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Nanocelluloses: Sources Pretreatment Isolations Modification and Its Application as the Drug Carriers

机译:纳米纤维素:来源预处理分离修饰及其作为药物载体的应用

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摘要

The ‘Back-to-nature’ concept has currently been adopted intensively in various industries, especially the pharmaceutical industry. In the past few decades, the overuse of synthetic chemicals has caused severe damage to the environment and ecosystem. One class of natural materials developed to substitute artificial chemicals in the pharmaceutical industries is the natural polymers, including cellulose and its derivatives. The development of nanocelluloses as nanocarriers in drug delivery systems has reached an advanced stage. Cellulose nanofiber (CNF), nanocrystal cellulose (NCC), and bacterial nanocellulose (BC) are the most common nanocellulose used as nanocarriers in drug delivery systems. Modification and functionalization using various processes and chemicals have been carried out to increase the adsorption and drug delivery performance of nanocellulose. Nanocellulose may be attached to the drug by physical interaction or chemical functionalization for covalent drug binding. Current development of nanocarrier formulations such as surfactant nanocellulose, ultra-lightweight porous materials, hydrogel, polyelectrolytes, and inorganic hybridizations has advanced to enable the construction of stimuli-responsive and specific recognition characteristics. Thus, an opportunity has emerged to develop a new generation of nanocellulose-based carriers that can modulate the drug conveyance for diverse drug characteristics. This review provides insights into selecting appropriate nanocellulose-based hybrid materials and the available modification routes to achieve satisfactory carrier performance and briefly discusses the essential criteria to achieve high-quality nanocellulose.
机译:“背对自然”概念目前在各个行业中集中采用,尤其是制药行业。在过去的几十年里,过度使用的合成化学品对环境和生态系统造成严重损害。在制药行业替代人造化学物质的一类自然材料是天然聚合物,包括纤维素及其衍生物。作为药物递送系统中纳米载体的纳米纤维素的发展已达到高级阶段。纤维素纳米纤维(CNF),纳米晶纤维素(NCC)和细菌纳米纤维素(BC)是用作药物递送系统中的纳米载体的最常见的纳米纤维素。已经进行了使用各种方法和化学品的改性和官能化以增加纳米纤维素的吸附和药物递送性能。纳米纤维素可以通过物理相互作用或化学官能化与共价药物结合的化学官能化连接。目前纳米载体制剂如表面活性剂纳米纤维素,超轻质多孔材料,水凝胶,聚电解质和无机杂交的制剂,使得能够构建刺激响应性和特定识别特征。因此,有机会开发了一种新一代纳米纤维素的载体,可以调节用于各种药物特征的药物传送。本综述提供了选择适当的基于纳米纤维素的混合材料和可用的修改途径,以实现令人满意的载体性能,并简要讨论实现高质量纳米纤维素的基本标准。

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