Dion A, Langman M, Hall G, Filiaggi M
School of Biomedical Engineering, Dalhousie University, Halifax, Nova Scotia, Canada B3H 3J5.
Biomaterials. 2005 Dec;26(35):7276-85. doi: 10.1016/j.biomaterials.2005.05.072.
Calcium polyphosphate (CPP) antibiotic delivery matrices were prepared using a unique processing technique involving the exposure of antibiotic-loaded CPP pastes to high humidity for 0, 5, or 24 h. After the designated gelling period, samples were dried for a minimum of 24 h. At several time points out to 130 h, the elution medium was monitored for vancomycin, Ca2+ ion and ortho and poly phosphate release levels. Vancomycin activity was also assessed after 1, 24 and 130 h, while solution 31P-NMR was used to monitor changes in chain length within a 24 hr gelled VCM disc throughout the elution process. The gelling and drying process significantly reduced the rate of vancomycin release during the initial 2-4 h of elution, while extending the effective antibiotic release period by an additional 80 h. The mild conditions associated with matrix fabrication readily allowed for vancomycin incorporation within an environment that did not disrupt antibiotic activity. Throughout the elution process, all sample groups experienced considerable swelling followed by some apparent bulk erosion. Phosphate chain lysis was clearly observed by the end of the elution period. Generally, no strong or consistent correlation existed between matrix degradation and antibiotic release for the treatment groups investigated. An ability to delay antibiotic release using CPPs in conjunction with this protocol supports further investigations into the potential of this matrix as a localized drug delivery system.
采用一种独特的加工技术制备了聚磷酸钙(CPP)抗生素递送基质,该技术包括将负载抗生素的CPP糊剂暴露于高湿度环境中0、5或24小时。在指定的胶凝期后,将样品干燥至少24小时。在长达130小时的几个时间点,监测洗脱介质中万古霉素、Ca2+离子以及正磷酸盐和聚磷酸盐的释放水平。在1、24和130小时后还评估了万古霉素活性,同时使用溶液31P-NMR监测在整个洗脱过程中24小时胶凝的VCM圆盘中链长度的变化。胶凝和干燥过程显著降低了洗脱最初2-4小时内万古霉素的释放速率,同时将有效抗生素释放期延长了80小时。与基质制备相关的温和条件使得万古霉素能够在不破坏抗生素活性的环境中轻松掺入。在整个洗脱过程中,所有样品组都经历了相当程度的膨胀,随后出现了一些明显的整体侵蚀。在洗脱期结束时清楚地观察到了磷酸链裂解。一般来说,在所研究的治疗组中,基质降解与抗生素释放之间不存在强烈或一致的相关性。使用CPP结合该方案延迟抗生素释放的能力支持进一步研究这种基质作为局部给药系统的潜力。