首页> 外文期刊>Journal of orthopaedic science : >Effect of cyclic three-dimensional strain on cell proliferation and collagen synthesis of fibroblast-seeded chitosan-hyaluronan hybrid polymer fiber.
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Effect of cyclic three-dimensional strain on cell proliferation and collagen synthesis of fibroblast-seeded chitosan-hyaluronan hybrid polymer fiber.

机译:循环三维应变对成纤维接种壳聚糖-透明质酸杂化聚合物纤维细胞增殖和胶原合成的影响。

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BACKGROUND: Tissue engineering techniques using biodegradable three-dimensional (3D) scaffolds with cultured cells offer more potential alternatives for the treatment of severe ligament and tendon injuries. In tissue engineering, one of the crucial roles of 3D scaffolds is to provide a temporary template with the biomechanical characteristics of the native extracellular matrix (ECM) until the regenerated tissue matures. The purpose of the present study was to assess the effect of various cyclic mechanical stresses on cell proliferation and ECM production in a 3D scaffold made from chitosan and hyaluronan for ligament and tendon tissue engineering. METHODS: Three-dimensional scaffolds seeded with rabbit patella tendon fibroblasts were attached to a bioreactor under various conditions: static group, no strain; stretch group, tensile strain; rotational group, rotational strain; combined group, rotational and tensile strain. In the Static group, 3 weeks of stationary culture was performed. In the remaining three groups, a loading regimen of 0.5 Hz for 18 h and then 6 h rest was carried out for 2 weeks after 1 week of static culture. The DNA content was determined to quantify cell proliferation. Real-time reverse transcription polymerase chain reaction analysis was performed to assess the mRNA levels of the ECM products. RESULTS: DNA content of the combined group was significantly higher than that of the static and stretch groups, and that of the rotational group was significant higher than that of the static and stretch groups at 21 days after cultivation. The mRNA level of types I and III collagen and fibromodulin in the combined group was significantly higher than that in the other three groups. The amount of collagen synthesis in the combined group was higher than that in the static group, but the difference was not significant. CONCLUSIONS: Multidimensional cyclic mechanical strain to mimic the physiological condition in vivo has the potential to improve or accelerate tissue regeneration in ligament and tendon tissue engineering using 3D scaffolds in vitro.
机译:背景:使用可生物降解的三维(3D)支架和培养细胞的组织工程技术为重度韧带和肌腱损伤的治疗提供了更多潜在的选择。在组织工程中,3D支架的关键作用之一是提供具有天然细胞外基质(ECM)的生物力学特征的临时模板,直到再生的组织成熟为止。本研究的目的是评估由壳聚糖和透明质酸制成的3D支架中韧带和腱组织工程的各种循环机械应力对细胞增殖和ECM产生的影响。方法:在不同条件下,将植入with骨肌腱成纤维细胞的三维支架连接到生物反应器上:静态组,无应变;拉伸组,拉伸应变;旋转群,旋转应变;组合组,旋转应变和拉伸应变。在静态组中,进行3周的静止培养。在其余的三组中,在静置培养1周后,以0.5 Hz的负荷方案持续18 h,然后休息6 h,持续2周。确定DNA含量以定量细胞增殖。进行实时逆转录聚合酶链反应分析以评估ECM产物的mRNA水平。结果:培养21天后,联合组的DNA含量明显高于静态和拉伸组,旋转组的DNA含量明显高于静态和拉伸组。联合治疗组Ⅰ,Ⅲ型胶原和纤维调节蛋白的mRNA水平明显高于其他三组。联合组胶原合成量高于静态组,但差异不显着。结论:模拟体内生理状况的多维循环机械应变具有改善或加速韧带组织再生和使用3D支架进行肌腱组织工程改造的潜力。

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