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The preliminary performance study of the 3D printing of a tricalcium phosphate scaffold for the loading of sustained release anti-tuberculosis drugs

机译:磷酸三钙支架3D打印负载缓释抗结核药物的初步性能研究

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摘要

In the surgical treatment of tuberculosis of the bones, excision of the lesion site leaves defects in the bone structure. Recent research has shown benefits for bone tissue support, such as tricalcium phosphate, as regrowth materials. These biocompatible engineering materials have good bone inductivity and biologic mechanical performance. The goal of this study was to evaluate the use of 3D printing, a new technology, to design and build 3-dimensional support structures for use in grafting at lesion sites and for use in embedding the sustained release anti-tuberculosis drugs Rifampin and Isoniazid and determine the in vivo performance of these structures. In addition to mechanical studies, osteogenesis, cell viability, and migration were all observed, using Wistar rat models, to determine the effectiveness of this material as a biological support. The bone support showed good resistance to compression, similar to the spongiest bone tissue, and high porosity. In vivo studies showed that the material had a stable time release of Rifampin and Isoniazid through 90 days and achieved effective killing of the tuberculosis-causing bacteria. Finally, the support allowed for good migration and survival of rat bone marrow mesenchymal stem cells, leading to successful bone regrowth and repair. These results imply that the use of 3D printing of tricalcium phosphate scaffolds for bone excision repair and time-release treatment of tuberculosis shows great promise for future treatment of patients with tuberculosis of the bones.
机译:在骨骼结核的外科手术治疗中,切除病变部位会在骨骼结构中留下缺陷。最近的研究表明,骨组织支持(例如磷酸三钙)可作为再生材料受益。这些生物相容性工程材料具有良好的骨诱导性和生物力学性能。这项研究的目的是评估3D打印(一种新技术)的使用,以设计和构建3维支撑结构,以用于在病变部位移植以及嵌入缓释抗结核药物Rifampin和Isoniazid和确定这些结构的体内性能。除了力学研究,还使用Wistar大鼠模型观察了成骨,细胞活力和迁移,以确定该材料作为生物支持物的有效性。骨支持物显示出良好的抗压强度,类似于海绵状骨组织,并且孔隙率高。体内研究表明,该物质在90天内可以稳定地释放利福平和异烟肼,并且可以有效杀死引起结核的细菌。最后,该支持物允许大鼠骨髓间充质干细胞良好迁移和存活,从而导致成功的骨再生和修复。这些结果表明,将磷酸三钙支架的3D打印用于结核的骨切除修复和延时治疗显示出对未来治疗骨结核患者的巨大希望。

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  • 来源
    《Journal of Materials Science》 |2015年第5期|2138-2147|共10页
  • 作者单位

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

    Military Region Orthopedic Center The People’s Liberation Army Lanzhou Military District">(1);

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