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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >A novel method to measure cryoprotectant permeation into intact articular cartilage.
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A novel method to measure cryoprotectant permeation into intact articular cartilage.

机译:一种测量防冻剂渗透到完整关节软骨中的新方法。

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Successful cryopreservation of articular cartilage (AC) could improve clinical results of osteochondral allografting and provide a useful treatment alternative for large cartilage defects. However, successful cartilage cryopreservation is limited by the time required for cryoprotective agent (CPA) permeation into the matrix and high CPA toxicity. This study describes a novel, practical method to examine the time-dependent permeation of CPAs [dimethyl sulfoxide (DMSO) and propylene glycol (PG)] into intact porcine AC. Dowels of porcine AC (10 mm diameter) were immersed in solutions containing high concentrations of each CPA for different times (0, 15, 30, 60 min, 3, 6, and 24 h) at three temperatures (4, 22, and 37 degrees C), with and without cartilage attachment to bone. The cartilage was isolated and the amount of cryoprotective agent within the matrix was determined. The results demonstrated a sharp rise in the CPA concentration within 15-30 min exposure to DMSO and PG. The concentration plateaued between 3 and 6 h of exposure at a concentration approximately 88-99% of the external concentration (6.8 M). This observation was temperature-dependent with slower permeation at lower temperatures. This study demonstrated the effectiveness of a novel technique to measure CPA permeation into intact AC, and describes permeation kinetics of two common CPAs into intact porcine AC.
机译:成功地冷冻保存关节软骨(AC)可以改善同种异体骨软骨移植的临床效果,并为大软骨缺损提供有用的治疗选择。但是,成功进行软骨冷冻保存受到冷冻保护剂(CPA)渗透到基质中所需的时间以及高CPA毒性的限制。这项研究描述了一种新颖,实用的方法来检查CPA [二甲基亚砜(DMSO)和丙二醇(PG)]随时间的渗透到完整的猪AC中。在三个温度(4、22和37)下,将猪AC销钉(直径为10 mm)浸入含有高浓度每种CPA的溶液中不同时间(0、15、30、60分钟,3、6和24小时)摄氏度),有或没有软骨附着在骨骼上。分离软骨并确定基质内冷冻保护剂的量。结果表明,在暴露于DMSO和PG的15-30分钟内,CPA浓度急剧上升。浓度在暴露3至6小时之间达到稳定,浓度约为外部浓度(6.8 M)的88-99%。该观察是温度依赖性的,在较低温度下渗透较慢。这项研究证明了测量CPA渗透至完整AC中的新技术的有效性,并描述了两种常见CPA渗透至完整猪AC中的渗透动力学。

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