用于药物递送的纳米颗粒载体

Samantha Lokelani Crossen, Tarun Goswami
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引用次数: 2

摘要

纳米颗粒载体给药是一个新兴的研究领域,正在制药行业产生重大变化。讨论了纳米颗粒载体,特别是工程纳米颗粒载体作为靶向递送的药物递送系统。用于药物输送系统的纳米颗粒载体包括聚合物、胶束、树状大分子、脂质体、陶瓷、金属和各种形式的生物材料。这些纳米颗粒载体的特性对靶向药物递送非常有利,并导致药物在目标区域的有效积累,降低药物毒性,减少全身副作用,并且总体上更有效地使用药物。纳米颗粒载体在通过各种生物障碍方面是有效的,与微颗粒载体相比,纳米颗粒载体具有相对较高的细胞摄取,这使得药物能够到达目标细胞或组织。使用纳米颗粒载体进行药物递送导致药物的延长和持续释放,最终降低了需要给病人的剂量的成本和数量。目前,纳米颗粒作为药物递送载体在癌症、艾滋病和糖尿病等具有挑战性的疾病治疗中有广泛的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanoparticulate carriers for drug delivery
Drug delivery with nanoparticulate carriers is a new and upcoming research area that is making major changes within the pharmaceutical industry. Nanoparticulate carriers are discussed, particularly, engineered nanoparticulate carriers used as drug delivery systems for targeted delivery. Nanoparticulate carriers that are used for drug delivery systems include polymers, micelles, dendrimers, liposomes, ceramics, metals, and various forms of biological materials. The properties of these nanoparticulate carriers are very advantageous for targeted drug delivery and result in efficient drug accumulation at the targeted area of interest, reduced drug toxicity, reduced systemic side effects, and more efficient use of the drug overall. Nanoparticlulate carriers are effective in passing various biological impediments and have a relatively high cellular uptake compared to that of microparticulate carriers, which allows for the drug agent to reach a targeted cell or tissue. The use of nanoparticulate carriers for drug delivery results in a prolonged and sustained release of the drug which ultimately reduces the cost and amount of doses that need to be administered to the patient. Currently, there is extensive research of nanoparticles as drug delivery carriers for challenging disease treatment cases such as cancer, HIV, and diabetes.
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