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Development of a novel DDS for site-specific PEGylated proteins

机译:针对位点特异性聚乙二醇化蛋白的新型DDS的开发

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Because of the shifted focus in life science research from genome analyses to genetic and protein function analyses, we now know functions of numerous proteins. These analyses, including those of newly identified proteins, are expected to contribute to the identification of proteins of therapeutic value in various diseases. Consequently, pharmacoproteomic-based drug discovery and development of protein therapies attracted a great deal of attention in recent years. Clinical applications of most of these proteins are, however, limited because of their unexpectedly low therapeutic effects, resulting from the proteolytic degradation in vivo followed by rapid removal from the circulatory system. Therefore, frequent administration of excessively high dose of a protein is required to observe its therapeutic effect in vivo. This often results in impaired homeostasis in vivo and leads to severe adverse effects. To overcome these problems, we have devised a method for chemical modification of proteins with polyethylene glycol (PEGylation) and other water-soluble polymers. In addition, we have established a method for creating functional mutant proteins (muteins) with desired properties, and developed a site-specific polymer-conjugation method to further improve their therapeutic potency. In this review, we are introducing our original protein-drug innovation system mentioned above.
机译:由于生命科学研究的重点从基因组分析转移到遗传和蛋白质功能分析,因此我们现在知道许多蛋白质的功能。这些分析,包括新鉴定的蛋白质的分析,有望有助于鉴定具有多种疾病治疗价值的蛋白质。因此,近年来,基于药代动力学的药物发现和蛋白质疗法的开发引起了广泛的关注。然而,由于这些蛋白出乎意料地低的治疗效果,这些蛋白在临床上的应用受到限制,这是由于体内蛋白水解降解,随后迅速从循环系统中去除而引起的。因此,需要频繁给予过高剂量的蛋白质以观察其体内治疗效果。这通常会导致体内体内稳态受损,并导致严重的不良反应。为了克服这些问题,我们设计了一种用聚乙二醇(PEG化)和其他水溶性聚合物对蛋白质进行化学修饰的方法。此外,我们已经建立了一种创建具有所需特性的功能性突变蛋白(突变蛋白)的方法,并开发了一种位点特异性的聚合物结合方法来进一步提高其治疗效力。在这篇综述中,我们将介绍我们上面提到的原始蛋白质-药物创新系统。

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