Literature DB >> 29415825

Green tea extract outperforms metformin in lipid profile and glycaemic control in overweight women: A double-blind, placebo-controlled, randomized trial.

Monallisa Alves Ferreira1, Anna Paula Oliveira Gomes1, Ana Paula Guimarães de Moraes1, Maria Luiza Ferreira Stringhini1, João Felipe Mota1, Alexandre Siqueira Guedes Coelho1, Patrícia Borges Botelho2.   

Abstract

BACKGROUND & AIMS: Both green tea and metformin are used as adjuvants to treat and prevent complications associated with obesity; however, studies comparing their action and interaction in non-diabetic overweight women have not been reported. Thus, the current study evaluated the effects of green tea extract and metformin, both individually and in combination, on type 2 diabetes risk factors in non-diabetic overweight women.
METHODS: A total of 120 overweight women were randomly assigned in a double-blind manner to 1 of 4 groups, as follows: control (n = 29; 1 g of cellulose), green tea (n = 32; 1 g of dry green tea extract), metformin (n = 28; 1 g of metformin), and green tea + metformin (n = 31; 1 g of dry green tea extract + 1 g of metformin). Each group took the indicated capsules daily for 12 weeks. Anthropometric measurements, body composition, and fasting blood samples were evaluated.
RESULTS: Although no significant interactions were observed in glycaemic control (p = 0.07), green tea in the absence of metformin reduced fasting glucose (-4.428 ± 2.00; p = 0.031), but when combined the lowering effect was nullified. In contrast, metformin increased HbA1c concentration (0.048 ± 0.189%; p = 0.017) and also reduced body weight (-1.318 ± 0.366 kg; p = 0.034) and LM (lean mass) (-1.249 ± 0.310; p = 0.009). Regarding lipid parameters, green tea significantly reduced total cholesterol and LDL-c.
CONCLUSIONS: Green tea was superior to metformin in improving glycaemic control and lipid profile in non-diabetic overweight women and, therefore, green tea extract is a promising alternative for reducing type 2 diabetes risk in overweight women.
Copyright © 2017 European Society for Clinical Nutrition and Metabolism. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Camellia sinensis; Insulin resistance; Lipoproteins LDL; Metformin; Obesity

Mesh:

Substances:

Year:  2017        PMID: 29415825     DOI: 10.1016/j.clnesp.2017.08.008

Source DB:  PubMed          Journal:  Clin Nutr ESPEN        ISSN: 2405-4577


  10 in total

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