Effects of Vaccinium-derived antioxidants on human health: the past, present and future.

IF 3.9 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Frontiers in Molecular Biosciences Pub Date : 2024-12-20 eCollection Date: 2024-01-01 DOI:10.3389/fmolb.2024.1520661
Amrita Ghosh, Samir C Debnath, Abir U Igamberdiev
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Abstract

Dietary intake of Vaccinium berries has demonstrated significant potential in preventing many risk factors associated with metabolic syndromes in the human population. In recent years, a multitude of research has shown the role of antioxidants derived from Vaccinium berries on chronic diseases such as cardiovascular disorders, diabetes, obesity, and cancer. Several studies have also investigated the effect of Vaccinium berry consumption on their ability to modulate the risk factors associated with oxidative stress, vascular function, inflammation, and lipid metabolism. Regarding cancer, studies showed that the consumption of berries reduces inflammation, inhibits angiogenesis, protects against DNA damage within the cell, and controls apoptosis and proliferation rates in malignant tumours. However, which components are responsible for the health benefits is still unclear. Reports show that whole berry consumption usually confers positive effects on human health, and the health-promoting potentials are likely due to the presence of polyphenols with antioxidant activities. Among these polyphenols, various Vaccinium berry species have been reported to contain anthocyanins and flavonoids. These two polyphenolic compounds are known to have higher antioxidant activity and are beneficial for human health. There are now several studies and human clinical trials documenting the beneficial effects of Vaccinium berries, and these findings suggest that they may be promising for preventing and treating neurodegenerative diseases. This review focuses primarily on dietary Vaccinium berries consumption effects on human health and their potential role as therapeutic agents.

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疫苗衍生抗氧化剂对人体健康的影响:过去、现在和未来。
从饮食中摄入枸杞已被证明在预防与人类代谢综合征相关的许多危险因素方面具有显著的潜力。近年来,大量的研究表明,从枸杞中提取的抗氧化剂对心血管疾病、糖尿病、肥胖和癌症等慢性疾病的作用。一些研究也调查了食用越橘对其调节与氧化应激、血管功能、炎症和脂质代谢相关的危险因素的能力的影响。关于癌症,研究表明食用浆果可以减少炎症,抑制血管生成,防止细胞内的DNA损伤,并控制恶性肿瘤的细胞凋亡和增殖率。然而,哪些成分对健康有益仍不清楚。报告显示,食用整个浆果通常对人体健康有积极影响,其促进健康的潜力可能是由于其含有具有抗氧化活性的多酚。在这些多酚类物质中,据报道,各种枸杞品种含有花青素和类黄酮。已知这两种多酚类化合物具有较高的抗氧化活性,对人体健康有益。现在有几项研究和人体临床试验记录了Vaccinium浆果的有益作用,这些发现表明它们可能有希望预防和治疗神经退行性疾病。本文主要综述了食用枸杞对人体健康的影响及其作为治疗剂的潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Molecular Biosciences
Frontiers in Molecular Biosciences Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.20
自引率
4.00%
发文量
1361
审稿时长
14 weeks
期刊介绍: Much of contemporary investigation in the life sciences is devoted to the molecular-scale understanding of the relationships between genes and the environment — in particular, dynamic alterations in the levels, modifications, and interactions of cellular effectors, including proteins. Frontiers in Molecular Biosciences offers an international publication platform for basic as well as applied research; we encourage contributions spanning both established and emerging areas of biology. To this end, the journal draws from empirical disciplines such as structural biology, enzymology, biochemistry, and biophysics, capitalizing as well on the technological advancements that have enabled metabolomics and proteomics measurements in massively parallel throughput, and the development of robust and innovative computational biology strategies. We also recognize influences from medicine and technology, welcoming studies in molecular genetics, molecular diagnostics and therapeutics, and nanotechnology. Our ultimate objective is the comprehensive illustration of the molecular mechanisms regulating proteins, nucleic acids, carbohydrates, lipids, and small metabolites in organisms across all branches of life. In addition to interesting new findings, techniques, and applications, Frontiers in Molecular Biosciences will consider new testable hypotheses to inspire different perspectives and stimulate scientific dialogue. The integration of in silico, in vitro, and in vivo approaches will benefit endeavors across all domains of the life sciences.
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