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The effect of polyphenols on DNA methylation-assessed biological age attenuation: the DIRECT PLUS randomized controlled trial.
Yaskolka Meir, A, Keller, M, Hoffmann, A, Rinott, E, Tsaban, G, Kaplan, A, Zelicha, H, Hagemann, T, Ceglarek, U, Isermann, B, et al
BMC medicine. 2023;21(1):364
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Biological age differs from chronological age and is determined by assessing our DNA, this is known as mAge. A healthy lifestyle and weight loss have been shown to be of benefit to mAge. The Mediterranean (MED) diet includes ingredients such as vitamins and naturally occurring chemicals, known as polyphenols, which may alter biological age. This randomised control trial of 256 aimed to determine the effects of a MED diet richer in green vegetables and lower in meat (Green-MED) compared to the MED diet and recommendations for healthy eating. The results showed that after 18 months of healthy eating and weight loss, none of the diets was able to lower the biological age, however the Green-MED diet and in particular the intake of green tea and the vegetable Mankai were associated with slower biological ageing compared to the other two diets. The polyphenol tyrosol was also associated with slower biological ageing. It was concluded that the diets were unable to reverse biological ageing, but a GreenMed diet rich in polyphenols, may be able to slow it. This study could be used by healthcare professionals to understand that as higher biological age is associated with poorer health outcomes, a diet rich in polyphenols may have additional benefits beyond just weight loss.
Abstract
BACKGROUND Epigenetic age is an estimator of biological age based on DNA methylation; its discrepancy from chronologic age warrants further investigation. We recently reported that greater polyphenol intake benefitted ectopic fats, brain function, and gut microbiota profile, corresponding with elevated urine polyphenols. The effect of polyphenol-rich dietary interventions on biological aging is yet to be determined. METHODS We calculated different biological aging epigenetic clocks of different generations (Horvath2013, Hannum2013, Li2018, Horvath skin and blood2018, PhenoAge2018, PCGrimAge2022), their corresponding age and intrinsic age accelerations, and DunedinPACE, all based on DNA methylation (Illumina EPIC array; pre-specified secondary outcome) for 256 participants with abdominal obesity or dyslipidemia, before and after the 18-month DIRECT PLUS randomized controlled trial. Three interventions were assigned: healthy dietary guidelines, a Mediterranean (MED) diet, and a polyphenol-rich, low-red/processed meat Green-MED diet. Both MED groups consumed 28 g walnuts/day (+ 440 mg/day polyphenols). The Green-MED group consumed green tea (3-4 cups/day) and Mankai (Wolffia globosa strain) 500-ml green shake (+ 800 mg/day polyphenols). Adherence to the Green-MED diet was assessed by questionnaire and urine polyphenols metabolomics (high-performance liquid chromatography quadrupole time of flight). RESULTS Baseline chronological age (51.3 ± 10.6 years) was significantly correlated with all methylation age (mAge) clocks with correlations ranging from 0.83 to 0.95; p < 2.2e - 16 for all. While all interventions did not differ in terms of changes between mAge clocks, greater Green-Med diet adherence was associated with a lower 18-month relative change (i.e., greater mAge attenuation) in Li and Hannum mAge (beta = - 0.41, p = 0.004 and beta = - 0.38, p = 0.03, respectively; multivariate models). Greater Li mAge attenuation (multivariate models adjusted for age, sex, baseline mAge, and weight loss) was mostly affected by higher intake of Mankai (beta = - 1.8; p = 0.061) and green tea (beta = - 1.57; p = 0.0016) and corresponded with elevated urine polyphenols: hydroxytyrosol, tyrosol, and urolithin C (p < 0.05 for all) and urolithin A (p = 0.08), highly common in green plants. Overall, participants undergoing either MED-style diet had ~ 8.9 months favorable difference between the observed and expected Li mAge at the end of the intervention (p = 0.02). CONCLUSIONS This study showed that MED and green-MED diets with increased polyphenols intake, such as green tea and Mankai, are inversely associated with biological aging. To the best of our knowledge, this is the first clinical trial to indicate a potential link between polyphenol intake, urine polyphenols, and biological aging. TRIAL REGISTRATION ClinicalTrials.gov, NCT03020186.
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Wild blueberry (poly)phenols can improve vascular function and cognitive performance in healthy older individuals: a double-blind randomized controlled trial.
Wood, E, Hein, S, Mesnage, R, Fernandes, F, Abhayaratne, N, Xu, Y, Zhang, Z, Bell, L, Williams, C, Rodriguez-Mateos, A
The American journal of clinical nutrition. 2023;117(6):1306-1319
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The risk of developing both cardiovascular and neurodegenerative diseases increases with aging. Growing evidence from epidemiological and human intervention trials indicates that (poly)phenols may have cardioprotective properties as well as the ability to improve cognitive function. The aim of this study was to investigate the effects of daily wild blueberry (WBB) (poly)phenol consumption on vascular function and cognitive performance in healthy older individuals. This study was a randomised, double-blinded, placebo-controlled parallel design study. A total of 61 healthy older individuals were recruited and randomly assigned to one of the two arms; placebo intervention or blueberry intervention group. Results showed that long-term consumption of a dietary achievable amount of WBB enhanced vascular and cognitive function in older adults. Authors conclude that gut microbiota and vascular blood flow may play important roles in mediating the cognitive benefits shown by the consumption of (poly)phenol-rich foods.
Abstract
BACKGROUND Evidence suggests that the intake of blueberry (poly)phenols is associated with improvements in vascular function and cognitive performance. Whether these cognitive effects are linked to increases in cerebral and vascular blood flow or changes in the gut microbiota is currently unknown. METHODS A double-blind, parallel randomized controlled trial was conducted in 61 healthy older individuals aged 65-80 y. Participants received either 26 g of freeze-dried wild blueberry (WBB) powder (302 mg anthocyanins) or a matched placebo (0 mg anthocyanins). Endothelial function measured by flow-mediated dilation (FMD), cognitive function, arterial stiffness, blood pressure (BP), cerebral blood flow (CBF), gut microbiome, and blood parameters were measured at baseline and 12 wk following daily consumption. Plasma and urinary (poly)phenol metabolites were analyzed using microelution solid-phase extraction coupled with liquid chromatography-mass spectrometry. RESULTS A significant increase in FMD and reduction in 24 h ambulatory systolic BP were found in the WBB group compared with the placebo group (0.86%; 95% CI: 0.56, 1.17, P < 0.001; -3.59 mmHg; 95% CI: -6.95, -0.23, P = 0.037; respectively). Enhanced immediate recall on the auditory verbal learning task, alongside better accuracy on a task-switch task was also found following WBB treatment compared with placebo (P < 0.05). Total 24 h urinary (poly)phenol excretion increased significantly in the WBB group compared with placebo. No changes in the CBF or gut microbiota composition were found. CONCLUSIONS Daily intake of WBB powder, equivalent to 178 g fresh weight, improves vascular and cognitive function and decreases 24 h ambulatory systolic BP in healthy older individuals. This suggests that WBB (poly)phenols may reduce future CVD risk in an older population and may improve episodic memory processes and executive functioning in older adults at risk for cognitive decline. Clinical Trial Registration number in clinicaltrials.gov: NCT04084457.
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The effects of Aronia berry (poly)phenol supplementation on arterial function and the gut microbiome in middle aged men and women: Results from a randomized controlled trial.
Le Sayec, M, Xu, Y, Laiola, M, Gallego, FA, Katsikioti, D, Durbidge, C, Kivisild, U, Armes, S, Lecomte, M, Fança-Berthon, P, et al
Clinical nutrition (Edinburgh, Scotland). 2022;41(11):2549-2561
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Over the last decades, Aronia melanocarpa, or black chokeberry, has gained increased attention for its high content of (poly)phenols, and potential protection against chronic diseases such as cardiovascular disease and diabetes. The aim of this study was to investigate the effects of 12-week aronia berry (poly)phenol consumption on cardiometabolic health and gut microbiome composition in prehypertensive middle-aged adults. This study was a 2-arm, double-blind, parallel randomised controlled trial. Participants (n = 102; 47 men and 55 women) were assigned randomly to Aronia or control groups. Results showed that there were no significant effects in blood pressure (primary outcome), endothelial function or blood lipids. However, there was a significant improvement in 24-hour ambulatory arterial indices and significant changes in gut microbiome richness, functions and composition between Aronia and control groups. Authors conclude that future studies should be conducted to investigate whether aronia supplementation may be effective in other at-risk populations such as hypertensives or people with cardiovascular disease risk.
Abstract
BACKGROUND AND AIMS Berry (poly)phenol consumption has been associated with cardioprotective benefits, however little is known on the role the gut microbiome may play on such health benefits. Our objective was to investigate the effects of aronia berry (poly)phenol consumption on cardiometabolic health and gut microbiome richness and composition in prehypertensive middle-aged men and women. METHODS A total of 102 prehypertensive participants were included in a parallel 12-week randomized double-blind placebo-controlled trial. Volunteers were randomly allocated to daily consume an encapsulated (poly)phenol-rich aronia berry extract (Aronia, n = 51) or a matched maltodextrin placebo (Control, n = 51). Blood pressure (BP) and arterial function (office and 24 h), endothelial function (measured as flow-mediated dilation), serum biochemistry (including blood lipids), plasma and urine (poly)phenol metabolites as well as gut microbiome composition through shotgun metagenomic sequencing were monitored over the study period. Relationships between vascular outcomes, (poly)phenol metabolites and gut microbiome were investigated using an integrated multi-levels approach. RESULTS A significant improvement in arterial indices measured as augmentation index (AIx) and pulse wave velocity (PWV) was found in the Aronia compared to Control group (awake Δ PWV = -0.24 m/s; 95% CI: -0.79, -0.01 m/s, P < 0.05; 24 h peripheral Δ AIx = -6.8; -11.2, -2.3, %, P = 0.003; 24 h central Δ AIx = -3.3; -5.5, -1.0, %, P = 0.006). No changes in BP, endothelial function or blood lipids were found following the intervention. Consumption of aronia (poly)phenols led to a significant increase in gut microbiome gene richness and in the abundance of butyrate-producing species such as Lawsonibacter asaccharolyticus and Intestinimonas butyriciproducens species, compared to Control group. Results from an approach including metabolomic, metagenomic and clinical outcomes highlighted associations between aronia-derived phenolic metabolites, arterial stiffness, and gut microbiome. CONCLUSIONS Aronia berry (poly)phenol consumption improved arterial function in prehypertensive middle-aged individuals, possibly via modulation of gut microbiome richness and composition based on the associations observed between these parameters. CLINICAL TRIAL REGISTRY The National Institutes of Health (NIH)-randomized trial records held on the NIH ClinicalTrials.gov website (NCT03434574). Aronia Berry Consumption on Blood Pressure.
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Consumption of flavonoids and risk of hormone-related cancers: a systematic review and meta-analysis of observational studies.
Liu, F, Peng, Y, Qiao, Y, Huang, Y, Song, F, Zhang, M, Song, F
Nutrition journal. 2022;21(1):27
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Hormone-related cancers (HRCs) are greatly influenced by hormone levels and generally respond to hormone regulation, which plays an indispensable role in tumour growth. Encouragingly, diets rich in vegetables, fruits and tea are found to reduce the cancer risk, having the potential to exert chemo-preventive effects with the presence of anticarcinogenic phytochemicals. The aim of this study was to elucidate the association between flavonoids intake and HRCs risk. This study is a meta-analysis of fifty-one studies. It consisted of 22 prospective cohort studies, 1 nested case–control study, 18 population-based case–control studies and 10 hospital-based case–control studies. Results show that higher consumption of total flavonoids was only associated with an increased risk of men-specific cancers, mainly prostate cancer. Furthermore, the subclasses, flavanols, flavones, and isoflavones, and the three main individual compounds of isoflavones (daidzein, genistein and glycitein) may have protective effects on women-specific cancers, whereas flavones and flavanones have been found to cause potentially dangerous effects in thyroid cancer. Additionally, there was no evidence in support of any role for anthocyanidins in HRCs. Authors conclude that there is a small amount of evidence that total flavonoids, flavanols, flavones, flavanones, flavan-3-ols and isoflavones may be associated with a lower or higher risk of certain HRCs, which may provide guidance for dietary guidelines to a certain extent in the future.
Expert Review
Conflicts of interest:
None
Take Home Message:
- Dietary flavonoids are widely available in plant-based foods such as vegetables, citrus fruits, green tea and berries
- Menopausal status may be an important consideration for flavonoid intake when considering breast cancer risk
- Differences in results for Asians and non-Asians need to be considered for the use of flavonoids in women-specific hormonal cancers and prostate cancer in men
- Caution should be exercised when considering flavones and flavanones and thyroid cancer risk until further research is available
Evidence Category:
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X
A: Meta-analyses, position-stands, randomized-controlled trials (RCTs)
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B: Systematic reviews including RCTs of limited number
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C: Non-randomized trials, observational studies, narrative reviews
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D: Case-reports, evidence-based clinical findings
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E: Opinion piece, other
Summary Review:
Background
Hormone-related cancers (HRCs) are the most frequently diagnosed cancers globally , accounting for more than a quarter of new cancer cases worldwide in 2018. They include breast, ovarian, endometrial, prostate, testicular and thyroid cancer which share a similar carcinogenic mechanism. Diets rich in vegetables, fruit, legumes and tea may reduce cancer risk due to anticarcinogenic phytochemicals, such as flavonoids. Flavonoids are claimed to have many different physiological and pathological functions in the cancer process, including tumour cell proliferation, inflammation, angiogenesis, invasion and metastasis.. This study aimed to summarise the relationships between consumption of flavonoids with the risk of HRC.
Methods:
The meta-analysis was carried out following PRISMA guidelines and registered on PROSPERO. A literature search in PubMed and Embase was conducted using the keywords flavonoids, flavanols and isoflavones and breast, ovarian, endometrial, prostate, testicular and thyroid cancer. 51 studies published between 1999 and 2022 consisted of 22 prospective cohort, 18 population-based and 10 hospital-based case-control studies. On the Newcastle-Ottawa Scale assessment all studies were of medium or high methodological quality.
Results:
Results were analysed using Stata 15.1 software and ORs with 95% CIs used to measure the association between flavonoid intake and HRCs risk. Statistical I2 evaluated heterogeneity among the studies.
Funnel plots were inspected for publication bias and calculated by Begg’s/Egger’s regression tests. Sensitivity analyses were performed to explore the source of heterogeneity. Subgroup analysis was performed on study design and region, as well as menopausal status.
Higher consumption of flavonoids was associated with a decreased risk of women-specific cancers but a significant elevated risk of prostate cancer as seen below.
Women specific cancers:
For flavonoid sub-classes, higher consumption of flavanols (OR=0.85; 95% CI, 0.76–0.94; I2=75.5%; p<0.001), flavones (OR=0.85; 95% CI, 0.77–0.95; I2=76.3%; p<0.001) and isoflavones (OR=0.87; 95% CI, 0.82–0.92; I2=73.8%; p<0.001) was associated with a decreased risk of women-specific cancers (breast, ovarian and endometrial), especially among the case–control studies. Similar results were seen in the main compounds of isoflavones: daidzen, genistein and glycitein. There were differences in the association between isoflavones in Asian and non-Asian regions.
Men-specific cancers:
The higher consumption of total flavonoids (OR=1.11; 95% CI, 1.02–1.21; I2 = 0%; p = 0.484) was associated with an increased risk of prostate cancer and this was only found in non-Asian populations.
Conclusion:
Despite limitations of the meta-analysis, such as the use of observational studies and small sample sizes of the included studies, this systematic review may provide some preliminary dietary evidence for the use of flavonoids in HRCs.
Clinical practice applications:
- The promotion of a plant-based diet, rich in vegetables, fruits, green tea and legumes may have protective effects on women-specific cancers due to the rich presence of flavanols, flavones and isoflavones, as well as the compounds genistein, glycitein and daidzein.
- Results show no associations between total flavonoids intake and women-specific cancer however, the sub-groups of flavanols, flavones and isoflavones were associated with a decreased risk in women-specific cancers. Similar results were seen in the individual compounds of isoflavones: genistein, glycitein and daidzein. These results may guide decision-making when recommending the inclusion of these compounds for protective benefits in women-specific cancers.
- The positive association between total flavonoids and prostate cancer risk was only seen in non-Asians, and between higher consumption of flavones and flavanones and thyroid cancer risk albeit in limited studies (n=3) may provide important guidelines when considering which foods to include from a plant-based diet.
Considerations for future research:
- Further meta-analysis of prospective studies with larger sample sizes
- The use of a validated and reliable questionnaire for measuring flavonoid intake
- Intervention studies evaluating flavonoid subclasses
- Comparisons between Asian and non-Asian populations
- Consideration of menopausal status as an effect modifier
Abstract
BACKGROUND Flavonoids seem to have hormone-like and anti-hormone properties so that the consumption of flavonoids may have potential effects on hormone-related cancers (HRCs), but the findings have been inconsistent so far. This meta-analysis was aimed to explore the association between flavonoids intake and HRCs risk among observational studies. METHODS Qualified articles, published on PubMed, EMBASE, and China National Knowledge Infrastructure (CNKI) from January 1999 to March 2022 and focused on relationships between flavonoids (total, subclass of and individual flavonoids) and HRCs (breast, ovarian, endometrial, thyroid, prostate and testicular cancer), were retrieved for pooled analysis. Random effects models were performed to calculate the pooled odds ratios (ORs) and corresponding 95% confidence intervals (CIs). Funnel plots and Begg's/Egger's test were used to evaluate the publication bias. Subgroup analyses and sensitivity analyses were conducted to explore the origins of heterogeneity. RESULTS All included studies were rated as medium or high quality. Higher consumption of flavonols (OR = 0.85, 95% CI: 0.76-0.94), flavones (OR = 0.85, 95% CI: 0.77-0.95) and isoflavones (OR = 0.87, 95% CI: 0.82-0.92) was associated with a decreased risk of women-specific cancers (breast, ovarian and endometrial cancer), while the higher intake of total flavonoids was linked to a significantly elevated risk of prostate cancer (OR = 1.11, 95% CI: 1.02-1.21). A little evidence implied that thyroid cancer risk was augmented with the higher intake of flavones (OR = 1.24, 95% CI: 1.03-1.50) and flavanones (OR = 1.31, 95% CI: 1.09-1.57). CONCLUSIONS The present study suggests evidence that intake of total flavonoids, flavonols, flavones, flavanones, flavan-3-ols and isoflavones would be associated with a lower or higher risk of HRCs, which perhaps provides guidance for diet guidelines to a certain extent. TRIAL REGISTRATION This protocol has been registered on PROSPERO with registration number CRD42020200720 .
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Mixed Spices at Culinary Doses Have Prebiotic Effects in Healthy Adults: A Pilot Study.
Lu, QY, Rasmussen, AM, Yang, J, Lee, RP, Huang, J, Shao, P, Carpenter, CL, Gilbuena, I, Thames, G, Henning, SM, et al
Nutrients. 2019;11(6)
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An increasing body of evidence suggests that the gut microbiota has a profound impact on human health. While the microbiome of a healthy individual is relatively stable, gut microbial dynamics can be influenced by host lifestyle and dietary choices. The aim of this study was to investigate the effects of mixed spices (cinnamon, oregano, ginger, black pepper, and cayenne pepper) at culinary doses consumed over 2 weeks in a standardized 5g capsule on the production of gut microbiota and short-chain fatty acids The study is a randomised, placebo-controlled, double-blind pilot study carried out with a total of 31 healthy women and men aged between 18 and 65. The subjects were randomly allocated to one of the two intervention groups. Results indicate that daily intake of 5g of mixed spices for 2 weeks in healthy subjects resulted in a significant reduction in the relative abundance of the phylum Firmicutes (bacteria), and a trend of increasing in phylum Bacteroidetes (bacteria) as compared with a matched control group. Authors conclude that a mixture of spices at culinary doses affects the composition of gut microbiota.
Abstract
Spices were used as food preservatives prior to the advent of refrigeration, suggesting the possibility of effects on microbiota. Previous studies have shown prebiotic activities in animals and in vitro, but there has not been a demonstration of prebiotic or postbiotic effects at culinary doses in humans. In this randomized placebo-controlled study, we determined in twenty-nine healthy adults the effects on the gut microbiota of the consumption daily of capsules containing 5 g of mixed spices at culinary doses by comparison to a matched control group consuming a maltodextrin placebo capsule. The 16S ribosomal RNA sequencing data were used for microbial characterization. Spice consumption resulted in a significant reduction in Firmicutes abundance (p < 0.033) and a trend of enrichment in Bacteroidetes (p < 0.097) compared to placebo group. Twenty-six operational taxonomic units (OTUs) were different between the spice and placebo groups after intervention. Furthermore, there was a significant negative correlation between fecal short-chain fatty acid propionate concentration and Firmicutes abundance in spice intervention group (p < 0.04). The production of individual fecal short-chain fatty acid was not significantly changed by spice consumption in this study. Mixed spices consumption significantly modified gut microbiota, suggesting a prebiotic effect of spice consumption at culinary doses.
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Effects of green tea supplementation on elements, total antioxidants, lipids, and glucose values in the serum of obese patients.
Suliburska, J, Bogdanski, P, Szulinska, M, Stepien, M, Pupek-Musialik, D, Jablecka, A
Biological trace element research. 2012;149(3):315-22
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Obesity is associated with low-grade inflammation and oxidative stress, both of which play roles in the development of many obesity-related diseases and metabolic imbalances. Previous studies show that green tea (GT) supplementation may have favourable effects on body weight and body composition, and there’s growing evidence for its use in the prevention of obesity and coexisting diseases. The aim of this randomised double-blind trial was to assess the effects of supplementation with GT extract on body mass, glucose levels, mineral concentrations, lipid profile and antioxidant status in obese patients. The study included 46 obese participants, who received either 379 mg GT extract or placebo daily for three months. The study found that 3-month supplementation with GT extract significantly decreased body mass index, waist circumference, total cholesterol, LDL cholesterol, triglycerides, glucose and iron levels, while the levels of HDL cholesterol, total anti-oxidants, magnesium and zinc were increased. The authors conclude that GT extract may be beneficial in improving antioxidant and mineral status, body mass index, lipid profile and glucose levels in obese people.
Abstract
The consumption of green tea has been associated with cardiovascular and metabolic diseases. There have been some studies on the influence of green tea on the mineral status of obese subjects, but they have not yielded conclusive results. The aim of the present study is to examine the effects of green tea extract on the mineral, body mass, lipid profile, glucose, and antioxidant status of obese patients. A randomized, double-blind, placebo-controlled study was conducted. Forty-six obese patients were randomly assigned to receive either 379 mg of green tea extract, or a placebo, daily for 3 months. At baseline, and after 3 months of treatment, the anthropometric parameters, blood pressure, and total antioxidant status were assessed, as were the levels of plasma lipids, glucose, calcium, magnesium, iron, zinc, and copper. We found that 3 months of green tea extract supplementation resulted in decreases in body mass index, waist circumference, and levels of total cholesterol, low-density cholesterol, and triglyceride. Increases in total antioxidant level and in zinc concentration in serum were also observed. Glucose and iron levels were lower in the green tea extract group than in the control, although HDL-cholesterol and magnesium were higher in the green tea extract group than in the placebo group. At baseline, a positive correlation was found between calcium and body mass index, as was a negative correlation between copper and triglycerides. After 3 months, a positive correlation between iron and body mass index and between magnesium and HDL-cholesterol, as well as a negative correlation between magnesium and glucose, were observed. The present findings demonstrate that green tea influences the body's mineral status. Moreover, the results of this study confirm the beneficial effects of green tea extract supplementation on body mass index, lipid profile, and total antioxidant status in patients with obesity.