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Antibiotic release from biodegradable PHBV microparticles.

机译:从可生物降解的PHBV微粒释放抗生素。

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摘要

For the treatment of periodontal diseases, design of a controlled release system seemed very appropriate for an effective, long term result. In this study a novel, biodegradable microbial polyester, poly(3-hydroxybutyrate-co-3-hydroxyvalerate), PHBV of various valerate contents containing a well established antibiotic, tetracycline, known to be effective against many of the periodontal disease related microorganisms, was used in the construction of a controlled release system. Tetracycline was loaded in the PHBV microspheres and microcapsules both in its acidic (TC) and in neutral form (TCN). Microcapsules of PHBV were prepared under different conditions using w/o/w double emulsion and their properties such as encapsulation efficiency, loading, release characteristics, and morphological properties were investigated. It was found that concentration of emulsifiers polyvinyl alcohol (PVA) and gelatin (varied between 0-4%) influenced the encapsulation efficiency appreciably. In order to increase encapsulation efficiency (from the obtained range of 18.1-30.1%) and slow down the release of the highly soluble tetracycline.HCl, it was neutralized with NaOH. Encapsulation efficiency of neutralized tetracycline was much higher (51.9-65.3%) due to the insoluble form of the drug used during encapsulation. The release behaviour of neither of the drugs was found to be of zero order. Rather the trends fitted reasonably well to Higuchi's approach for release from spherical micropheres. Biodegradability was not an appreciable parameter in the release from microcapsules because release was complete before any signs of degradation were observed.
机译:对于牙周疾病的治疗,控释系统的设计似乎非常适合获得长期有效的结果。在这项研究中,一种新型的,可生物降解的微生物聚酯,聚(3-羟基丁酸酯-co-3-羟基戊酸酯),各种戊酸酯含量的PHBV含有公认的抗生素四环素,已知对许多与牙周疾病相关的微生物均有效。用于构建控释系统。将四环素以其酸性(TC)和中性形式(TCN)装入PHBV微球和微囊中。用w / o / w双重乳液在不同条件下制备PHBV微胶囊,并研究了它们的包封效率,载量,释放特性和形态学性质。发现乳化剂聚乙烯醇(PVA)和明胶的浓度(0-4%之间变化)显着影响包封效率。为了提高包封效率(从18.1-30.1%的获得范围)并减缓高度溶解的四环素.HCl的释放,将其用NaOH中和。由于在封装过程中所用药物的不溶性形式,中和的四环素的封装效率要高得多(51.9-65.3%)。发现这两种药物的释放行为均为零级。相反,这种趋势与Higuchi从球形微球中释放出来的方法相当吻合。生物降解性不是从微胶囊释放的可观参数,因为在观察到任何降解迹象之前释放已经完成。

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