Umar Hassaan, Wahab Habibah A, Gazzali Amirah Mohd, Tahir Hafsa, Ahmad Waqas
School of Pharmaceutical Science, Universiti Sains Malaysia, Minden 11800, Malaysia.
Department of Nutrition Sciences, University of Management and Technology, Punjab 54770, Pakistan.
Polymers (Basel). 2022 Jul 31;14(15):3118. doi: 10.3390/polym14153118.
Because of the extraordinary advancements in biomedical nanotechnology over the last few decades, traditional drug delivery systems have been transformed into smart drug delivery systems that respond to stimuli. These well-defined nanoplatforms can boost therapeutic targeting efficacy while reducing the side effects/toxicities of payloads, which are crucial variables for enhancing patient compliance by responding to specific internal or external triggers. Cubosomes are lipid-based nano systems that are analogous to well-known vesicular systems, such as lipo- and niosomes. They could be used as part of a unique drug delivery system that includes hydro-, lipo-, and amphiphilic drug molecules. In this review, we critically analyze the relevant literature on cubosomesregarding theories of cubosomeself-assembly, composition, and manufacturing methods, with an emphasis on tumor-targeted drug delivery applications. Due to the bioadhesive and -compatible nature of cubosome dispersion, this review also focuses on a variety of drug delivery applications, including oral, ophthalmic and transdermal.
在过去几十年中,由于生物医学纳米技术取得了非凡进展,传统药物递送系统已转变为对刺激做出响应的智能药物递送系统。这些定义明确的纳米平台可以提高治疗靶向效果,同时降低有效载荷的副作用/毒性,而这些是通过响应特定内部或外部触发因素来提高患者依从性的关键变量。立方液晶纳米粒是基于脂质的纳米系统,类似于脂质体和非离子表面活性剂囊泡等知名囊泡系统。它们可用作独特药物递送系统的一部分,该系统包括亲水、亲脂和两亲性药物分子。在本综述中,我们批判性地分析了有关立方液晶纳米粒自组装理论、组成和制造方法的相关文献,重点是肿瘤靶向药物递送应用。由于立方液晶纳米粒分散体具有生物粘附性和生物相容性,本综述还关注了包括口服、眼科和透皮在内的各种药物递送应用。