CAREER: Capillary-Incorporated Bioprinting of Biomimetic Soft Tissue Constructs
CAREER: Capillary-Incorporated Bioprinting of Biomimetic Soft Tissue Constructs
批准号:
2145108
负责人:
George Tan
金额:
$60.07万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-06-01 至 2027-05-31
中文摘要
生物打印是一种添加剂制造工艺,旨在创建三维生物结构来修复或替换受损的组织或器官。尽管在过去20年中材料和工艺开发取得了重大进展,但生物打印具有维持生命的毛细血管的大型功能组织的需求仍未得到满足。该学院早期职业发展(CALEAR)项目研究了一种混合生物打印技术,该技术有助于开发毛细管结合的生物打印,以实现最佳的组织再生。这项技术包括在水凝胶层之间电纺多孔微管,以便为营养物质提供进入细胞的通道,这些细胞将在支架内生长。这项研究的结果可能为复杂疾病和生物启发疗法提供一条新的制造解决方案,从而推动再生医学的发展。该项目旨在培养和吸引多样化的学生群体,通过为K-12教师和学生实施基于技能的沉浸式教学计划,并在具有全球联系的农村地区建立大学-社区合作伙伴关系,实现未来医药制造业的卓越。这些教育推广活动应该有助于在德克萨斯州西部建立一个生物制造生态系统,并建立可扩展的模式,以加强农村地区的研究和教育网络和伙伴关系。此外,这一奖项将扩大未被充分代表的群体对常规制造产品组合以外的研究的参与,以期为保持美国在先进制造业和生物医学领域的全球领导地位做出贡献。这一职业奖项支持毛细管结合生物打印领域的基础科学和工程研究,该研究旨在制造厘米大小的支架,与用作毛细血管的仿生多孔微管集成。研究任务包括(1)对微管的形态和渗透性进行建模,(2)表征材料和工艺参数对系统打印质量的影响,以及(3)建立仿生结构的过程-函数关系。通过成功地完成这三项研究任务,这个职业项目将产生关于多孔微管形成机制、壁厚对微管渗透性的影响以及材料成分、工艺参数和毛细管结合支架随时间变化的性能之间的相互关系的新知识。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Bioprinting is an additive manufacturing process that aims to create three-dimensional biological constructs to repair or replace damaged tissues or organs. Despite significant progress on material and process development in the last two decades, there is an unmet need for bioprinting large functional tissues with life-sustaining capillaries. This Faculty Early Career Development (CAREER) project investigates a hybrid bioprinting technology that can contribute to the development of capillary-incorporated bioprinting for optimal tissue regeneration. The technique includes electrospinning of porous microtubes between layers of hydrogels in order to provide channels for nutrients to reach cells which are to be grown inside the scaffold. The outcomes of this research could provide a path toward novel manufacturing solutions for complex diseases and bioinspired therapies that can advance regenerative medicine. The project aims to cultivate and engage a diverse student body to achieve future excellence in manufacturing for medicine by implementing a skill-based immersive teaching program for K-12 teachers and students, and establishing university-community partnerships in rural areas with global connections. These educational outreach activities should help to build an ecosystem of biofabrication in west Texas, with scalable models for enhancing research and education networks and partnerships in rural areas. In addition, this award will broaden the participation of underrepresented groups in research outside the customary manufacturing portfolio, with a desire to contribute to sustaining America's global leadership in advanced manufacturing and biomedicine.This CAREER award supports fundamental science and engineering research in capillary-incorporated bioprinting for fabricating centimeter-sized scaffolds integrated with biomimetic porous microtubes that function as capillary vessels. The research tasks include (1) modeling the microtube morphology and permeability, (2) characterizing the effects of material and process parameters on the printing quality of the system, and (3) building the process-function relationship of biomimetic constructs. By successfully completing these three research tasks, this CAREER project will generate new knowledge about the mechanisms of porous microtube formation, the effect of wall thickness on the microtube permeability, and the interrelationships between material composition, process parameters, and the time-dependent properties of capillary-incorporated scaffolds.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1016/j.matdes.2023.111708
发表时间:
2023-02
期刊:
Materials & Design
影响因子:
--
作者:
[Imtiaz Qavi;George Z. Tan]
通讯作者:
Imtiaz Qavi;George Z. Tan
An Interdisciplinary Team-based Framework to Engage Undergraduate Students in Biomedical Innovation
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批准号:2013484
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项目类别:Standard Grant
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资助金额:$48.52万
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财政年份:2020
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负责人:George Tan
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依托单位:
海外基金