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首页> 外文期刊>Expert opinion on drug delivery >Modulating antibody pharmacokinetics using hydrophilic polymers.
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Modulating antibody pharmacokinetics using hydrophilic polymers.

机译:使用亲水性聚合物调节抗体的药代动力学。

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INTRODUCTION: The use of hydrophilic polymers as a substitute for the Fc-domain in immuno- or non-immuno-based binding proteins is accelerating. Chemical PEGylation has led the way and is still the most advanced and clinically-approved approach. Hydrophilic polymers act by maintaining a flexible conformation and hydrogen bonding to a network of water molecules to acquire a larger hydrodynamic volume and apparent mass than their actual molecular mass suggest. The benefits are increased blood half-life and bioavailability, stability and reduced immunogenicity. In the case of PEG, there is also evidence of enhanced targeting and reduced side effects, but drawbacks include the fact that PEG is non-biodegradable. AREAS COVERED: This report reviews the state of the art for antibody PEGylation in terms of approaches and effects. Additionally, non-biological (such as N-(2-hydroxypropyl)methacrylamide) and potentially superior biological alternatives (such as polysialylation) are described, ending with recombinant approaches (such as hydrophilic peptides and glyco-engineering), which promise to circumvent the need for chemical modification altogether. EXPERT OPINION: The emergence of many small, antibody fragment-like mimics will drive the need for such technologies, and PEGylation is still the choice polymer due to its established use and track record. However, there will be a place for many alternative technologies if they can match the pharmacokinetics of PEG-conjugates and bring addition beneficial features such as easier production.
机译:简介:在基于免疫或非基于免疫的结合蛋白中,亲水性聚合物替代Fc结构域的应用正在加速发展。化学聚乙二醇化已引领了这一趋势,并且仍然是最先进和临床认可的方法。亲水性聚合物通过保持柔性构象和与水分子网络的氢键键合而起作用,以获得比其实际分子质量更大的流体力学体积和表观质量。好处是增加血液半衰期和生物利用度,稳定性并降低免疫原性。在PEG的情况下,也有增加靶向性和减少副作用的证据,但是缺点包括PEG不可生物降解的事实。涵盖的领域:本报告从方法和效果方面回顾了抗体PEG化的最新技术。此外,还介绍了非生物(例如N-(2-羟丙基)甲基丙烯酰胺)和潜在的更优生物替代品(例如聚唾液酸化),并以重组方法(例如亲水性肽和糖工程)结束,这些方法有望绕开完全需要化学修饰。专家意见:许多类似抗体片段的小型模拟物的出现将推动对此类技术的需求,而聚乙二醇化由于其已确立的用途和良好的记录而仍是首选聚合物。但是,如果有许多替代技术可以与PEG缀合物的药代动力学相匹配并带来其他有益功能(例如更容易生产),那么它们将占有一席之地。

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