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Polysaccharide-based self-assembling nanohydrogels: An overview on 25-years research on pullulan

机译:基于多糖的自组装纳米水凝胶:对普鲁兰多糖25年研究的概述

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The aim of this overview is to review the evolution of the studies carried out, during more than 25 years, on nanohydrogels obtained by self-assembling of pullulan (PUL) using several hydrophobization strategies. After the first publications, mainly devoted to the preparation and characterization of PUL nanogels, a remarkable number of studies demonstrated how wide can be the field of applications within the main topic of biopharmaceutics. Numerous hydrophilic and lipophilic drugs were entrapped in the nanogel networks, consequently PUL nanogels have been proposed as delivery systems for single drugs and for combination therapies which allowed improvements of pharmacological activities and patient compliance. Furthermore, the large amount of water content allowed loading also proteins which could maintain their native structure and properties. Stimuli-sensitive and stealth PUL nanogel formulations allowed improving the performances of antitumor drugs. These nanohydrogels have also been studied for imaging techniques and for vaccines to be administered by injection and by mucosa( application. The studies on PUL nanogels are still in progress and the perspectives for future researches are also addressed. (C) 2015 Elsevier B.V. All rights reserved.
机译:本概述的目的是回顾25年来对通过使用多种疏水化策略自组装支链淀粉(PUL)获得的纳米水凝胶进行的研究的进展。在第一批主要致力于PUL纳米凝胶的制备和表征的出版物发表之后,大量研究证明了在生物制药这一主要主题内应用领域的广泛性。许多亲水性和亲脂性药物被包裹在纳米凝胶网络中,因此,PUL纳米凝胶已被提议作为单一药物和联合疗法的输送系统,从而可以改善药理活性和患者依从性。此外,大量的水分使蛋白质也可以负载,从而可以保持其天然结构和特性。刺激敏感和隐身的PUL纳米凝胶制剂可以改善抗肿瘤药物的性能。这些纳米水凝胶也已经被研究用于成像技术以及通过注射和粘膜施用的疫苗(应用)。关于PUL纳米凝胶的研究仍在进行中,并提出了未来研究的前景。(C)2015 Elsevier BV版权所有保留。

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