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Chitosan nanoparticles: A survey of preparation methods

机译:壳聚糖纳米颗粒:制备方法概述

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摘要

The application of macromolecules in therapy is frequently hindered by stability and/or permeation issues. These limitations have been addressed by the pharmaceutical industry through the development of suitable noninjectable drug carriers. In this context, nanoparticles have emerged as one of the most exciting tools due to the increased surface-to-volume ratio, which provides an intimate interaction with epithelial surfaces. Nanoparticles further enable the encapsulated molecules to retain their biological activity, from the production steps to the final release. Chitosan has reached a prominent position as carrier-forming material, as diverse methods can be applied to produce nanoparticles using that excipient. These involve either hydrophilic or lipophilic environments that generally result in mild conditions or aggressive and time-consuming processes, respectively. In this review, a detailed description of methods used to produce chitosan nanocarriers is provided, accompanied by illustrative schemes of the procedures. The emphasis is on the variables reported to affect the final properties of the vehicles.
机译:大分子在治疗中的应用经常受到稳定性和/或渗透性问题的阻碍。这些局限性已由制药工业通过开发合适的不可注射药物载体来解决。在这种情况下,由于表面积与体积比的增加,纳米颗粒已成为最令人兴奋的工具之一,从而提供了与上皮表面的紧密相互作用。从生产步骤到最终释放,纳米粒子还使被包封的分子能够保留其生物活性。壳聚糖作为载体形成材料已经占据了突出的位置,因为使用该赋形剂可以采用多种方法生产纳米颗粒。这些涉及亲水性或亲脂性环境,它们通常分别导致温和的条件或侵蚀性和费时的过程。在这篇综述中,提供了用于生产壳聚糖纳米载体的方法的详细说明,并附有程序的说明性方案。重点是所报告的影响车辆最终性能的变量。

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