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Biomimetic Structured Porogen Freeform Fabrication System for Tissue Engineering

Biomimetic Structured Porogen Freeform Fabrication System for Tissue Engineering
用于组织工程的仿生结构化致孔剂自由成型制造系统
批准号:
0300405
负责人:
Jack Zhou
金额:
$38.87万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-04-01 至 2007-03-31

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中文摘要
翻译
本项目的研究目标是将生物材料研究、仿生建模、实体自由成形制造、系统与控制、组织工程等技术集成在一个智能系统中,用于构建结构化、高孔隙度的生物材料,并将其应用于骨组织工程支架。 该制造系统基于以下原理:(1)基于计算机断层摄影或磁共振成像的图像和使用逆向工程的内部结构建模来创建骨的计算机辅助设计模型。 (2)一种特殊设计的蔗糖材料用于构建结构化致孔剂,一种具有骨细胞外基质空隙负结构的骨架,使用固体自由成形制造技术。 (3)将聚合物和陶瓷的生物复合材料浇铸到蔗糖负骨架中并空气固化。 (4)然后用水除去蔗糖致孔剂;并在低温下烧结生物复合支架以改善其机械完整性和强度。 该项目的成功将使组织工程师能够优化骨组织工程支架的机械、运输、材料和生物学特性,并具有目前无法获得的一定程度的结构控制。 骨组织工程可以提供一种痛苦更少的替代传统骨移植,每年超过80万个植入物,感染风险更低。新的仿生结构的致孔剂自由成型制造系统也将应用于其他组织的支架,包括血管化组织。 更广泛的好处包括培养两名博士。学生,新的课程模块“仿生组织建模及其自由制造”和“生物材料机械性能测量”,以及生物材料生物相容性的案例研究。教育和研究基础设施可以通过这种跨学科的合作,并通过开发新的跨学科课程模块,为工程学院和生物医学工程学院在德雷克塞尔大学。该项目还将用于为当地高中和社区大学学生,包括许多代表性不足的少数民族学生举办的外联讲习班。
英文摘要
The research objective of this project is to integrate biomaterials research, biomimetic modeling, solid freeform fabrication, systems and control, and tissue engineering in one intelligent system for structured, highly porous biomaterials, which will be applied to bone tissue engineering scaffolds. The manufacturing system is based on the following principles: (1) A computer-aided design model of bone is created based on images of computed tomography or magnetic resonance imaging and internal structure modeling using reverse engineering. (2) A specially designed sucrose material is used to build a structured porogen, a skeleton that has the negative structure of bone extra-cellular matrix voids, using Solid Freeform Fabrication technology. (3) A bio-composite of polymer and ceramic is cast into the sucrose negative skeleton and air-solidified. (4) The sucrose porogen is then removed using water; and the bio-composite scaffold is sintered at a low temperature to improve its mechanical integrity and strength. Biocompatibility will be tested in cell culture assays.Success in this project will enable tissue engineers to optimize mechanical, transport, material, and biological properties of bone tissue engineering scaffolds with a degree of structural control not currently available. Bone tissue engineering may offer a less painful alternative to traditional bone grafts in over 800,000 implants per year, with lower risk of infection. The new biomimetic structured porogen freeform fabrication system will also have application to scaffolds for other tissues, including vascularized tissue. Broader benefits include training of two Ph.D. students, new course modules on "Biomimetic Tissue Modelingand its Freeform Fabrication" and "Biomaterial Mechanical Property Measurement," and a biomaterials biocompatibility case study. The educational and research infrastructure can be enhanced by this interdisciplinary collaboration, and by development of new cross-disciplinary course modules for both College of Engineering and Biomedical Engineering School at Drexel University. The project will also be used in outreach workshops for local high school and community college students, including many underrepresented minority students.
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