Nautiyal Gunjan, Minocha Neha, Sharma Shiv Kant, Yadav Kiran, Kaushik Dhirender, Pandey Parijat
Department of Pharmaceutical Sciences, Gurugram University, Gurugram, 122018, Haryana, India.
Amity Institute of Pharmacy, Amity University, Gurugram, 122413, Haryana, India.
Recent Pat Nanotechnol. 2025;19(4):592-608. doi: 10.2174/0118722105310674240822115457.
Rutin, often known as vitamin P, is a natural flavonoid compound, which offers a broad spectrum of therapeutic potentials. Rutin is metabolised to different compounds by the gut bacteria after consumption, therefore, very little is absorbed. Higher plants contribute to rutin synthesis in large quantities, and it may also be found in many fruits and fruity rinds, particularly citrus fruits and berries.
The present paper highlights several studies and patents conducted on rutin along with its nanoformulations regarding its broad spectrum of therapeutic potentials.
Numerous electronic databases, including Springer, PubMed, Science Direct, Pubchem, Google Patents etc. were searched to extract relevant published literature demonstrating rutin effectiveness in various ailments.
The reviewed literature showed that rutin and related flavonoids possess a variety of physiological properties that protects human beings, plants and animals. Antioxidant, anti-inflammatory, anti-allergic, cytoprotective, vasoprotective, anticarcinogenic, neuroprotective, cardioprotective, antibacterial, antiviral, antiprotozoal, antitumor, anti-hypertensive antiplatelet, antispasmodic and hypolipidemic, activities. Nanotechnology has been implemented for the improvement of the bioavailability of rutin using novel drug-delivery carriers.
The study concludes that the development of rutin nanoformulations for multiple therapeutic approaches contributes towards enhanced aqueous solubility as well as tailored pharmacokinetics compared to conventional delivery of rutin. However, more investigations should be conducted to confirm the improved bioavailability of the rutin nanoformulations.
芦丁通常被称为维生素P,是一种天然黄酮类化合物,具有广泛的治疗潜力。芦丁在摄入后会被肠道细菌代谢为不同的化合物,因此很少被吸收。高等植物大量合成芦丁,它也可能存在于许多水果和果皮中,特别是柑橘类水果和浆果。
本文重点介绍了几项关于芦丁及其纳米制剂的研究和专利,及其广泛的治疗潜力。
检索了多个电子数据库,包括施普林格、PubMed、科学Direct、Pubchem、谷歌专利等,以提取证明芦丁在各种疾病中有效性的相关已发表文献。
综述文献表明,芦丁和相关黄酮类化合物具有多种保护人类、植物和动物的生理特性。抗氧化、抗炎、抗过敏、细胞保护、血管保护、抗癌、神经保护、心脏保护、抗菌、抗病毒、抗原虫、抗肿瘤、抗高血压、抗血小板、解痉和降血脂活性。纳米技术已被用于使用新型药物递送载体提高芦丁的生物利用度。
该研究得出结论,与传统的芦丁给药方式相比,开发用于多种治疗方法的芦丁纳米制剂有助于提高其水溶性以及调整药代动力学。然而,需要进行更多的研究来证实芦丁纳米制剂提高的生物利用度。