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机械刺激对用于兔髌腱修复的干细胞-胶原海绵构建体的生物力学和组织学的影响。

Effects of mechanical stimulation on the biomechanics and histology of stem cell-collagen sponge constructs for rabbit patellar tendon repair.

作者信息

Juncosa-Melvin Natalia, Shearn Jason T, Boivin Gregory P, Gooch Cynthia, Galloway Marc T, West John R, Nirmalanandhan Victor S, Bradica Gino, Butler David L

机构信息

Department of Biomedical Engineering, University of Cincinnati, Cincinnati, Ohio 45221-0048, USA.

出版信息

Tissue Eng. 2006 Aug;12(8):2291-300. doi: 10.1089/ten.2006.12.2291.

Abstract

The objective of this study was to determine how mechanical stimulation affects the biomechanics and histology of stem cell-collagen sponge constructs used to repair central rabbit patellar tendon defects. Autogenous tissue-engineered constructs were created for both in vitro and in vivo analyses by seeding mesenchymal stem cells from 10 adult rabbits at 0.14x10(6) cells/construct in type I collagen sponges. Half of these constructs were mechanically stimulated once every 5 min for 8 h/day to a peak strain of 4% for 2 weeks. The other half remained in an incubator without mechanical stimulation for 2 weeks. Samples allocated for in vitro testing revealed that mechanically stimulated constructs had 2.5 times the linear stiffness of nonstimulated constructs. The remaining paired constructs for in vivo studies were implanted in bilateral full-thickness, full-length defects in the central third of rabbit patellar tendons. Twelve weeks after surgery, repair tissues were assigned for biomechanical (7 pairs) and histologic (3 pairs) analyses. Maximum force, linear stiffness, maximum stress, and linear modulus for the stimulated (vs. nonstimulated) repairs averaged 70% (vs. 55%), 85% (vs. 55%), 70% (vs. 50%), and 50% (vs. 40%) of corresponding values for the normal central third of the patellar tendons. The average force-elongation curve for the mechanically stimulated repairs also matched the corresponding curve for the normal patellar tendons, up to 150% of the peak in vivo force values recorded in a previous study. Construct and repair linear stiffness and linear modulus were also positively correlated (r = 0.6 and 0.7, respectively). Histologically both repairs showed excellent cellular alignment and mild staining for decorin and collagen type V, and moderate staining for fibronectin and collagen type III. This study shows that mechanical stimulation of stem cell-collagen sponge constructs can significantly improve tendon repair biomechanics up to and well beyond the functional limits of in vivo loading.

摘要

本研究的目的是确定机械刺激如何影响用于修复兔髌腱中央缺损的干细胞 - 胶原海绵构建体的生物力学和组织学。通过将10只成年兔的间充质干细胞以0.14x10(6)个细胞/构建体接种到I型胶原海绵中,创建了用于体外和体内分析的自体组织工程构建体。其中一半构建体每5分钟机械刺激一次,每天刺激8小时,峰值应变达4%,持续2周。另一半则在培养箱中不进行机械刺激,持续2周。用于体外测试的样本显示,经机械刺激的构建体的线性刚度是非刺激构建体的2.5倍。其余用于体内研究的配对构建体被植入兔髌腱中央三分之一处的双侧全层、全长缺损处。术后12周,将修复组织用于生物力学(7对)和组织学(3对)分析。与未刺激的修复相比,刺激修复的最大力、线性刚度、最大应力和线性模量平均分别为髌腱正常中央三分之一相应值的70%(对55%)、85%(对55%)、70%(对50%)和50%(对40%)。机械刺激修复的平均力 - 伸长曲线也与正常髌腱的相应曲线匹配,直至达到先前研究中记录的体内峰值力值的150%。构建体和修复体的线性刚度和线性模量也呈正相关(分别为r = 0.6和0.7)。组织学上,两种修复均显示出良好的细胞排列,对核心蛋白聚糖和V型胶原轻度染色,对纤连蛋白和III型胶原中度染色。本研究表明,对干细胞 - 胶原海绵构建体进行机械刺激可显著改善肌腱修复的生物力学性能,达到并远远超过体内负荷的功能极限。

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