首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Predictable and tunable half-life extension of therapeutic agents by controlled chemical release from macromolecular conjugates
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Predictable and tunable half-life extension of therapeutic agents by controlled chemical release from macromolecular conjugates

机译:通过从大分子缀合物中受控释放化学成分,可预测和调节治疗剂的半衰期

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Conjugation to macromolecular carriers is a proven strategy for improving the pharmacokinetics of drugs, with many stable polyethylene glycol conjugates having reached the market. Stable conjugates suffer several limitations: loss of drug potency due to conjugation, confining the drug to the extracellular space, and the requirement for a circulating conjugate. Current research is directed toward overcoming such limitations through releasable conjugates in which the drug is covalently linked to the carrier through a cleavable linker. Satisfactory linkers that provide predictable cleavage rates tunable over a wide time range that are useful for both circulating and noncirculattng conjugates are not yet available. We describe such conjugation linkers on the basis of a nonenzymatic β-elimination reaction with preprogrammed, highly tunable cleavage rates. A set of modular linkers is described that bears a succinimidyl carbonate group for attachment to an amine-containing drug or prodrug, an azido group for conjugation to the carrier, and a tunable modulator that controls the rate of p-eliminative cleavage. The linkers provide predictable, tunable release rates of ligands from macromolecular conjugates both in vitro and in vivo, with half-lives spanning from a range of hours to >1 y at physiological pH. A circulating PEG conjugate achieved a 56-fold half-life extension of the 39-aa peptide exenatide in rats, and a noncirculating s.c. hydrogel conjugate achieved a 150-fold extension. Using slow-cleaving linkers, the latter may provide a generic format for once-a-month dosage forms of potent drugs. The releasable linkers provide additional benefits that include lowering Cmax and pharmacokinetic coordination of drug combinations.
机译:与大分子载体结合是改善药物药代动力学的行之有效的策略,许多稳定的聚乙二醇结合物已投放市场。稳定的结合物有几个局限性:由于结合而使药物效力丧失,将药物限制在细胞外空间,以及需要循环结合物。当前的研究旨在通过可释放的缀合物克服这些限制,其中药物通过可裂解的接头共价连接至载体。尚无令人满意的接头,其提供可在较宽的时间范围内调节的可预测的切割速率,该切割速率可用于循环和非循环偶联物。我们在具有预编程的,高度可调的切割速率的非酶促β-消除反应的基础上描述了此类偶联连接子。描述了一组模块化接头,其带有用于连接至含胺药物或前药的碳酸琥珀酰亚胺基酯基,用于与载体偶联的叠氮基和控制p-消除裂解速率的可调节调节剂。接头在体外和体内均可提供可预测的,可调节的配体从大分子缀合物的释放速率,在生理pH下的半衰期为数小时至> 1 y。循环的PEG缀合物在大鼠中获得39-aa肽艾塞那肽的半衰期延长了56倍,而非循环的s.c.水凝胶结合物实现了150倍的延伸。使用慢速裂解接头,后者可以为强效药物每月一次的剂型提供通用形式。可释放的接头提供了其他好处,包括降低Cmax和药物组合的药代动力学协调。

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