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新型带有肽接头的葡聚糖-甲基泼尼松龙缀合物的合成及体外表征:接头长度对甲基泼尼松龙及其肽基中间体水解和酶促释放的影响

Synthesis and in vitro characterization of novel dextran-methylprednisolone conjugates with peptide linkers: effects of linker length on hydrolytic and enzymatic release of methylprednisolone and its peptidyl intermediates.

作者信息

Penugonda Suman, Kumar Anil, Agarwal Hitesh K, Parang Keykavous, Mehvar Reza

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, Texas Tech University Health Sciences Center, 1300 Coulter, Amarillo, Texas 79106, USA.

出版信息

J Pharm Sci. 2008 Jul;97(7):2649-64. doi: 10.1002/jps.21161.

Abstract

To control the rate of release of methylprednisolone (MP) in lysosomes, new dextran-MP conjugates with peptide linkers were synthesized and characterized. Methylprednisolone succinate (MPS) was attached to dextran 25 kDa using linkers with 1-5 Gly residues. The release characteristics of the conjugates in pH 4.0 and 7.4 buffers, blood, liver lysosomes, and various lysosomal proteinases were determined using a size-exclusion and/or a newly developed reversed-phase HPLC method capable of simultaneous quantitation of MP, MPS, and all five possible MPS-peptidyl intermediates. We synthesized conjugates with >or=90% purity and 6.9-9.5% (w/w) degree of MP substitution. The conjugates were stable at pH 4.0, but released MP and intact MPS-peptidyl intermediates in the pH 7.4 buffer and rat blood, with faster degradation rates for longer linkers. Rat lysosomal fractions degraded the conjugates to MP and all the possible intermediates also at a rate directly proportional to the length of the peptide. Whereas the degradation of the conjugates by cysteine peptidases (papain or cathepsin B) was relatively substantial, no degradation was observed in the presence of aspartic (cathepsin D) or serine (trypsin) proteinases, which do not cleave peptide bonds with Gly. These newly developed dextran conjugates of MP show promise for controlled delivery of MP in lysosomes.

摘要

为了控制甲基泼尼松龙(MP)在溶酶体中的释放速率,合成并表征了带有肽接头的新型葡聚糖-MP缀合物。使用含有1-5个甘氨酸残基的接头将琥珀酸甲基泼尼松龙(MPS)连接到25 kDa的葡聚糖上。使用尺寸排阻和/或新开发的反相高效液相色谱法测定缀合物在pH 4.0和7.4缓冲液、血液、肝溶酶体以及各种溶酶体蛋白酶中的释放特性,该方法能够同时定量MP、MPS和所有五种可能的MPS-肽基中间体。我们合成了纯度≥90%且MP取代度为6.9-9.5%(w/w)的缀合物。这些缀合物在pH 4.0时稳定,但在pH 7.4缓冲液和大鼠血液中释放MP和完整的MPS-肽基中间体,接头越长降解速率越快。大鼠溶酶体组分也以与肽长度成正比的速率将缀合物降解为MP和所有可能的中间体。虽然半胱氨酸蛋白酶(木瓜蛋白酶或组织蛋白酶B)对缀合物的降解相对显著,但在天冬氨酸(组织蛋白酶D)或丝氨酸(胰蛋白酶)蛋白酶存在下未观察到降解,因为它们不会切割与甘氨酸形成的肽键。这些新开发的MP葡聚糖缀合物有望在溶酶体中实现MP的可控递送。

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