纳米颗粒:作为一种基于纳米的给药系统

Sangar Omkar S., Patil Aishwarya C., Payghan Santosh A.
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引用次数: 3

摘要

与传统药物相比,纳米颗粒具有高稳定性、高特异性、高药物转运能力、控释能力、不同给药途径的可能性以及同时给药亲疏水分子的能力等重要优势。纳米粒子被用于各种目的,从医疗、用于生产工业的各个部门,如太阳能和能源储存,到广泛应用于各种日常材料,如化妆品或服装、光学设备、催化、杀菌、电子、传感器技术、生物标签和某些癌症的治疗。纳米粒子可以用化学或生物方法合成。本文综述了纳米颗粒的发展需要、优缺点、合成方法、性质、应用等。纳米粒子由于其小尺寸和可修饰性,在选择性肿瘤接触性癌症治疗中非常有能力。这些颗粒由纯活性药物成分组成,并定期用表面活性剂稳定。纳米颗粒是一种微小的材料,其颗粒大小在1到1000纳米之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanoparticles: As a Nano based Drug Delivery System
Nanoparticles can offer important advantages over the administration of conventional drugs in terms of high stability, high specificity, high drug transport capacity, controlled release capacity, possibility of use in different routes of administration and the ability to administer drugs both hydrophilic and hydrophobic molecules. Nanoparticles are being used for various purposes, from medical treatments, use in various branches of the production industry such as solar and for energy storage, to a wide incorporation obsessed with various everyday materials such as cosmetics or dress, optical devices, catalytic, bactericidal, electronics, sensor technology, biological labelling and treatment of some cancers. Nanoparticles can be chemically or biologically synthesized. This review focuses on the need to develop nanoparticles, advantages, disadvantages, synthesis, properties, applications of nanoparticles exist in different forms. Nanoparticles are very capable in selective tumour contact cancer therapy due to their small size and modifiability. These particles consist of pure active pharmaceutical ingredients and are stabilized regularly with surfactant. Nanoparticles are tiny materials that have particle sizes in the range of 1 to 1000 nm.
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