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首页> 外文期刊>Bioconjugate Chemistry >Inhibition of Octreotide Acylation Inside PLGA Microspheres by Derivatization of the Amines of the Peptide with a Self-Immolative Protecting Group
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Inhibition of Octreotide Acylation Inside PLGA Microspheres by Derivatization of the Amines of the Peptide with a Self-Immolative Protecting Group

机译:具有自消灭性保护基团的肽的胺衍生化抑制PLGA微球内奥曲肽酰化

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摘要

Acylation of biopharmaceuticals such as peptides has been identified as a major obstacle for the successful development of PLGA controlled release formulations. The purpose of this study was to develop a method to inhibit peptide acylation in poly(D,L-lactide-co-glycolide) (PLGA) formulations by reversibly and temporarily blocking the amine groups of a model peptide (octreotide) with a self-immolative protecting group (SIP), O-4-nitrophenyl-O'-4-acetoxybenzyl carbonate. The octreotide with two self-immolative protecting groups (OctdiSIP) on the N-terminus and lysine side chain was synthesized by reaction of the peptide with O-4-nitrophenyl-O'4-acetoxybenzyl carbonate, purified by preparative RP-HPLC and characterized by mass spectrometry. Degradation studies of OctdiSIP in aqueous solutions of different pH values showed that protected octreotide was stable at low pH (pH 5) whereas the protecting group was eliminated at physiological pH, especially in the presence of an esterase, to generate native octreotide. OctdiSIP encapsulated in PLGA microspheres, prepared using a double emulsion solvent evaporation method, showed substantial inhibition of acylation as compared to the unprotected octreotide: 52.5% of unprotected octreotide was acylated after 50 days incubation of microspheres in PBS pH 7.4 at 37 degrees C, whereas OctdiSIP showed only 5.0% acylation in the same time frame. In conclusion, the incorporation of self-immolative protection groups provides a viable approach for inhibition of acylation of peptides in PLGA delivery systems.
机译:肽等生物药物的酰化作用已被确定为成功开发PLGA控释制剂的主要障碍。这项研究的目的是开发一种方法,该方法通过可逆地和暂时性地用自保护性阻断模型肽(奥曲肽)的胺基来抑制聚(D,L-丙交酯-共-乙交酯)(PLGA)制剂中的肽酰化。亚氨基保护基(SIP),碳酸O-4-硝基苯基-O′-4-乙酰氧基苄基。通过使肽与碳酸O-4-硝基苯基-O'4-乙酰氧基苄基酯反应,合成N末端和赖氨酸侧链上具有两个自消极保护基(OctdiSIP)的奥曲肽,并通过制备型RP-HPLC进行纯化,并进行表征通过质谱分析。在不同pH值的水溶液中对OctdiSIP的降解研究表明,受保护的奥曲肽在低pH(pH 5)下稳定,而保护基团在生理pH下被消除,尤其是在存在酯酶的情况下,生成天然的奥曲肽。与未保护的奥曲肽相比,用双乳液溶剂蒸发法制备的封装在PLGA微球中的OctdiSIP表现出了显着的酰化抑制作用:在37°C的PBS pH 7.4中孵育50天后,未保护的奥曲肽的酰化率为52.5%。在同一时间范围内,OctdiSIP的酰化率仅为5.0%。总之,自我消灭性保护基的掺入为抑制PLGA递送系统中肽的酰化提供了可行的方法。

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