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生物增强常见关节镜缝合术。

Biologic enhancement of a common arthroscopic suture.

机构信息

Department of Orthopaedic Surgery, University of Connecticut, Farmington, Connecticut 06034, USA.

出版信息

Arthroscopy. 2012 Mar;28(3):390-6. doi: 10.1016/j.arthro.2011.08.306. Epub 2011 Dec 9.

Abstract

PURPOSE

The purpose of this study was to investigate the in vitro effects of an arginine-glycine-aspartic acid (RGD) coating on a high-strength nonabsorbable polyester/polyethylene (PE/PEE) suture material commonly used in orthopaedic procedures.

METHODS

Human bone and tendon specimens were isolated and cultured. The cells were then plated in known densities in the presence of RGD-coated and uncoated PE/PEE suture and allowed to adhere for predetermined time periods. The RGD-coated and uncoated control sutures were then removed and assayed for cell osteoblast and tenocyte adhesion and proliferation.

RESULTS

The RGD-modified suture showed a statistically significant increase in both adhesion and proliferation of human tenocytes when compared with uncoated controls (P < .05).

CONCLUSIONS

The RGD peptide sequence can be effectively coupled with commercially available PE/PEE suture. RGD-coated suture is able to stimulate the adhesion and proliferation of human tenocyte cells in vitro, as well as withstand standard sterilization and storage conditions. Furthermore, the acid hydrolysis process did not affect the strength of the suture material.

CLINICAL RELEVANCE

RGD-modified suture materials have the potential to create favorable biologic responses when used in common orthopaedic procedures.

摘要

目的

本研究旨在研究一种精氨酸-甘氨酸-天冬氨酸(RGD)涂层对常用于骨科手术的高强度不可吸收聚酯/聚乙烯(PE/PEE)缝线材料的体外影响。

方法

分离并培养人骨和肌腱标本。然后,将细胞以已知密度接种在 RGD 涂层和未涂层的 PE/PEE 缝线存在的情况下,并允许其在预定的时间段内附着。然后去除 RGD 涂层和未涂层的对照缝线,并检测细胞成骨细胞和肌腱细胞的粘附和增殖。

结果

与未涂层对照相比,RGD 修饰缝线在人肌腱细胞的粘附和增殖方面均显示出统计学上的显著增加(P <.05)。

结论

RGD 肽序列可以有效地与市售的 PE/PEE 缝线结合。RGD 涂层缝线能够刺激人肌腱细胞的粘附和增殖,并且能够承受标准的消毒和储存条件。此外,酸水解过程不会影响缝线材料的强度。

临床相关性

在常见的骨科手术中使用 RGD 修饰缝线材料有可能产生有利的生物学反应。

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