首页> 外文会议>Bioceramics 23 >Dissolution Medium Responsive Simvastatin Release from Biodegradable Apatite Cements Drug Delivery System, - The Therapeutically Effect and Their Histology in Osteoporosis Rats
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Dissolution Medium Responsive Simvastatin Release from Biodegradable Apatite Cements Drug Delivery System, - The Therapeutically Effect and Their Histology in Osteoporosis Rats

机译:从可生物降解的磷灰石水泥释药系统释放溶解性介质响应性辛伐他汀的研究-骨质疏松大鼠的治疗效果及其组织学

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A biodegradable drug delivery system was established using an apatite cement containing simvastatin. The in-vitro drug release from apatite with lower-crystallinity was investigated under simulated osteoblast and osteoclast conditions (SOB and SOC). Apatite cement containing 6% simvastatin had lower crystallinity as the same as natural bone. In-vitro drug release tests were performed under SOB in simulated body fluid (pH 7.8), and then under SOC in acetate buffer (pH4.5) at 37.0- C, and the process repeated twice. The device had lower drug release rates under SOB, but significantly higher rates under SOC. The simvastatin release rate was 15 times higher under SOC than SOB. The device showed dissolution medium responsive drug release. After implantation of the APC containing simvastatin in osteoporosis rats, the bone mineral density was evaluated by the X-ray computed tomography. The result indicated that the bone mineral density of APC implanted rat was significantly higher than that of control diseased.
机译:使用包含辛伐他汀的磷灰石水泥建立了可生物降解的药物输送系统。在模拟成骨细胞和破骨细胞条件下(SOB和SOC)研究了结晶度较低的磷灰石的体外药物释放。含6%辛伐他汀的磷灰石水泥的结晶度与天然骨相同。在SOB下在模拟体液(pH 7.8)中进行体外药物释放测试,然后在37.0-C的醋酸盐缓冲液(pH4.5)中在SOC下进行测试,然后重复该过程两次。该设备在SOB下的药物释放速率较低,但在SOC下的药物释放速率则明显较高。 SOC下辛伐他汀的释放速率比SOB高15倍。该装置显示出溶解介质响应性药物释放。在骨质疏松症大鼠中植入含辛伐他汀的APC后,通过X射线计算机断层摄影术评估骨矿物质密度。结果表明,植入APC的大鼠的骨矿物质密度显着高于对照组。

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