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用于骨组织工程应用的载万古霉素海藻酸盐涂层在ZSM-5支架上的抗菌活性和细胞反应

Antibacterial Activity and Cell Responses of Vancomycin-Loaded Alginate Coating on ZSM-5 Scaffold for Bone Tissue Engineering Applications.

作者信息

Aslani Z, Nazemi N, Rajabi N, Kharaziha M, Bakhsheshi-Rad H R, Kasiri-Asgarani M, Najafinezhad A, Ismail A F, Sharif S, Berto F

机构信息

Advanced Materials Research Center, Department of Materials Engineering, Najafabad Branch, Islamic Azad University, Najafabad, Iran.

Department of Materials Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran.

出版信息

Materials (Basel). 2022 Jul 8;15(14):4786. doi: 10.3390/ma15144786.

Abstract

Despite the significant advancement in bone tissue engineering, it is still challenging to find a desired scaffold with suitable mechanical and biological properties, efficient bone formation in the defect area, and antibacterial resistivity. In this study, the zeolite (ZSM-5) scaffold was developed using the space holder method, and a novel vancomycin-loaded alginate coating was developed on it to promote their characteristics. Our results demonstrated the importance of alginate coating on the microstructure, mechanical, and cellular properties of the ZSM-5 scaffold. For instance, a three-fold increase in the compressive strength of coated scaffolds was observed compared to the uncoated ZSM-5. After the incorporation of vancomycin into the alginate coating, the scaffold revealed significant antibacterial activity against ( The inhibition zone increased to 35 mm. Resets also demonstrated 74 ± 2.5% porosity, 4.3 ± 0.07 MPa strength in compressive conditions, acceptable cellular properties (72.3 ± 0.2 (%control) cell viability) after 7 days, good cell attachment, and calcium deposition. Overall, the results revealed that this scaffold could be a great candidate for bone tissue engineering.

摘要

尽管骨组织工程取得了显著进展,但要找到一种具有合适机械和生物学特性、能在缺损区域有效促进骨形成且具备抗菌性的理想支架仍具有挑战性。在本研究中,采用空间保持法制备了沸石(ZSM - 5)支架,并在其上开发了一种新型的载万古霉素藻酸盐涂层以提升其性能。我们的结果证明了藻酸盐涂层对ZSM - 5支架的微观结构、力学和细胞特性的重要性。例如,与未涂层的ZSM - 5相比,涂层支架的抗压强度提高了两倍。将万古霉素掺入藻酸盐涂层后,支架对[此处原文缺失细菌名称]显示出显著的抗菌活性(抑菌圈增至35毫米)。结果还表明该支架孔隙率为74 ± 2.5%,压缩条件下强度为4.3 ± 0.07兆帕,7天后具有可接受的细胞特性(细胞活力为72.3 ± 0.2(%对照))、良好的细胞附着性和钙沉积。总体而言,结果表明这种支架可能是骨组织工程的理想候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f416/9318858/e97ecebc70a7/materials-15-04786-sch001.jpg

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