Analysis of Stored Osteochondral Allografts at the Time of Surgical Implantation

尸体痉挛 软骨 软骨细胞 细胞外基质 糖胺聚糖 活力测定 组织库 男科 基质(化学分析) 医学 关节软骨 生物医学工程 外科 解剖 病理 细胞 细胞生物学 化学 生物 骨关节炎 替代医学 生物化学 色谱法
作者
R. T. Allen,Catherine Robertson,Andrew T. Pennock,William D. Bugbee,Frederick L. Harwood,Van W. Wong,Albert C. Chen,Robert L. Sah,David Amiel
出处
期刊:American Journal of Sports Medicine [SAGE]
卷期号:33 (10): 1479-1484 被引量:106
标识
DOI:10.1177/0363546505275010
摘要

To date, the morphological, biochemical, and biomechanical characteristics of articular cartilage in osteochondral allografts that have been stored have not been fully described.Osteochondral allografts procured and stored commercially for a standard period as determined by tissue banking protocol will have compromised chondrocyte viability but preserved extracellular matrix quality.Controlled laboratory study.Unused cartilage from 16 consecutive osteochondral allografts was sampled during surgery after tissue bank processing and storage. Ten grafts were examined for cell viability and viable cell density using confocal microscopy, proteoglycan synthesis via 35SO4 uptake, and glycosaminoglycan content and compared with fresh cadaveric articular cartilage. Biomechanical assessment was performed on the 6 remaining grafts by measuring the indentation stiffness of the cartilage.The mean storage time for the transplanted specimens was 20.3 +/- 2.9 days. Chondrocyte viability, viable cell density, and 35SO4 uptake were significantly lower in allografts at implantation when compared to fresh, unstored controls, whereas matrix characteristics, specifically glycosaminoglycan content and biomechanical measures, were unchanged. In addition, chondrocyte viability in the stored allografts was preferentially decreased in the superficial zone of cartilage.Human osteochondral allografts stored for a standard period (approximately 3 weeks) before implantation undergo decreases in cell viability, especially in the critically important superficial zone, as well as in cell density and metabolic activity, whereas matrix and biomechanical characteristics appear conserved. The exact clinical significance of these findings, however, is unknown, as there are no prospective studies examining clinical outcomes using grafts stored for extended periods.Surgeons who perform this procedure should understand the cartilage characteristics of the graft after 21 days of commercial storage in serum-free media.
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