首页> 外文期刊>International journal of peptide research and therapeutics >In silico structure modeling and comparative analysis of characterization properties of protein polymers useful for protein-based nano particulate drug delivery systems (NPDDS): A bioinformatics approach
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In silico structure modeling and comparative analysis of characterization properties of protein polymers useful for protein-based nano particulate drug delivery systems (NPDDS): A bioinformatics approach

机译:用于基于蛋白质的纳米颗粒药物递送系统(NPDDS)的蛋白质聚合物的计算机结构建模和表征特性的比较分析:一种生物信息学方法

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With an increasing interest in nanoparticulate delivery systems, there is a greater need to identify biomaterials that are biocompatible and safe for human applications. Protein polymers from animal and plant sources are promising materials for designing nanocarriers. Composition of the protein plays an important role for specific drug delivery applications such as drug release, targeting, and stimuli responsive drug release. An important issue in protein polymers is characteristics such as size, charge, and hydrophobicity may play a significant role in phagocytic uptake and initiating a subsequent immune response. This remains to be investigated systematically by analyzing factors that influence nanoparticle characteristics of protein and reduce phagocytic uptake and does not initiate immune response too. Although protein polymers are biodegradable, it is essential to ensure that there must not be premature enzymatic breakdown of the protein nanoparticles in the systemic circulation. Surface modification of the protein nanoparticles can be used to address this issue to propose the necessary modification in the surface of the protein would be great contribution in the nano particulate drug delivery systems (NPPDS). Of the various proteins, gelatin and albumin have been widely studied for drug delivery applications. Plant proteins are yet to be investigated widely for drug delivery applications so there is need to find out the plant proteins capable to act as nanoparticles. The commercial success of albumin-based nanoparticles has created an interest in other proteins. An increased understanding of the physicochemical properties coupled with the developments in rDNA technology will open up new opportunities for protein-based nanoparticulate systems. In the present studies several proteins currently useful for drug delivery system were structurally modeled and has been analyzed to propose the essential characteristics of protein for protein-based NPDDS.
机译:随着对纳米颗粒递送系统的日益增长的兴趣,越来越需要鉴定生物相容性和对人类应用安全的生物材料。动植物来源的蛋白质聚合物是用于设计纳米载体的有前途的材料。蛋白质的组成对于特定的药物递送应用(例如药物释放,靶向和刺激反应性药物释放)起着重要作用。蛋白质聚合物中的一个重要问题是诸如大小,电荷和疏水性之类的特性可能在吞噬细胞摄取和引发随后的免疫反应中起重要作用。这仍需通过分析影响蛋白质纳米颗粒特征并减少吞噬细胞摄取并且也不会引发免疫反应的因素进行系统研究。尽管蛋白质聚合物是可生物降解的,但必须确保在全身循环中蛋白质纳米颗粒不得过早地酶促分解。蛋白质纳米颗粒的表面修饰可用于解决该问题,以提出蛋白质表面的必要修饰将对纳米颗粒药物递送系统(NPPDS)做出巨大贡献。在各种蛋白质中,明胶和白蛋白已被广泛研究用于药物递送应用。植物蛋白尚待广泛研究以用于药物递送应用,因此需要找出能够充当纳米颗粒的植物蛋白。基于白蛋白的纳米颗粒的商业成功引起了对其他蛋白质的兴趣。对理化性质的进一步了解以及rDNA技术的发展将为基于蛋白质的纳米颗粒系统带来新的机遇。在本研究中,对目前可用于药物输送系统的几种蛋白质进行了结构建模,并进行了分析,以提出基于蛋白质的NPDDS蛋白质的基本特征。

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