outcome was the improvement of menstrual patterns. The secondary outcomes included changes in anthropometric, metabolic profiles and hormonal levels. After 12-week treatment, the recovery rate of menstrual cycle was 40% in probiotics group, 55% in metformin group and 80% in combination group ( = 0.035). Meanwhile, the ovulation rate was 30% in probiotics group, 55% in metformin group and 75% in combination group ( = 0.017). Serum anti-Müllerian hormone, testosterone, free androgen index, BMI, fasting blood glucose, HOMA-IR, lipid profiles were decreased after probiotics or metformin treatment in non-obese women with PCOS. In the present trial, probiotics combined with metformin was superior to probiotics or metformin alone to improve menstrual patterns in women with PCOS. Metabolic and hormonal profiles were also improved after probiotics or metformin treatment.
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http://dx.doi.org/10.1080/09513590.2022.2119219 | DOI Listing |
J Gastroenterol Hepatol
January 2025
Department of Proctology, China-Japan Friendship Hospital, Beijing, China.
Objective: This study aimed to assess the efficacy and safety of probiotics combined with trimebutine in the treatment of irritable bowel syndrome (IBS), addressing an important gap in current treatment strategies.
Methods: Randomized controlled trials (RCTs) of trimebutine combined with probiotics for the treatment of IBS were collected from various databases. All retrieved articles were screened and assessed for quality.
Probiotics Antimicrob Proteins
January 2025
Home Economic Department, Faculty of Women for Arts Science and Education, Ain Shams University, Cairo, Egypt.
High-fat diet (HFD) consumption disrupts the gut microbiome, instigating metabolic disturbance, brain pathology, and cognitive decline via the gut-brain axis. Probiotic and prebiotic supplementation have been found to improve gut microbiome health, suggesting they could be effective in managing neurodegenerative disorders. This study explored the potential benefits of the probiotic strain Lactobacillus plantarum 20174 (L.
View Article and Find Full Text PDFDes Monomers Polym
December 2024
Operational Research Centre in Healthcare, Near East University, Nicosia, Cyprus.
This review paper analyzes recent advancements in bio-polymer coatings for probiotic microencapsulation, with a particular emphasis on chitosan and its synergistic combinations with other materials. Probiotic microencapsulation is essential for protecting probiotics from environmental stresses, enhancing their stability, and ensuring effective delivery to the gut. The review begins with an overview of probiotic microencapsulation, highlighting its significance in safeguarding probiotics through processing, storage, and gastrointestinal transit.
View Article and Find Full Text PDFFront Pharmacol
December 2024
School of Agriculture and Biology, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong, China.
Introduction: The aim of this study is to examine the physiological effects of emodin on intestinal microorganisms and the liver in the BALb/c mice.
Method And Results: Following an 8-week administration of emodin at doses of 25, 50, and 100 mg/kg/day,pathological analyses revealed that emodin significantly reduced the colon length, induced colonic crypt inflammation,diminished the colonic mucus layer,and decreased the fluorescence intensity of colonic tight junction proteins ZO-1 and Occludin. Concurrently, 16S rDNA gene sequencing corroborated that emodin altered the diversity and composition of the intestinal microbiota by increasing the to ratio.
Probiotics Antimicrob Proteins
January 2025
Department of Virology, Pasteur Institute of Iran, Tehran, 13169-43551, Iran.
This review delves into the potential of antimicrobial peptides (AMPs) as promising candidates for combating arboviruses, focusing on their mechanisms of antiviral activity, challenges, and future directions. AMPs have shown promise in preventing arbovirus attachment to host cells, inducing interferon production, and targeting multiple viral stages, illustrating their multifaceted impact on arbovirus infections. Structural elucidation of AMP-viral complexes is explored to deepen the understanding of molecular determinants governing viral neutralization, paving the way for structure-guided design.
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