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冷藏储存1个月后低温对软骨细胞活力和软骨基质通透性的影响。

Impact of Hypothermia upon Chondrocyte Viability and Cartilage Matrix Permeability after 1 Month of Refrigerated Storage.

作者信息

Brockbank Kelvin G M, Rahn Eliza, Wright Gregory J, Chen Zhenzhen, Yao Hai

机构信息

Cell & Tissue Systems, Inc., North Charleston, SC, USA.

出版信息

Transfus Med Hemother. 2011 Dec;38(6):387-392. doi: 10.1159/000334595. Epub 2011 Nov 14.

Abstract

BACKGROUND

The purpose of this research was to assess the extracellular matrix and chondrocytes of articular cartilage during refrigerated storage and to determine whether changes could be detected in the time frame that cartilage is stored for clinical use. MATHODS: Porcine cartilage was stored as either bisected femoral heads with bone attached or plugs without the underlying bone in culture medium with fetal bovine serum for 1 month at 4 °C. Metabolic activity was tested using a resazurin reduction method on intact tissue and viable cell recovery after enzymatic tissue digestion at each time point. Cartilage plug permeability was evaluated by measuring electrical conductivity. RESULTS: Storage in culture medium provided good cartilage viability and metabolic function for 7 days; however, significant changes were observed in femoral heads (p < 0.05). All mean chondrocyte assessment values were <30% of fresh controls at 28 days. Cartilage plugs tended to perform better after 7 days of storage than the femoral heads and retained significantly higher metabolic activity (mean = 94.5% vs. 70.5%; p < 0.05). Cartilage plugs demonstrated consistent changes in electrical conductivity after 28 days of storage (p < 0.05). CONCLUSION: Refrigerated storage of cartilage results in both loss of chondrocyte viability and matrix permeability.

摘要

背景

本研究的目的是评估关节软骨在冷藏储存期间的细胞外基质和软骨细胞,并确定在软骨储存以供临床使用的时间段内是否能检测到变化。方法:将猪软骨以附有骨头的股骨头对半切开或不带下层骨头的软骨块的形式,在含有胎牛血清的培养基中于4℃储存1个月。在每个时间点,使用刃天青还原法对完整组织进行代谢活性测试,并在酶解组织后测试活细胞回收率。通过测量电导率评估软骨块的通透性。结果:在培养基中储存7天时软骨具有良好的活力和代谢功能;然而,在股骨头中观察到了显著变化(p<0.05)。在28天时,所有软骨细胞评估值的平均值均低于新鲜对照的30%。储存7天后,软骨块的表现往往优于股骨头,并保持显著更高的代谢活性(平均值分别为94.5%和70.5%;p<0.05)。储存28天后,软骨块的电导率出现了一致的变化(p<0.05)。结论:软骨的冷藏储存会导致软骨细胞活力丧失和基质通透性改变。

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