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Low-Power Ultrasounds as a Tool to Culture Human Osteoblasts inside Cancellous Hydroxyapatite

机译:低功率超声作为在松质羟基磷灰石内部培养人类成骨细胞的工具

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摘要

Bone graft substitutes and cancellous biomaterials have been widely used to heal critical-size long bone defects due to trauma, tumor resection, and tissue degeneration. In particular, porous hydroxyapatite is widely used in reconstructive bone surgery owing to its biocompatibility. In addition, the in vitro modification of cancellous hydroxyapatite with osteogenic signals enhances the tissue regeneration in vivo, suggesting that the biomaterial modification could play an important role in tissue engineering. In this study, we have followed a tissue-engineering strategy where ultrasonically stimulated SAOS-2 human osteoblasts proliferated and built their extracellular matrix inside a porous hydroxyapatite scaffold. The ultrasonic stimulus had the following parameters: average power equal to 149 mW and frequency of 1.5 MHz. In comparison with control conditions, the ultrasonic stimulus increased the cell proliferation and the surface coating with bone proteins (decorin, osteocalcin, osteopontin, type-I collagen, and type-III collagen). The mechanical stimulus aimed at obtaining a better modification of the biomaterial internal surface in terms of cell colonization and coating with bone matrix. The modified biomaterial could be used, in clinical applications, as an implant for bone repair.
机译:骨移植替代物和松质生物材料已被广泛用于治疗因外伤,肿瘤切除和组织变性而导致的临界尺寸长骨缺损。特别地,多孔羟基磷灰石由于其生物相容性而广泛用于重建性骨手术。另外,利用成骨信号体外修饰松质羟基磷灰石可增强体内组织再生,表明生物材料修饰可在组织工程中发挥重要作用。在这项研究中,我们遵循了组织工程学的策略,其中超声刺激的SAOS-2人类成骨细胞增殖并在多孔羟基磷灰石支架内建立其细胞外基质。超声刺激具有以下参数:平均功率等于149 mW,频率为1.5 MHz。与对照条件相比,超声刺激增加了细胞增殖和骨蛋白(decorin,osteocalcin,osteopontin,I型胶原和III型胶原)的表面覆盖。机械刺激旨在在细胞定植和用骨基质包被方面获得对生物材料内表面的更好修饰。改性的生物材料可以在临床应用中用作骨修复的植入物。

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