Hedayati Neda, Yaghoobi Alireza, Salami Marziyeh, Gholinezhad Yasaman, Aghadavood Farnaz, Eshraghi Reza, Aarabi Mohammad-Hossein, Homayoonfal Mina, Asemi Zatollah, Mirzaei Hamed, Hajijafari Mohammad, Mafi Alireza, Rezaee Malihe
School of Medicine, Iran University of Medical Science, Tehran, Iran.
Department of Pharmacology, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Front Cardiovasc Med. 2023 May 24;10:1174816. doi: 10.3389/fcvm.2023.1174816. eCollection 2023.
Polyphenols are abundant in regular diets and possess antioxidant, anti-inflammatory, anti-cancer, neuroprotective, and cardioprotective effects. Regarding the inadequacy of the current treatments in preventing cardiac remodeling following cardiovascular diseases, attention has been focused on improving cardiac function with potential alternatives such as polyphenols. The following online databases were searched for relevant orginial published from 2000 to 2023: EMBASE, MEDLINE, and Web of Science databases. The search strategy aimed to assess the effects of polyphenols on heart failure and keywords were "heart failure" and "polyphenols" and "cardiac hypertrophy" and "molecular mechanisms". Our results indicated polyphenols are repeatedly indicated to regulate various heart failure-related vital molecules and signaling pathways, such as inactivating fibrotic and hypertrophic factors, preventing mitochondrial dysfunction and free radical production, the underlying causes of apoptosis, and also improving lipid profile and cellular metabolism. In the current study, we aimed to review the most recent literature and investigations on the underlying mechanism of actions of different polyphenols subclasses in cardiac hypertrophy and heart failure to provide deep insight into novel mechanistic treatments and direct future studies in this context. Moreover, due to polyphenols' low bioavailability from conventional oral and intravenous administration routes, in this study, we have also investigated the currently accessible nano-drug delivery methods to optimize the treatment outcomes by providing sufficient drug delivery, targeted therapy, and less off-target effects, as desired by precision medicine standards.
多酚类物质在日常饮食中含量丰富,具有抗氧化、抗炎、抗癌、神经保护和心脏保护作用。鉴于目前治疗方法在预防心血管疾病后心脏重塑方面存在不足,人们将注意力集中在利用多酚类物质等潜在替代物来改善心脏功能上。我们检索了以下在线数据库,以查找2000年至2023年发表的相关原始文献:EMBASE、MEDLINE和科学网数据库。检索策略旨在评估多酚类物质对心力衰竭的影响,关键词为“心力衰竭”、“多酚类物质”、“心肌肥厚”和“分子机制”。我们的结果表明,多酚类物质多次被指出可调节各种与心力衰竭相关的重要分子和信号通路,例如使纤维化和肥厚因子失活、预防线粒体功能障碍和自由基产生(细胞凋亡的根本原因),还可改善血脂水平和细胞代谢。在本研究中,我们旨在回顾关于不同多酚类物质亚类在心肌肥厚和心力衰竭中作用机制的最新文献和研究,以便深入了解新的机制性治疗方法,并指导这方面的未来研究。此外,由于多酚类物质通过传统口服和静脉给药途径的生物利用度较低,在本研究中,我们还研究了目前可用的纳米药物递送方法,以按照精准医学标准的要求,通过提供足够的药物递送、靶向治疗和较少的脱靶效应来优化治疗效果。