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CompletedNCT06426966GS VS BBR AUpdated May 23, 2024

Gymnema Sylvestre vs Berberine in Obesity Gene Expression of Adipokines

An interventional study of Berberine and Gymnema sylvestre in Diabetes Mellitus and Obesity, sponsored by National Polytechnic Institute, Mexico. Completed. Open to participants aged 18 Years to 60 Years, including healthy volunteers. Per ClinicalTrials.gov, last updated 2024-05-23.

Sponsored by National Polytechnic Institute, Mexico · Not applicable, Interventional, and Treatment

From the registry’s dates

  • Registered 8 years 3 months after the study started (first participant enrolled Feb 2016, registered May 2024).
Phase
Not applicable
Study type
Interventional
Enrollment
50
Allocation
Non-randomized
Ages
18 Years to 60 Years
Sex
All
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Study summary

Obesity is a disease that affects a large part of the world's population and is a risk factor for the development of metabolic, cardiovascular, oncological, and neurodegenerative diseases. Treatments with Gymnema Sylvestre (GS) and Berberine (BBR) have been studied in metabolic diseases such as obesity and type 2 diabetes mellitus (DM2), and have gained importance in recent years, however, questions remain regarding their comparative effect on biochemical parameters, body composition and gene expression of adipokines. Methodology. We carried out a comparative study in 50 adult Mexican patients with a diagnosis of Obesity. Two groups of patients were formed: A. Treated with GS and B. Treated with BBR. Baseline and final measurements were determined 3 months after treatment. Biochemical and body composition parameters were evaluated and the gene expression of Resistin (Res), Omentin (Om), Visfatin (Vis) and Apelin (Ap) was determined, as well as safety parameters.

Read the detailed description

Trial oversight A comparative, descriptive, observational, longitudinal, and prospective analysis study was carried out in the Comprehensive Obesity and Overweight Care Program at the Higher School of Medicine. This study was carried out in full accordance with good clinical practice guidelines and the Declaration of Helsinki. The study was registered with the Research and Ethics Committee of the Higher School of Medicine (ESM.CE-01/7-12-2015). All patients signed the informed consent, and the information was protected through a confidentiality letter.

Patients We included 50 Mexican patients of both sexes, of the over 18 years of age, with a body mass index (BMI) greater than 30 KG(kilogram)/M2 (obesity grade I, II and III), without a previous diagnosis of diabetes mellitus, but with at least two risk factors for the disease (history of parents or siblings, over 40 years of age, sedentary lifestyle habits, controlled arterial hypertension, fasting blood glucose \< 126 mg/dL or glycated hemoglobin \< 6.5%). Key exclusion criteria included (i) pregnant patients, (ii) diabetics, and (iii) patients with allergic reaction to any components of the supplements. The first study group, group A (25 patients) was treated with GS at a dose of two 200 mg capsules before breakfast, while in the second group, group B (25 patients) were treated with BBR at dose of one 500 mg tablet three times a day before each meal. In both groups, the treatment lasted 3 months.

Trial procedures and outcomes Anthropometric, physiological, and biochemical parameters were measured in two sessions, before and after treatment. The anthropometric measurements were body weight, height, waist, and hip circumference, in addition to body analysis using the Inbody 770. As a physiological measure, only blood pressure was considered using WelchAllyn brand anomanometers with cuff for obese patients. Regarding biochemical parameters, fasting glucose, lipid profile (total cholesterol, triglycerides, HDL, LDL), basal insulin and HbA1c were measured. Adherence to treatment and the presence of adverse effects was recorded using a log that indicated the time at which the tablets were ingested and whether they had any adverse effects that day.

Additionally, whole blood samples were taken from 50 patients, 25 had received treatment with GS (group A) and 25 received treatment with BBR (group B). The extraction of tRNA(transfer ribonucleic acid) was carried out using the TRIzol®Reagent technique, which consists of a mixture of guanidine isocyanate and phenol-chloroform. Once the total RNA was isolated, it was suspended in RNase-free water to avoid possible degradation of the sample before proceeding with reverse transcription. The extraction and integrity of the tRNA was verified by means of agarose gel electrophoresis. The final purity of the samples was calculated based on the absorbance obtained with a measurement at 260-280. cDNA(complementary DNA) amplification was performed using the "First Strand cDNA transcription" synthesis kit for rtPCR from Roche. A real-time polymerase chain reaction (RT-PCR) procedure was performed to determine the relative expression of the mRNA(messenger ribonucleic acid) of the genes studied, using probes from the human transcriptome library (Human Universal Probe Library), a LightCycler nano thermocycler and a TaqMan type reaction mixture, all from the Roche Diagnostics brand (Roche Diagnostics GmbH(Gesellschaft mit beschränkter Haftung), Mannheim, Germany). The oligo sequences of the primers (sense and antisense) were designed with ProbeFinder software (Apelin, NM_017413.4, F, 5´ gaa agt ggg gga tgg cta ag 3´, R, 5´ ccc acc cac tac cct ctt ct 3´, Omentin, NM_017625.2, F, 5´ tga ggg tca ccg gat gta ac 3´, R, 5´ gga ctg gcc tct gga aag ta 3´, Resistin, NM_001193374.1, F, 5´ cca ccg aga ggg atg aaa g 3´, R, 5´ ttc ttc cat gga gca cag g 3´ and Visfatin, NM_005746.2, F, 5´ aag gga tgg aac tac att ctt gag 3´, R, 5´ ctg tgt ttt cca ccg tga ag 3'. The reaction mix was prepared according to the manufacturer's protocol. Each sample was analyzed in duplicate, and the data obtained were analyzed with the LightCycler nano software.

Statistical analysis The distribution of the quantitative data was performed by Shapiro Wilk. The comparison of frequencies was carried out with X2, while the comparison of basal means between groups was performed with Student's t-test. Final means were compared with Student's t-test when no statistical differences were found in basal comparison, while in the parameters with significant differences in the basal measurement, a covariate adjustment (repeated measures ANOVA) and the Bonferroni test were applied to compare the final means between groups. Self-controlled analysis was performed with paired t test. Analyses were performed with GraphPad Prism software, version 8.0.0 for Windows (GraphPad Software, San Diego, CA, USA), and SPSS software, version 19 (IBM Corp. Released 2015. IBM SPSS Statistics for Windows, Version 19.0. Armonk, NY(New York), USA: IBM Corp). A value of p\<0.05 was considered as statistical significance.

02

Conditions studied

  • Diabetes Mellitus
  • Obesity

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Keywords

  • Diabetes
  • Gymnema sylvestre
  • Berberine
  • adipokines
  • obesity
03

In context

Obesity

6,296 studies on the registry are indexed under Obesity; 1,692 are open to participants now.

This study's enrollment of 50 is below the median of 78 across 4,878 interventional studies indexed under Obesity.

Browse Obesity studies →

Lead sponsor

National Polytechnic Institute, Mexico is the lead sponsor of 10 studies on the registry; 1 is open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 60 Years
Sexes eligible
All
Accepts healthy volunteers
Yes

Inclusion criteria

  • Mexican patients of both sexes, of the over 18 years of age, with a body mass index (BMI) greater than 30 KG/M2 (obesity grade I, II and III), without a previous diagnosis of diabetes mellitus, but with at least two risk factors for the disease (history of parents or siblings, over 40 years of age, sedentary lifestyle habits, controlled arterial hypertension, fasting blood glucose \< 126 mg/dL or glycated hemoglobin \< 6.5%)

Exclusion criteria

Exclusion Criteria:

  • pregnant patients,
  • diabetics,
  • patients with allergic reaction to any components of the supplements
05

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Non-randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
50 participants (actual)

Study arms

  • Experimental
    Gymnema sylvestre

    Patients who present Obesity administrated with Gymnema sylvestre. At a dose of two 200 mg capsules before breakfast

    Dietary Supplement: Gymnema sylvestre

  • Experimental
    Berberine

    Patients who present Obesity administrated with Berberine 500 mg tablet three times a day before each meal

    Dietary Supplement: Berberine

Interventions

  • Dietary supplementBerberine

    Berberine is an alkaloid derived from plants native to China called Rhizoma coptidis, Cortex phellodendrine and Hydrastis canadensis. These plants are used in the treatment of infectious diarrhea, inflammation, DM2, non-alcoholic fatty liver disease, dyslipidemias, cardiovascular diseases, and obesity. They have been shown to improve insulin sensitivity and stimulate glucose uptake through the activation of AMP-activated protein kinase (AMPK)

  • Dietary supplementGymnema sylvestre

    Gymnema sylvestre also known as "meshashringi", is a plant from central and southern India. The leaf extract has been used as a laxative, diuretic, and cough suppressant; Likewise, it has antimicrobial, antihypercholesterolemic, and hepatoprotective activities. It is associated with antioxidant properties . Its adjuvant effect has been reported in the therapy of type 2 diabetes, revealing how its active compounds can influence glucose regulation and improve insulin sensitivity.

06

What researchers measure

Primary outcomes

  1. Body weight

    Body weight

    Time frame: 3 months

  2. height

    height

    Time frame: 3 months

  3. waist

    waist long

    Time frame: 3 months

  4. hip circumference

    hip circumference

    Time frame: 3 months

Secondary outcomes

  1. blood pressure

    blood pressure

    Time frame: 3 months

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Study locations

No study locations are listed for this record.

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References and documents

Publications

  • Zhang X, Ha S, Lau HC, Yu J. Excess body weight: Novel insights into its roles in obesity comorbidities. Semin Cancer Biol. 2023 Jul;92:16-27. doi: 10.1016/j.semcancer.2023.03.008. Epub 2023 Mar 24. PubMed 36965839 ↗
  • Zwick RK, Guerrero-Juarez CF, Horsley V, Plikus MV. Anatomical, Physiological, and Functional Diversity of Adipose Tissue. Cell Metab. 2018 Jan 9;27(1):68-83. doi: 10.1016/j.cmet.2017.12.002. PubMed 29320711 ↗
  • Recinella L, Orlando G, Ferrante C, Chiavaroli A, Brunetti L, Leone S. Adipokines: New Potential Therapeutic Target for Obesity and Metabolic, Rheumatic, and Cardiovascular Diseases. Front Physiol. 2020 Oct 30;11:578966. doi: 10.3389/fphys.2020.578966. eCollection 2020. PubMed 33192583 ↗
  • Steppan CM, Bailey ST, Bhat S, Brown EJ, Banerjee RR, Wright CM, Patel HR, Ahima RS, Lazar MA. The hormone resistin links obesity to diabetes. Nature. 2001 Jan 18;409(6818):307-12. doi: 10.1038/35053000. PubMed 11201732 ↗
  • Revollo JR, Korner A, Mills KF, Satoh A, Wang T, Garten A, Dasgupta B, Sasaki Y, Wolberger C, Townsend RR, Milbrandt J, Kiess W, Imai S. Nampt/PBEF/Visfatin regulates insulin secretion in beta cells as a systemic NAD biosynthetic enzyme. Cell Metab. 2007 Nov;6(5):363-75. doi: 10.1016/j.cmet.2007.09.003. PubMed 17983582 ↗
  • Dakroub A, A Nasser S, Younis N, Bhagani H, Al-Dhaheri Y, Pintus G, Eid AA, El-Yazbi AF, Eid AH. Visfatin: A Possible Role in Cardiovasculo-Metabolic Disorders. Cells. 2020 Nov 9;9(11):2444. doi: 10.3390/cells9112444. PubMed 33182523 ↗
  • Ugur K, Erman F, Turkoglu S, Aydin Y, Aksoy A, Lale A, Karagoz ZK, Ugur I, Akkoc RF, Yalniz M. Asprosin, visfatin and subfatin as new biomarkers of obesity and metabolic syndrome. Eur Rev Med Pharmacol Sci. 2022 Mar;26(6):2124-2133. doi: 10.26355/eurrev_202203_28360. PubMed 35363362 ↗
  • Huang J, Kang S, Park SJ, Im DS. Apelin protects against liver X receptor-mediated steatosis through AMPK and PPARalpha in human and mouse hepatocytes. Cell Signal. 2017 Nov;39:84-94. doi: 10.1016/j.cellsig.2017.08.003. Epub 2017 Aug 15. PubMed 28821440 ↗
  • Li C, Cheng H, Adhikari BK, Wang S, Yang N, Liu W, Sun J, Wang Y. The Role of Apelin-APJ System in Diabetes and Obesity. Front Endocrinol (Lausanne). 2022 Mar 9;13:820002. doi: 10.3389/fendo.2022.820002. eCollection 2022. PubMed 35355561 ↗
  • Sperling M, Grzelak T, Pelczynska M, Bogdanski P, Formanowicz D, Czyzewska K. Association of Serum Omentin-1 Concentration with the Content of Adipose Tissue and Glucose Tolerance in Subjects with Central Obesity. Biomedicines. 2023 Jan 24;11(2):331. doi: 10.3390/biomedicines11020331. PubMed 36830868 ↗

Individual participant data

Plan to share: No — Publication of the article in a JCR journal

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on May 23, 2024, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
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Registry details

Key details

Study ID
NCT06426966
Lead sponsor
National Polytechnic Institute, Mexico
Collaborators
Instituto Nacional de Pediatria
Responsible party
Cindy Rodríguez Bandala (PhD, National Polytechnic Institute, Mexico) — Principal investigator
First posted
May 23, 2024
Start date
Feb 1, 2016
Primary completion
Feb 1, 2017
Completion
Feb 1, 2017
Last update
May 23, 2024

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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This study is completed, as verified in May 2024. You cannot join it, but the record below documents what was studied.

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