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Increasing Possibilities of Nanosuspension

机译:纳米悬浮液的可能性越来越高

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摘要

Nowadays, a very large proportion of new drug candidates emerging from drug discovery programmes are water insoluble and thus poorly bioavailable. To avoid this problem, nanotechnology for drug delivery has gained much interest as a way to improve the solubility problems. Nano refers to particles size range of 1-1000 nm. The reduction of drug particles into the submicron range leads to a significant increase in the dissolution rate and therefore enhances bioavailability. Nanosuspensions are part of nanotechnology. This interacts with the body at subcellular (i.e., molecular) scales with a high degree of specificity and can be potentially translated into targeted cellular and tissue-specific clinical applications designed to achieve maximal therapeutic efficacy with minimal side effects. Production of drugs as nanosuspensions can be developed for drug delivery systems as an oral formulation and nonoral administration. Here, this review describes the methods of pharmaceutical nanosuspension production including advantages and disadvantages, potential benefits, characterization tests, and pharmaceutical applications in drug delivery.
机译:如今,从药物发现计划中产生的新候选药物中,很大一部分是水不溶性的,因此生物利用度很差。为了避免这个问题,作为改善溶解度问题的一种方法,用于药物递送的纳米技术引起了很多兴趣。纳米是指1-1000 nm的粒径范围。药物颗粒减少到亚微米范围会导致溶出速率显着增加,因此提高了生物利用度。纳米悬浮液是纳米技术的一部分。这以高度的特异性在亚细胞(即分子)尺度上与机体相互作用,并且可以潜在地转化为旨在实现最大的治疗功效和最小的副作用的靶向细胞和组织特异性临床应用。可以将药物制成纳米悬浮液,用于口服给药和非口服给药的药物递送系统。在这里,这篇综述描述了药物纳米悬浮液的生产方法,包括优点和缺点,潜在的好处,表征测试以及药物在药物输送中的应用。

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  • 来源
    《Journal of nanotechnology》 |2013年第2013期|5.1-5.12|共12页
  • 作者单位

    Department of Pharmacy, Stamford University Bangladesh, 51 Siddeswari Road, Dhaka 1217, Bangladesh;

    Department of Pharmacy, Stamford University Bangladesh, 51 Siddeswari Road, Dhaka 1217, Bangladesh;

    Department of Pharmacy, Stamford University Bangladesh, 51 Siddeswari Road, Dhaka 1217, Bangladesh;

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