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首页> 外文期刊>RSC Advances >Characterization and osteogenic evaluation of mesoporous magnesium-calcium silicate/polycaprolactone/polybutylene succinate composite scaffolds fabricated by rapid prototyping
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Characterization and osteogenic evaluation of mesoporous magnesium-calcium silicate/polycaprolactone/polybutylene succinate composite scaffolds fabricated by rapid prototyping

机译:快速原型制造的介孔镁 - 硅酸镁 - 硅酸镁/聚己内酯/聚丁烯琥珀酸酯复合支架的表征及成骨求解评价

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摘要

The properties of scaffolds for bone tissue engineering, including their biocompatibility, highly interconnected porosity, and mechanical integrity, are critical for promoting cell adhesion, proliferation, and osteoinduction. We used various physical and biological assays to obtain in vitro confirmation that the proposed composite scaffolds are potentially suitable for applications to bone tissue engineering. The proposed new composite scaffolds, which we fabricated by a rapid prototyping technique, were composed of mesoporous magnesium-calcium silicate (m_MCS), polycaprolactone (PCL), and polybutylene succinate (PBSu). We systematically evaluated the characteristics of the composite scaffolds, such as the hydrophilicity and bioactivity. We also investigated the proliferation and osteogenic differentiation of human mesenchymal stem cells (MSCs) scaffolded on the m_MCS/PCL/PBSu composite. Our results showed that, compared to the m_MCS/PCL scaffold, the m_MCS/PCL/PBSu scaffold has improved water absorption, in vitro degradability, biocompatibility, and bioactivity in simulated body fluid, while its mechanical strength is reduced. Moreover, the results of the cytotoxicity tests specified in ISO 10993-12 and ISO 10993-5 clearly indicate that the m_MCS/PCL scaffold is not toxic to cells. In addition, we obtained significant increases in initial cell attachment and improvements to the osteogenic MSC differentiation by replacing the m_MCS/PCL scaffold with the m_MCS/PCL/PBSu scaffold. Our results indicate that the m_MCS/PCL/PBSu scaffold achieves enhanced bioactivity, degradability, cytocompatibility, and osteogenesis. As such, this scaffold is a potentially promising candidate for use in stem cell-based bone tissue engineering.
机译:用于骨组织工程的支架的性质,包括它们的生物相容性,高度相互孔隙率和机械完整性对促进细胞粘附,增殖和骨液诱导至关重要。我们使用各种物理和生物测定来获得体外确认,即所提出的复合支架可能适用于骨组织工程的应用。我们通过快速原型技术制造的所提出的新型复合支架由介孔镁 - 硅酸镁(M_MC),聚己内酯(PCL)和聚丁烯琥珀酸盐(PBSU)组成。我们系统地评估了复合支架的特性,例如亲水性和生物活性。我们还研究了在M_MCS / PCL / PBSU复合材料上的人间充质干细胞(MSCs)的分层脱脂剂的增殖和骨质发生分化。我们的结果表明,与M_MCS / PCL支架相比,M_MCS / PCL / PBSU支架具有改善的吸水性,体外可降解性,生物相容性和模拟体液中的生物活性,而其机械强度降低。此外,ISO 10993-12和ISO 10993-5中规定的细胞毒性试验的结果清楚地表明M_MCS / PCL支架对细胞无毒。此外,通过用M_MCS / PCL / PBSU支架取代M_MCS / PCL支架,我们获得初始细胞附着和改善初始细胞附着和改善的显着增加。我们的结果表明,M_MCS / PCL / PBSU支架达到增强的生物活性,可降解性,细胞织立性和骨质发生。因此,该支架是用于干细胞基骨组织工程的潜在承诺的候选者。

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  • 来源
    《RSC Advances》 |2018年第59期|共11页
  • 作者单位

    Inje Univ Sch Biomed Engn Rm 309 BLDG A 197 Inje Ro Gimhae 50834 Gyeongsangnam D South Korea;

    East China Univ Sci &

    Technol Key Lab Ultrafine Mat Minist Educ Shanghai Peoples R China;

    Inje Univ Sch Biomed Engn Rm 309 BLDG A 197 Inje Ro Gimhae 50834 Gyeongsangnam D South Korea;

    Inje Univ Dept Hlth Sci &

    Technol Gimhae Gyeongsangnam D South Korea;

    Inje Univ Sch Biomed Engn Rm 309 BLDG A 197 Inje Ro Gimhae 50834 Gyeongsangnam D South Korea;

    Second Mil Med Univ Changhai Hosp Dept Orthopaed Shanghai Peoples R China;

    Inje Univ Sch Biomed Engn Rm 309 BLDG A 197 Inje Ro Gimhae 50834 Gyeongsangnam D South Korea;

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  • 正文语种 eng
  • 中图分类 化学;
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