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共溶剂对原位可生物降解聚合物植入物中降钙素多肽控释的影响。

Effect of co-solvents on the controlled release of calcitonin polypeptide from in situ biodegradable polymer implants.

作者信息

Prabhu Sunil, Tran Lan P, Betageri Guru V

机构信息

College of Pharmacy, Western University of Health Sciences, Pomona, California 91766-1854, USA.

出版信息

Drug Deliv. 2005 Nov-Dec;12(6):393-8. doi: 10.1080/10717540590968873.

Abstract

The objective of this study was to design an in situ biodegradable polymer implant controlled-release drug delivery system, using novel combinations of co-solvents and a model polypeptide, calcitonin (CT), and to assess the release of drug as a function of these co-solvents. Formulations were prepared by dissolving/ suspending CT polypeptide in poly-(lactic acid) (PLA) polymer solutions/suspensions containing combinations of a hydrophobic (benzyl benzoate, BB) and a hydrophilic (benzyl alcohol, BA) solvent. The CT-PLA mixtures were each injected into test tubes containing phosphate buffered saline solution to form the in situ implant and sampling was conducted over a 28-day period. The samples were analyzed for drug content using a modified Lowry protein assay procedure. Cumulative drug release demonstrated a rank-order correlation depending on the amount of the hydrophobic (BB) and hydrophilic (BA) solvents within each system. Increasing the amounts of the hydrophobic solvent, BB, in formulations demonstrated a 1.2-4.4-fold increase in CT release. Stability studies of all formulations over a 4-month period showed progressive increase in degradation of the CT polypeptide, especially at 37 degrees C, but a slower degradation pattern prevailed at 4 degrees and 20 degrees C. Differential scanning calorimetric studies revealed a homogenous mixture of drug in the polymer matrix. Overall, these studies demonstrated the feasibility of designing controlled release systems capable of releasing a polypeptide drug as a function of influence of different co-solvent combinations.

摘要

本研究的目的是设计一种原位可生物降解聚合物植入物控释给药系统,使用新型共溶剂组合和一种模型多肽——降钙素(CT),并评估药物释放与这些共溶剂的关系。通过将CT多肽溶解/悬浮于含有疏水性(苯甲酸苄酯,BB)和亲水性(苯甲醇,BA)溶剂组合的聚乳酸(PLA)聚合物溶液/悬浮液中来制备制剂。将每种CT-PLA混合物注入含有磷酸盐缓冲盐溶液的试管中以形成原位植入物,并在28天内进行取样。使用改良的Lowry蛋白质测定法分析样品中的药物含量。累积药物释放显示出一种等级相关性,这取决于每个系统中疏水性(BB)和亲水性(BA)溶剂的量。在制剂中增加疏水性溶剂BB的量可使CT释放增加1.2至4.4倍。所有制剂在4个月期间的稳定性研究表明,CT多肽的降解逐渐增加,尤其是在37℃时,但在4℃和20℃时降解模式较慢。差示扫描量热法研究揭示了聚合物基质中药物的均匀混合物。总体而言,这些研究证明了设计能够根据不同共溶剂组合的影响释放多肽药物的控释系统的可行性。

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