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"Hamed Mohammadi"

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"Hamed Mohammadi"

Review Article

[English]
Dose-Dependent Impacts of Omega-3 Fatty Acids Supplementation on Anthropometric Variables in Patients With Cancer: Results From a Systematic Review and Meta-Analysis of Randomized Clinical Trials
Seyed Mojtaba Ghoreishy, Sheida Zeraattalab-Motlagh, Reza Amiri Khosroshahi, Amirhossein Hemmati, Morvarid Noormohammadi, Hamed Mohammadi
Clin Nutr Res 2024;13(3):186-200.   Published online July 29, 2024
DOI: https://doi.org/10.7762/cnr.2024.13.3.186

Meta-analyses have been conducted with conflicting results on this topic. Due to missing several eligible studies in previous meta-analysis by Lam et al., we conducted an extensive systematic review and dose-response meta-analysis of randomized controlled trials in this regard. A comprehensive search was conducted across various databases, including MEDLINE/PubMed, ISI Web of Knowledge, Scopus, and Google Scholar, until November 2023. Based on the analysis of 33 studies comprising 2,047 individuals, it was found that there was a significant increase in body weight for each 1 g/day increase in omega-3 lipids (standardized MD [SMD], 0.52 kg; 95% confidence interval [CI], 0.31, 0.73; I2 = 95%; Grading of Recommendations Assessment, Development and Evaluation [GRADE] = low). Supplementation of omega-3 fatty acids did not yield a statistically significant impact on body mass index (BMI) (SMD, 0.12 kg/m2; 95% CI, −0.02, 0.27; I2 = 79%; GRADE = very low), lean body mass (LBM) (SMD, −0.02 kg; 95% CI, −0.43, 0.39; I2 = 97%; GRADE = very low), fat mass (SMD, 0.45 kg; 95% CI, −0.25, 1.15; I2 = 96%; GRADE = low), and body fat (SMD, 0.30%; 95% CI, −0.90, 1.51; I2 = 96%; GRADE = very low). After excluding 2 studies, the findings were significant for BMI. Regarding the results of the dose-response analysis, body weight increased proportionally by increasing the dose of omega-3 supplementation up to 4 g/day. Omega-3 fatty acid supplementation can improve body weight, but not BMI, LBM, fat mass, or body fat in cancer patients; large-scale randomized trials needed for more reliable results.

Trial Registration

PROSPERO Identifier: CRD42023395341

Citations

Citations to this article as recorded by  
  • Nutritional impact of eicosapentaenoic acid supplementation (EPA) in patients with locally advanced head and neck cancer: a double-blind placebo-controlled randomized trial
    Lorena Arribas, Laura Hurtós, Anna Esteve, Inmaculada Peiró, Ana Regina González-Tampán, Maryam Choulli, Maite Antonio, Esther Vilajosana, Alicia Lozano Borbalas, Miren Taberna, Ricard Mesía
    Nutrition Journal.2025;[Epub]     CrossRef
  • A Complete Examination of Omega-3 Full of Fat Acids: Their Origin, Activities, Well Being Advantages
    Ashutosh Pathak*1&2
    Journal of Science Innovations and Nature of Earth.2025; 5(1): 05.     CrossRef
  • An Overview of the Importance of Muscle Health in Oncology: Assessment, Preservation, and Nutritional Recovery Strategies
    Larissa Farinha Maffini, Camilla Horn Soares, Amanda Guterres Beuren, Gabriel Tonin Ferrari, Heloisa Jacques Friedrich, Giovana Breitenbach Camargo, Giovanna Strapasson Faccin, Carolina Pagnoncelli Gabrielli, Giovanna Potrick Stefani, Viviani Ruffo de Oli
    Current Nutrition Reports.2025;[Epub]     CrossRef
  • Omega-3 Supplementation and Nutritional Status in Patients with Pancreatic Neoplasms: A Systematic Review
    Luciana Pires, Luciane Salaroli, Olívia Podesta, Fabiano Haraguchi, Luís Lopes-Júnior
    Nutrients.2024; 16(23): 4036.     CrossRef
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Original Articles
[English]
Effect of Eicosapentaenoic Acid Supplementation on Paraoxonase 2 Gene Expression in Patients with Type 2 Diabetes Mellitus: a Randomized Double-blind Clinical Trial
Mohammad Hassan Golzari, Mohammad Hassan Javanbakht, Ehsan Ghaedi, Hamed Mohammadi, Mahmoud Djalali
Clin Nutr Res 2019;8(1):17-27.   Published online January 28, 2019
DOI: https://doi.org/10.7762/cnr.2019.8.1.17

Type 2 diabetes mellitus (T2DM) is recognized as one of the most prevalent metabolic diseases, and it is mostly associated with oxidative stress, atherosclerosis and dyslipidemia. Paraoxonase 2 (PON2) due to its antioxidant properties may play a role in the atherosclerosis development. Although long-chain omega-3 polyunsaturated fatty acids, such as eicosapentaenoic acid (EPA) have been shown to reduce the risk of cardiovascular disease, the exact mechanism of action is still unknown. Our goal in this study was to determine the effect of EPA administration on gene expression of PON2 in patients with T2DM. Present study was a randomized, controlled double-blind trial. Thirty-six patients with T2DM were randomly allocated to receive 2 g/day EPA (n = 18) or placebo (n = 18) for 8 weeks. There were no significant differences between 2 groups concerning demographic or biochemical variables, and dietary intakes as well (p > 0.05). However, patients received EPA showed a significant increase in the gene expression of PON2 compared with placebo group (p = 0.027). In addition, high-density lipoprotein cholesterol increased and fasting blood sugar decreased significantly after EPA supplementation compared with control group. Taken together, supplementation with 2 g/day EPA could be atheroprotective via the upregulation of PON2 in patients with T2DM.

Trial Registration

ClinicalTrials.gov Identifier: NCT03258840

Citations

Citations to this article as recorded by  
  • Comparison of the efficacy of fish oil and probiotic supplementation on glucose and lipid metabolism in patients with type 2 diabetes: a systematic review and network meta-analysis
    Mei Zhang, Fan Yang, Qiu Feng, Yanghong Ou, Jiaxing Zhang, Haiyan Wan, Hongyi Cao, Peng Ning
    Diabetology & Metabolic Syndrome.2024;[Epub]     CrossRef
  • Icosapent ethyl for reduction of persistent cardiovascular risk: a critical review of major medical society guidelines and statements
    Michael Miller, Lale Tokgozoglu, Klaus G. Parhofer, Yehuda Handelsman, Lawrence A. Leiter, Ulf Landmesser, Eliot A. Brinton, Alberico L. Catapano
    Expert Review of Cardiovascular Therapy.2022; 20(8): 609.     CrossRef
  • The effects of omega-3 fatty acids in type 2 diabetes: A systematic review and meta-analysis
    Yanan Xiao, Qifang Zhang, Xueling Liao, Ulf Elbelt, Karsten H. Weylandt
    Prostaglandins, Leukotrienes and Essential Fatty Acids.2022; 182: 102456.     CrossRef
  • Insights into the role of paraoxonase 2 in human pathophysiology
    Fauzia Parween, Rinkoo Devi Gupta
    Journal of Biosciences.2022;[Epub]     CrossRef
  • Reducing residual cardiovascular risk in Europe: Therapeutic implications of European medicines agency approval of icosapent ethyl/eicosapentaenoic acid
    M. John Chapman, Jose L. Zamorano, Klaus G. Parhofer
    Pharmacology & Therapeutics.2022; 237: 108172.     CrossRef
  • EPA’s pleiotropic mechanisms of action: a narrative review
    John R. Nelson, Matthew J. Budoff, Omar R. Wani, Viet Le, Dhiren K. Patel, Ashley Nelson, Richard L. Nemiroff
    Postgraduate Medicine.2021; 133(6): 651.     CrossRef
  • The case for adding eicosapentaenoic acid (icosapent ethyl) to the ABCs of cardiovascular disease prevention
    Kamini Trivedi, Viet Le, John R. Nelson
    Postgraduate Medicine.2021; 133(1): 28.     CrossRef
  • Mineral oil: safety and use as placebo in REDUCE-IT and other clinical studies
    Brian Olshansky, Mina K Chung, Matthew J Budoff, Sephy Philip, Lixia Jiao, Ralph T Doyle, Jr., Christina Copland, Alex Giaquinto, Rebecca A Juliano, Deepak L Bhatt
    European Heart Journal Supplements.2020; 22(Supplement): J34.     CrossRef
  • Improvement of NRF2 gene expression and antioxidant status in patients with type 2 diabetes mellitus after supplementation with omega-3 polyunsaturated fatty acids: A double-blind randomised placebo-controlled clinical trial
    Pegah Golpour, Mitra Nourbakhsh, Maryam Mazaherioun, Leila Janani, Mona Nourbakhsh, Parichehreh Yaghmaei
    Diabetes Research and Clinical Practice.2020; 162: 108120.     CrossRef
  • Paraoxonases Activities and Polymorphisms in Elderly and Old-Age Diseases: An Overview
    Débora Levy, Cadiele Oliana Reichert, Sérgio Paulo Bydlowski
    Antioxidants.2019; 8(5): 118.     CrossRef
  • Purslane and Garden Cress Seeds as Source of Unconventional Edible Oils for Prevention of Hyperlipidemia
    Doha Abdou Mohamed, Hend Abass Essa, Rasha Salah Mohamed
    Pakistan Journal of Biological Sciences.2019; 22(11): 537.     CrossRef
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[English]
The Effect of Pycnogenol Supplementation on Plasma C-Reactive Protein Concentration: a Systematic Review and Meta-Analysis
Omid Nikpayam, Mohammad Hossein Rouhani, Makan Pourmasoumi, Neda Roshanravan, Ehsan Ghaedi, Hamed Mohammadi
Clin Nutr Res 2018;7(2):117-125.   Published online April 16, 2018
DOI: https://doi.org/10.7762/cnr.2018.7.2.117

Pycnogenol is a standardized extract from the bark of the French maritime pine. The aim of the present systematic review and meta-analysis was to clarify the effect of Pycnogenol supplementation on C-reactive protein (CRP) concentration. To identify eligible studies in order to find clinical trials which examined the effect of Pycnogenol supplementation on the level of CRP in adult participants, PubMed, Scopus, and Google Scholar were systematically searched until December 2017. Mean of CRP was collected to estimate the effect size of the supplementation. Potential sources of heterogeneity were explored by subgroup analysis. Five trials including 324 participants were included in this meta-analysis. Pooled effect size showed significant effect of Pycnogenol supplementation on CRP (−1.22 mg/dL, 95% confidence interval, −2.43, −0.003; I2 = 99%, pheterogeneity < 0.001). When the meta-analysis was subgrouped by dose of Pycnogenol, heterogeneity was attenuated in > 150 mg/d category (I2 = 0.0%, p = 0.42). There was significant difference between-subgroup heterogeneity (p < 0.001). Furthermore, no evidence of publication bias for CRP (p = 0.27, Begg's test and p = 0.62, Egger's test) was seen. Present systematic review and meta-analysis suggested Pycnogenol consumption can decrease the level of CRP and have anti-inflammatory effect. So, Pycnogenol as an anti-inflammatory agent might be a priority in interventions. Further studies with large-scale and better design are needed to confirm this result.

Citations

Citations to this article as recorded by  
  • Evaluation of the Neuroprotective Effect of Pycnogenol in a Hypoxic–Ischemic Brain Injury Model in Newborn Rats
    Ruya Çolak, Aslı Celik, Gulden Diniz, Senem Alkan Özdemir, Osman Yilmaz, Sebnem Calkavur
    American Journal of Perinatology.2023; 40(06): 612.     CrossRef
  • Effects of supplementation with vegetable sources of alpha-linolenic acid (ALA) on inflammatory markers and lipid profile in individuals with chronic kidney disease: A systematic review and meta-analysis
    Aline Miroski de Abreu, Cândice Laís Knöner Copetti, Daniela Barbieri Hauschild, Patricia Faria Di Pietro, Elisabeth Wazlawik
    Clinical Nutrition.2022; 41(6): 1434.     CrossRef
  • The role of Pycnogenol in the control of inflammation and oxidative stress in chronic diseases: Molecular aspects
    Elyas Nattagh‐Eshtivani, Alireza Gheflati, Hanieh Barghchi, Pegah Rahbarinejad, Kadda Hachem, Mohammed Nader Shalaby, Walid Kamal Abdelbasset, Golnaz Ranjbar, Dmitry Olegovich Bokov, Pegah Rahimi, Jamshid Gholizadeh Navashenaq, Naseh Pahlavani
    Phytotherapy Research.2022; 36(6): 2352.     CrossRef
  • The Developing Cerebellum as a Target for Toxic Substances: Protective Role of Antioxidants
    Adaze Bijou Enogieru, Oghenakhogie Iroboudu Momodu
    The Cerebellum.2021; 20(4): 614.     CrossRef
  • The Effect of Oligopin Supplementation on Hormonal and Metabolic Profiles in the Polycystic Ovary Syndrome: A Randomized Controlled Trial
    Mostafa Qorbani, Milad Sanginabadi, Mohammad Reza Mohajeri-Tehrani, Sara Karimi, Hadis Gerami, Armita Mahdavi-Gorabi, Nooshin Shirzad, Majid Samadi, Fereshteh Baygi, Saeed Hosseini, Asieh Mansour
    Frontiers in Endocrinology.2020;[Epub]     CrossRef
  • Effect of flaxseed supplementation on markers of inflammation and endothelial function: A systematic review and meta-analysis
    Moein Askarpour, Mohammadreza Karimi, Amir Hadi, Ehsan Ghaedi, Micheal E. Symonds, Maryam Miraghajani, Parisa Javadian
    Cytokine.2020; 126: 154922.     CrossRef
  • Effect of Pycnogenol on Blood Pressure: Findings From a PRISMA Compliant Systematic Review and Meta-Analysis of Randomized, Double-Blind, Placebo-Controlled, Clinical Studies
    Federica Fogacci, Giuliano Tocci, Amirhossein Sahebkar, Vivianne Presta, Maciej Banach, Arrigo Francesco Giuseppe Cicero
    Angiology.2020; 71(3): 217.     CrossRef
  • Pleiotropic Effects of French Maritime Pine Bark Extract to Promote Healthy Aging
    Peter Rohdewald
    Rejuvenation Research.2019; 22(3): 210.     CrossRef
  • Effects of pycnogenol on cardiometabolic health: A systematic review and meta-analysis of randomized controlled trials
    Mahsa Malekahmadi, Omid Moradi Moghaddam, Safieh Firouzi, Reza Daryabeygi-Khotbehsara, Sheikh Mohammed Shariful Islam, Abdolreza Norouzy, Sepideh Soltani
    Pharmacological Research.2019; 150: 104472.     CrossRef
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[English]
Erythrocyte Membrane Unsaturated (Mono and Poly) Fatty Acids Profile in Newly Diagnosed Basal Cell Carcinoma Patients
Fatemeh Rahrovani, Mohammad Hassan Javanbakht, Ehsan Ghaedi, Hamed Mohammadi, Amir-Hooshang Ehsani, Ali Esrafili, Mahmoud Djalali
Clin Nutr Res 2018;7(1):21-30.   Published online January 24, 2018
DOI: https://doi.org/10.7762/cnr.2018.7.1.21

Studies have reported different changes in the fatty acid composition of red blood cell (RBC) total lipids in patients with various types of cancer. It has been indicated that n-3/n-6 ratio plays a key role in the general consequence of skin photocarcinogenesis. However, to our knowledge there was no study examining the unsaturated fatty acid profile in basal cell carcinoma (BCC) patients. So, we explore the fatty acid composition of RBCs in newly diagnosed BCC patients in a hospital-based case-control study. This study has been conducted on new case BCC patients in Razi Hospital, Tehran, Iran. Fatty acid concentration in erythrocyte membranes defined as relative values after extraction, purification and preparation, by gas chromatography.Analysis revealed that heptadecenoic acid (p = 0.010) and oleic acid (p < 0.001) was significantly higher in BCC patients in comparison with control group. Among polyunsaturated fatty acids (PUFAs), linoleic acid (LA), and arachidonic acid (AA) were significantly higher in BCC patients (p < 0.001). It has been indicated that n-3 was significantly lower (p = 0.040) and n-6 was significantly higher (p = 0.002) in BCC patients. In addition, total PUFA (p < 0.001) and n-6 PUFAs/n-3 PUFAs (p = 0.002) were significantly higher in BCC patients compared to the control group. Here we indicated that new case BCC patient had significantly higher n-6 PUFA and lower n-3 along with other differences in unsaturated fatty acid in comparison with healthy subjects. Our study provides evidence that lipids are important in BCC development.

Citations

Citations to this article as recorded by  
  • Fatty Acids and Membrane Lipidomics in Oncology: A Cross-Road of Nutritional, Signaling and Metabolic Pathways
    Carla Ferreri, Anna Sansone, Rosaria Ferreri, Javier Amézaga, Itziar Tueros
    Metabolites.2020; 10(9): 345.     CrossRef
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