Razavi Malihe Sadat, Ebrahimnejad Pedram, Fatahi Yousef, D'Emanuele Antony, Dinarvand Rassoul
Department of Pharmaceutics, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.
Nanotechnology Research Centre, Faculty of Pharmacy, Tehran University of Medical Sciences, Tehran, Iran.
Front Chem. 2022 Apr 13;10:850757. doi: 10.3389/fchem.2022.850757. eCollection 2022.
Ocular disorders comprising various diseases of the anterior and posterior segments are considered as the main reasons for blindness. Natural products have been identified as potential treatments for ocular diseases due to their anti-oxidative, antiangiogenic, and anti-inflammatory effects. Unfortunately, most of these beneficial compounds are characterised by low solubility which results in low bioavailability and rapid systemic clearance thus requiring frequent administration or requiring high doses, which hinders their therapeutic applications. Additionally, the therapeutic efficiency of ocular drug delivery as a popular route of drug administration for the treatment of ocular diseases is restricted by various anatomical and physiological barriers. Recently, nanotechnology-based strategies including polymeric nanoparticles, micelles, nanofibers, dendrimers, lipid nanoparticles, liposomes, and niosomes have emerged as promising approaches to overcome limitations and enhance ocular drug bioavailability by effective delivery to the target sites. This review provides an overview of nano-drug delivery systems of natural compounds such as thymoquinone, catechin, epigallocatechin gallate, curcumin, berberine, pilocarpine, genistein, resveratrol, quercetin, naringenin, lutein, kaempferol, baicalin, and tetrandrine for ocular applications. This approach involves increasing drug concentration in the carriers to enhance drug movement into and through the ocular barriers.
包括眼前段和眼后段各种疾病的眼部疾病被认为是失明的主要原因。天然产物因其抗氧化、抗血管生成和抗炎作用,已被确定为眼部疾病的潜在治疗方法。不幸的是,这些有益化合物大多具有低溶解度的特点,这导致生物利用度低和全身快速清除,因此需要频繁给药或高剂量给药,这阻碍了它们的治疗应用。此外,眼部给药作为治疗眼部疾病的一种常用给药途径,其治疗效率受到各种解剖和生理屏障的限制。最近,基于纳米技术的策略,包括聚合物纳米颗粒、胶束、纳米纤维、树枝状大分子、脂质纳米颗粒、脂质体和非离子表面活性剂囊泡,已成为克服这些限制并通过有效递送至靶位点来提高眼部药物生物利用度的有前景的方法。本文综述了天然化合物如百里醌、儿茶素、表没食子儿茶素没食子酸酯、姜黄素、小檗碱、毛果芸香碱、染料木黄酮、白藜芦醇、槲皮素、柚皮苷、叶黄素、山柰酚、黄芩苷和粉防己碱的纳米药物递送系统在眼部应用中的情况。这种方法包括提高载体中的药物浓度,以增强药物进入和穿过眼部屏障的移动。