Singh Chandra Pratap, Rai Pankaj Kumar, Kumar Manish, Tiwari Varsha, Tiwari Abhishek, Sharma Ajay, Sharma Kamini
Usha college of Pharmacy & Medical Sciences, Vijaygaon, Ambedkar Nagar, 224122, UP, India.
Faculty of Pharmaceutical Sciences, Invertis University, Bareilly, 243123, UP, India.
Pharm Nanotechnol. 2024;12(2):126-142. doi: 10.2174/2211738511666230727102213.
Drug distribution to the eye is still tricky because of the eye's intricate structure. Systemic delivery, as opposed to more traditional methods like eye drops and ointments, is more effective but higher doses can be harmful.
The use of solid lipid nanoparticles (SLNPs) as a method of drug delivery has been the subject of research since the 1990s. Since SLNPs are derived from naturally occurring lipids, they pose no health risks to the user. To raise the eye's absorption of hydrophilic and lipophilic drugs, SLNs can promote corneal absorption and improve the ocular bioavailability of SLNPs.
To address problems related to ocular drug delivery, many forms of nano formulation were developed. Some of the methods developed are, emulsification and ultra-sonication, high-speed stirring and ultra-sonication, thin layer hydration, adapted melt-emulsification, and ultrasonication techniques, hot o/w micro-emulsion techniques, etc. Results: Nanostructured lipid carriers are described in this review in terms of their ocular penetration mechanism, structural characteristic, manufacturing process, characterization, and advantages over other nanocarriers.
Recent developments in ocular formulations with nanostructured bases, such as surfacemodified attempts have been made to increase ocular bioavailability in both the anterior and posterior chambers by incorporating cationic chemicals into a wide variety of polymeric systems.
由于眼睛结构复杂,药物向眼部的分布仍然很棘手。与眼药水和药膏等更传统的方法不同,全身给药更有效,但高剂量可能有害。
自20世纪90年代以来,使用固体脂质纳米粒(SLNP)作为药物递送方法一直是研究的主题。由于SLNP由天然存在的脂质衍生而来,它们对使用者没有健康风险。为提高眼睛对亲水性和亲脂性药物的吸收,SLN可促进角膜吸收并提高SLNP的眼部生物利用度。
为解决与眼部药物递送相关的问题,开发了多种纳米制剂形式。所开发的一些方法包括乳化和超声处理、高速搅拌和超声处理、薄层水化、改良熔融乳化和超声处理技术、热o/w微乳液技术等。结果:本综述从纳米结构脂质载体的眼部渗透机制、结构特征、制造工艺、表征以及相对于其他纳米载体的优势等方面进行了描述。
眼部纳米结构制剂的最新进展,如表面改性尝试,通过将阳离子化学品纳入各种聚合物系统,已致力于提高前房和后房的眼部生物利用度。