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机械刺激可增强软骨修复体外模型中的整合作用。

Mechanical stimulation enhances integration in an in vitro model of cartilage repair.

作者信息

Theodoropoulos John S, DeCroos Amritha J N, Petrera Massimo, Park Sam, Kandel Rita A

机构信息

University of Toronto Orthopaedic Sports Medicine Program, Mount Sinai Hospital and Women's College Hospital, Room 476C, 600 University Ave, Toronto, ON, M5G 1X5, Canada.

Bioengineering of Skeletal Tissues Team, Division of Pathology and Laboratory Medicine, Mount Sinai Hospital, 600 University Ave, Toronto, ON, M5G 1X5, Canada.

出版信息

Knee Surg Sports Traumatol Arthrosc. 2016 Jun;24(6):2055-64. doi: 10.1007/s00167-014-3250-8. Epub 2014 Aug 31.

Abstract

PURPOSE

(1) To characterize the effects of mechanical stimulation on the integration of a tissue-engineered construct in terms of histology, biochemistry and biomechanical properties; (2) to identify whether cells of the implant or host tissue were critical to implant integration; and (3) to study cells believed to be involved in lateral integration of tissue-engineered cartilage to host cartilage. We hypothesized that mechanical stimulation would enhance the integration of the repair implant with host cartilage in an in vitro integration model.

METHODS

Articular cartilage was harvested from 6- to 9-month-old bovine metacarpal-phalangeal joints. Constructs composed of tissue-engineered cartilage implanted into host cartilage were placed in spinner bioreactors and maintained on a magnetic stir plate at either 0 (static control) or 90 (experimental) rotations per minute (RPM). The constructs from both the static and spinner bioreactors were harvested after either 2 or 4 weeks of culture and evaluated histologically, biochemically, biomechanically and for gene expression.

RESULTS

The extent and strength of integration between tissue-engineered cartilage and native cartilage improved significantly with both time and mechanical stimulation. Integration did not occur if the implant was not viable. The presence of stimulation led to a significant increase in collagen content in the integration zone between host and implant at 2 weeks. The gene profile of cells in the integration zone differs from host cartilage demonstrating an increase in the expression of membrane type 1 matrix metalloproteinase (MT1-MMP), aggrecan and type II collagen.

CONCLUSIONS

This study shows that the integration of in vitro tissue-engineered implants with host tissue improves with mechanical stimulation. The findings of this study suggests that consideration should be given to implementing early loading (mechanical stimulation) into future in vivo studies investigating the long-term viability and integration of tissue-engineered cartilage for the treatment of cartilage injuries. This could simply be done through the use of continuous passive motion (CPM) in the post-operative period or through a more complex and structured rehabilitation program with a gradual increase in forces across the joint over time.

摘要

目的

(1)从组织学、生物化学和生物力学特性方面描述机械刺激对组织工程构建体整合的影响;(2)确定植入物细胞或宿主组织细胞对植入物整合是否至关重要;(3)研究被认为参与组织工程软骨与宿主软骨横向整合的细胞。我们假设在体外整合模型中,机械刺激会增强修复植入物与宿主软骨的整合。

方法

从6至9个月大的牛掌指关节获取关节软骨。将由组织工程软骨组成并植入宿主软骨的构建体置于旋转生物反应器中,并在磁力搅拌板上以每分钟0(静态对照)或90(实验)转(RPM)进行维持。在培养2周或4周后,从静态和旋转生物反应器中收集构建体,并进行组织学、生物化学、生物力学和基因表达评估。

结果

组织工程软骨与天然软骨之间整合的程度和强度随时间和机械刺激均有显著改善。如果植入物没有活力,则不会发生整合。刺激的存在导致在2周时宿主与植入物之间的整合区域中胶原蛋白含量显著增加。整合区域中细胞的基因谱与宿主软骨不同,显示膜型1基质金属蛋白酶(MT1 - MMP)、聚集蛋白聚糖和II型胶原蛋白的表达增加。

结论

本研究表明,体外组织工程植入物与宿主组织的整合通过机械刺激得到改善。本研究结果表明,在未来研究组织工程软骨治疗软骨损伤的体内长期活力和整合的研究中,应考虑实施早期加载(机械刺激)。这可以简单地通过在术后使用持续被动运动(CPM)或通过更复杂且结构化的康复计划来实现,随着时间的推移逐渐增加关节上的力量。

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