Mehra Neelesh K, Cai Defu, Kuo Lih, Hein Travis, Palakurthi Srinath
a Department of Pharmaceutical Sciences, Irma Lerma Rangel College of Pharmacy , Texas A&M Health Science Center , Kingsville , TX , USA ;
b Department of Medical Physiology, College of Medicine , Texas A&M Health Science Center , Temple , TX , USA ;
Nanotoxicology. 2016 Sep;10(7):836-60. doi: 10.3109/17435390.2016.1153165. Epub 2016 Mar 30.
Multifunctional nanomaterials are rapidly emerging for ophthalmic delivery of therapeutics to facilitate safe and effective targeting with improved patient compliance. Because of their extremely high area to volume ratio, nanomaterials often have physicochemical properties that are different from those of their larger counterparts. There exists a complex relationship between the physicochemical properties (composition, size, shape, charge, roughness, and porosity) of the nanomaterials and their interaction with the biological system. The eye is a very sensitive accessible organ and is subjected to intended and unintended exposure to nanomaterials. Currently, various ophthalmic formulations are available in the market, while some are underway in preclinical and clinical phases. However, the data on safety, efficacy, and toxicology of these advanced nanomaterials for ocular drug delivery are sparse. Focus of the present review is to provide a comprehensive report on the safety, biocompatibility and toxicities of nanomaterials in the eye.
多功能纳米材料正迅速兴起,用于眼科药物递送,以促进安全有效的靶向给药并提高患者的依从性。由于其极高的表面积与体积比,纳米材料通常具有与其较大对应物不同的物理化学性质。纳米材料的物理化学性质(组成、大小、形状、电荷、粗糙度和孔隙率)与其与生物系统的相互作用之间存在复杂的关系。眼睛是一个非常敏感且易于接触的器官,会有意无意地接触到纳米材料。目前,市场上有各种眼科制剂,而一些制剂正处于临床前和临床阶段。然而,这些用于眼部药物递送的先进纳米材料的安全性、有效性和毒理学数据却很稀少。本综述的重点是提供关于纳米材料在眼部的安全性、生物相容性和毒性的全面报告。