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Non-invasive screening method for simultaneous evaluation of in vivo growth factor release profiles from multiple ectopic bone tissue engineering implants

机译:同时评估多个异位骨组织工程植入物中体内生长因子释放曲线的非侵入性筛选方法

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摘要

The purpose of this study was to develop and validate a screening method based on scintillation probes for the simultaneous evaluation of in vivo growth factor release profiles of multiple implants in the same animal. First, we characterized the scintillation probes in a series of in vitro experiments to optimize the accuracy of the measurement setup. The scintillation probes were found to have a strong geometric dependence and experience saturation effects at high activities. In vitro simulation of 4 subcutaneous limb implants in a rat showed minimal interference of surrounding implants on local measurements at close to parallel positioning of the probes. These characteristics were taken into consideration for the design of the probe setup and in vivo experiment. The measurement setup was then validated in a rat subcutaneous implantation model using 4 different sustained release carriers loaded with 125I-BMP-2 per animal. The implants were removed after 42 or 84 days of implantation, for comparison of the non-invasive method to ex-vivo radioisotope counting. The non-invasive method demonstrated a good correlation with the ex-vivo counting method at both time-points of all 4 carriers. Overall, this study showed that scintillation probes could be successfully used for paired measurement of 4 release profiles with minimal interference of the surrounding implants, and may find use as non-invasive screening tools for various drug delivery applications.
机译:这项研究的目的是开发和验证一种基于闪烁探针的筛选方法,用于同时评估同一只动物中多个植入物的体内生长因子释放曲线。首先,我们在一系列体外实验中对闪烁探针进行了表征,以优化测量设置的准确性。发现闪烁探针具有很强的几何依赖性,并且在高活动度时会遇到饱和效应。在大鼠中对4种皮下肢体植入物进行的体外模拟显示,在接近探针平行定位的情况下,局部植入物对周围植入物的干扰最小。在设计探针设置和体内实验时要考虑这些特性。然后在大鼠皮下植入模型中使用每只动物装载4种不同的缓释载体(分别装有 125 I-BMP-2)验证测量设置。植入42或84天后将植入物取出,以比较非侵入性方法与离体放射性同位素计数。在所有4个携带者的两个时间点上,非侵入性方法均与离体计数方法表现出良好的相关性。总体而言,这项研究表明,闪烁探针可以成功地用于4种释放曲线的配对测量,而对周围植入物的干扰最小,并且可以用作各种药物输送应用的非侵入性筛选工具。

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