Department of Pharmaceutics, MM College of Pharmacy, Maharishi Markandeshwar (Deemed to Be University), Ambala 133207, India.
School of Health Sciences & Technology, University of Petroleum and Energy Studies, Bidholi, Dehradun 248007, India.
Molecules. 2023 Feb 13;28(4):1765. doi: 10.3390/molecules28041765.
Herbal drugs have been attracting much scientific interest in the last few decades and nowadays, phytoconstituents-based research is in progress to disclose their unidentified medicinal potential. Daidzein (DAI) is the natural phytoestrogen isoflavone derived primarily from leguminous plants, such as the soybean and mung bean, and its IUPAC name is 4',7-dihydroxyisoflavone. This compound has received great attention as a fascinating pharmacophore with remarkable potential for the therapeutic management of several diseases. Certain pharmacokinetic properties of DAI such as less aqueous solubility, low permeability, and poor bioavailability are major obstacles restricting the therapeutic applications. In this review, distinctive physicochemical characteristics and pharmacokinetics of DAI has been elucidated. The pharmacological applications in treatment of several disorders like oxidative stress, cancer, obesity, cardiovascular, neuroprotective, diabetes, ovariectomy, anxiety, and inflammation with their mechanism of action are explained. Furthermore, this review article comprehensively focuses to provide up-to-date information about nanotechnology-based formulations which have been investigated for DAI in preceding years which includes polymeric nanoparticles, solid lipid nanoparticles, nanostructured lipid carrier, polymer-lipid nanoparticles, nanocomplexes, polymeric micelles, nanoemulsion, nanosuspension, liposomes, and self-microemulsifying drug delivery systems.
在过去的几十年中,草药药物引起了科学界的极大兴趣,如今,基于植物成分的研究正在进行中,以揭示其未被识别的药用潜力。大豆苷元(DAI)是一种天然的植物雌激素异黄酮,主要来源于豆科植物,如大豆和绿豆,其 IUPAC 名称为 4',7-二羟基异黄酮。作为一种具有治疗多种疾病的显著潜力的迷人药效团,该化合物受到了极大的关注。DAI 的某些药代动力学特性,如低水溶解度、低渗透性和差的生物利用度,是限制治疗应用的主要障碍。在这篇综述中,阐明了 DAI 的独特物理化学特性和药代动力学特性。解释了 DAI 在治疗几种疾病中的药理学应用,如氧化应激、癌症、肥胖、心血管、神经保护、糖尿病、卵巢切除、焦虑和炎症及其作用机制。此外,本文综述还全面关注了近年来针对 DAI 的基于纳米技术的制剂的最新信息,包括聚合物纳米粒、固体脂质纳米粒、纳米结构脂质载体、聚合物-脂质纳米粒、纳米复合物、聚合物胶束、纳米乳液、纳米混悬剂、脂质体和自微乳药物传递系统。