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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >A facile way for development of three-dimensional localized drug delivery system for bone tissue engineering
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A facile way for development of three-dimensional localized drug delivery system for bone tissue engineering

机译:骨组织工程三维局部药物递送系统的开发途径

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Removing malignant bone tumors results in critical size bone defects. These voids in bones should be filled by a proper scaffold that not only can support cell ingrowth and bone regeneration but also it has to show a desirable ability in long-term releasing anticancer drugs in order to prevent the growth of remaining cancer cells. Applying this scaffold can significantly improve the outcome of bone tumors treatment. In this study, a novel way is proposed for immobilization of doxorubicin (DOX)-loaded polycaproloactone (PCL) microparticles on the hardystonite (HT) scaffold surfaces. High interconnected porous HT scaffolds with immobilized DOX-encapsulated PCL microparticles can be successfully fabricated by modified water/oil/water method. In the present work, we verify a slow release of DOX over 30?days from PCL microparticles inside HT scaffold. Our developed HT scaffolds with the long-term release of DOX are more effective in reduction of Saos-2 cancer cells viability and induce higher degrees of apoptosis compared to DOX dip coated HT scaffolds. Encapsulating DOX into PCL microparticles significantly improves the anti-tumor activity of DOX by regulating the expression of apoptosis-related genes. Our results suggest that by immobilization of polymeric vehicles on the ceramic scaffold for controlled drug release, we can achieve high efficiency in apoptosis of cancer cells.
机译:除去恶性骨肿瘤导致临界大小的骨缺陷。这些空隙的骨骼中的空隙应由适当的支架填充,不仅可以支持细胞的成长和骨再生,而且还必须表现出长期释放抗癌药物的理想能力,以防止剩余癌细胞的生长。施加这种支架可以显着改善骨肿瘤治疗的结果。在该研究中,提出了一种用于固定在硬质司石(HT)支架表面上的多柔比蛋白(DOX)加载的聚己内酯(PCL)微粒的新颖方法。具有固定化的DOX封装的PCL微粒的高互连多孔HT支架可以通过改性的水/油/水法成功制造。在目前的工作中,我们在HT脚手架内的PCL微粒中验证了30多天的DOX释放。我们发育的HT支撑性HT的长期释放DOX更有效地减少SAOS-2癌细胞的活力,并与DOX DIP涂层HT支撑支架相比诱导较高程度的细胞凋亡。将DOX封装到PCL微粒中通过调节凋亡相关基因的表达而显着改善DOX的抗肿瘤活性。我们的研究结果表明,通过固定在陶瓷支架上的聚合物车辆进行受控药物释放,我们可以在癌细胞的凋亡中获得高效率。

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