University Institute of Pharma Sciences, Chandigarh University, Gharuan, Mohali. 140413, India.
Department of Pharmaceutical Sciences, ISF College of Pharmacy, Moga, Punjab, 142001, India.
Recent Pat Nanotechnol. 2024;18(4):479-493. doi: 10.2174/1872210518666230911150337.
The development of an efficient and innovative drug delivery system is essential to improve the pharmacological parameters of the medicinal compound or drug. The technique or manner used to improve the pharmacological parameters plays a crucial role in the delivery system. In the current scenario, various drug delivery systems are available where nanotechnology has firmly established itself in the field of drug delivery. One of the most prevalent elements is carbon with its allotropic modifications such as graphene-based nanomaterials, carbon nanotubes, carbon dots, and carbon fullerenes, these nanomaterials offer notable physiochemical and biochemical properties for the delivery applications due to their smaller size, surface area, and ability to interact with the cells or tissues. The exceptional physicochemical properties of carbon-based 2D nanomaterials, such as graphene and carbon nanotubes, make them attractive candidates for drug delivery systems. These nanomaterials offer a large surface area, high drug loading capacity, and tunable surface chemistry, enabling efficient encapsulation, controlled release, and targeted delivery of therapeutic agents. These properties of the nanomaterials can be exploited for drug delivery applications, like assisting the target delivery of drugs and aiding combination molecular imaging. This review emphasizes on the recent patents on 2D carbon-based nanomaterial and their role in drug delivery systems. Carbon-based 2D nanomaterials present a wealth of opportunities for advanced drug delivery systems. Their exceptional properties and versatility offers great potential in improving therapeutic efficacy, minimizing side effects, and enabling personalized medicine and the recent patents on 2D nanomaterial.
开发高效创新的药物输送系统对于改善药物化合物或药物的药理学参数至关重要。用于改善药理学参数的技术或方法在输送系统中起着至关重要的作用。在当前情况下,已经有各种药物输送系统,其中纳米技术在药物输送领域已经牢固确立。最常见的元素之一是碳,其具有各向异性的改性,例如基于石墨烯的纳米材料、碳纳米管、碳点和碳富勒烯,由于其较小的尺寸、表面积和与细胞或组织相互作用的能力,这些纳米材料为输送应用提供了显著的物理化学和生物化学特性。基于碳的二维纳米材料(如石墨烯和碳纳米管)具有出色的物理化学特性,使它们成为药物输送系统的有吸引力的候选材料。这些纳米材料提供了较大的表面积、较高的药物载药量和可调节的表面化学性质,能够实现治疗剂的有效封装、控制释放和靶向输送。这些纳米材料的特性可用于药物输送应用,例如辅助药物的靶向输送和辅助组合分子成像。本综述强调了二维碳基纳米材料的最新专利及其在药物输送系统中的作用。二维碳基纳米材料为先进的药物输送系统提供了丰富的机会。它们的独特性质和多功能性在提高治疗效果、最小化副作用以及实现个性化医疗方面具有巨大的潜力。最近的二维纳米材料专利。