Saparbekova A A, Kantureyeva G O, Kudasova D E, Konarbayeva Z K, Latif A S
M. Auezov South Kazakhstan University, Biotechnology department, Tauke-Chan av., 5, 486050 Shymkent, Kazakhstan.
M. Auezov South Kazakhstan University, Food Engineering department, Tauke-Chan av., 5, 486050 Shymkent, Kazakhstan.
Saudi J Biol Sci. 2023 Feb;30(2):103553. doi: 10.1016/j.sjbs.2022.103553. Epub 2022 Dec 28.
The wealth of epidemiological evidence in the scientific world underscores the possibility that a plant-based diet can reduce the prevalence of common diseases such as diabetes, cardiovascular disease, cancer, and stroke. The therapeutic effects of plant sources are partly explained by phenolic secondary metabolites or polyphenolic compounds. Therefore, polyphenolic compounds, which are widely distributed in plants, are of great interest for the development of effective specific drugs with antioxidant and anti-inflammatory effects. Moreover, polyphenol compounds have no harmful effects due to their natural biocompatibility and safety. Numerous studies have highlighted the potential of some industrial food wastes from plant material processing, including apple peels and mashed potatoes, grape skins, tomato and carrot peels, pomegranate peels and seeds, and many others. These byproducts are considered low-cost sources of natural biological compounds, including antioxidants, which have beneficial effects on human health. The polyphenol complex of pomegranate peel (.), which makes up half of the pomegranate fruit, has more pronounced antioxidant and anti-inflammatory properties than other parts. And the most important active components of pomegranate peel, which are found only in this plant, are punicalagin, followed by ellagic acid and gallic acid. It is known that these polyphenolic compounds of pomegranate peel have the most pronounced therapeutic effect. Several studies have shown the protective effect of ellagic acid, punicalagin, against oxidative stress damage caused by free radicals. The potential of pomegranate peel as an antioxidant and therapeutic component in various biological systems is high, according to scientific sources. However, despite extensive research in recent years, a review of sources has shown that there is insufficient evidence to support the therapeutic effects of polyphenolic compounds from pomegranate peels. The role of pomegranate peel polyphenolic compounds, including flavonoids, as antioxidants in various biological systems also requires further research. Of particular importance are the mechanisms by which antioxidants influence the cellular response against oxidative stress. The purpose of this review was to report our current knowledge of plant polyphenolic compounds and their classification, and to evaluate the potential of phenolic compounds from pomegranate peels with significant antioxidant and therapeutic effects.
科学界丰富的流行病学证据强调了以植物为基础的饮食能够降低糖尿病、心血管疾病、癌症和中风等常见疾病患病率的可能性。植物来源的治疗作用部分归因于酚类次生代谢产物或多酚化合物。因此,广泛分布于植物中的多酚化合物对于开发具有抗氧化和抗炎作用的有效特效药物具有重大意义。此外,多酚化合物因其天然的生物相容性和安全性而没有有害影响。众多研究突出了一些植物材料加工产生的工业食品废料的潜力,包括苹果皮、土豆泥、葡萄皮、番茄和胡萝卜皮、石榴皮和籽等等。这些副产品被视为天然生物化合物的低成本来源,包括对人体健康有益的抗氧化剂。占石榴果实一半的石榴皮多酚复合物具有比其他部分更显著的抗氧化和抗炎特性。石榴皮中最重要的活性成分仅存在于这种植物中,依次为石榴皮素,其次是鞣花酸和没食子酸。众所周知,石榴皮的这些多酚化合物具有最显著的治疗效果。多项研究表明鞣花酸、石榴皮素对自由基引起的氧化应激损伤具有保护作用。据科学资料显示,石榴皮作为各种生物系统中的抗氧化剂和治疗成分的潜力很高。然而,尽管近年来进行了广泛研究,但对资料的综述表明,没有足够证据支持石榴皮多酚化合物的治疗效果。石榴皮多酚化合物(包括黄酮类化合物)在各种生物系统中作为抗氧化剂的作用也需要进一步研究。抗氧化剂影响细胞对氧化应激反应的机制尤为重要。本综述的目的是报告我们目前对植物多酚化合物及其分类的认识,并评估具有显著抗氧化和治疗作用的石榴皮酚类化合物的潜力。