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Evaluation of the Release Kinetics of a Pharmacologically Active Substance from Model Intra-Articular Implants Replacing the Cruciate Ligaments of the Knee

机译:模型关节内植入物替代膝关节十字韧带的药理活性物质释放动力学的评价

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摘要

Implants are readily applied as a convenient method of therapy. There is great interest in the prolonged release of active substances from implants. The objective of this work was to evaluate the dissolution kinetics of steroidal anti-inflammatory preparation (SAP) released from novel implants, and to test the influence of the technology on SAP release kinetics. The proposed long-acting preparations may overcome difficulties resulting from repeated injections and often visits to ambulatory clinic, as the stabilizing function of the artificial ligament would be enriched with pharmacological activity. The potential advantages provided by the new coatings of knee implants include the continuous, sustained, and prolonged release of an active substance. The study was carried out using a modified United States Pharmacopoeia (USP) apparatus 4. The amount of SAP was measured spectroscopically. It was revealed that the transport of the drug was mainly a diffusion process. The drug release kinetics was analyzed using zero-, first-, and second-order kinetics as well as Korsmeyer-Peppas, Higuchi, and Hixon-Crowell models. The highest values of the release rate constants were k0 = (7.49 ± 0.05) × 10−5 mg × min−1, k1 = (6.93 ± 0.05) × 10−6 min−1, and k2 = (7.70 ± 0.05) × 10−7 mg−1 × min−1 as calculated according to zero-, first-, and second-order kinetics equations, respectively. The values of the rate constants obtained for the slowest process were k0 = (3.63 ± 0.06) × 10−5 mg × min−1, k1 = (2.50 ± 0.03) × 10−6 min−1, and k2 = (2.80 ± 0.03) × 10−7 mg−1 × min−1. They may suggest the possibility of sustained release of betamethasone from the system. Due to the statistical analysis, differences were observed between most of the studied implants. Incubation, temperature, time of stabilization of layers, and the method of SAP deposition on the matrix affected the drug release.
机译:植入物很容易被用作一种方便的治疗方法。活性物质从植入物中的延长释放引起人们极大的兴趣。这项工作的目的是评估新型植入物释放的甾体抗炎制剂(SAP)的溶解动力学,并测试该技术对SAP释放动力学的影响。所提出的长效制剂可以克服由于重复注射以及经常去门诊诊所而引起的困难,因为人造韧带的稳定功能将具有丰富的药理活性。新的膝盖植入物涂层提供的潜在优势包括活性物质的连续,持续和延长释放。该研究是使用改良的美国药典(USP)仪器4进行的。SAP的含量采用分光镜测定。已经发现,药物的运输主要是扩散过程。使用零阶,一阶和二阶动力学以及Korsmeyer-Peppas,Higuchi和Hixon-Crowell模型分析了药物释放动力学。释放速率常数的最大值为k0 =(7.49±0.05)×10 -5 mg×min -1 ,k1 =(6.93±0.05)×10 < sup> -6 min -1 ,并且k2 =(7.70±0.05)×10 −7 mg -1 ×min -1 分别根据零阶,一阶和二阶动力学方程计算得出。最慢过程获得的速率常数的值是k0 =(3.63±0.06)×10 -5 mg×min -1 ,k1 =(2.50±0.03) ×10 −6 min −1 ,k2 =(2.80±0.03)×10 −7 mg -1 ×min -1 。他们可能暗示从系统中持续释放倍他米松的可能性。由于统计分析,在大多数研究的植入物之间观察到差异。孵育,温度,层的稳定时间以及SAP在基质上的沉积方法都会影响药物释放。

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