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Processing highly porous calcium phosphate ceramics for use in bioreactor cores for culturing human liver cells in-vitro.

机译:加工用于生物反应器芯的高度多孔的磷酸钙陶瓷,以体外培养人肝细胞。

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摘要

Chronic liver disease is the 11th highest cause of death in the United States claiming over 30,000 lives in 2009. The current treatment for chronic liver failure is liver transplantation but the availability of tissue is far less than the number of patients in need. To develop human liver tissue in the lab a 3D culturing environment must be created to support the growth of a complex tissue. Hydroxyapatite (HAp) has been chosen as a scaffold material because of its biocompatibility in the body and the ability to create a bioresorbable scaffold. By using a ceramic material, it is possible to create a three dimensional, protective environment in which tissue can grow.;The first part of this study is to examine the behavior of adult human liver cells grown on composites of HAp and different biocompatible hydrogels. Porous HAp has been created using an emulsion foaming technique and cells are injected into the structure after being suspended in a hydrogel and are kept in culture for up to 28 days. Functional assays, gene expression and fluorescent microscopy will be used to examine these cultures. The second part of this study will be to develop a processing technique to create a resorbable scaffold that incorporates a vascular system template. Previous experiments have shown the high temperature decomposition of HAp into resorbable calcium phosphates will be used to create a multiphase material. By controlling the amount of transformation product formed, it is proposed that the resorption of the scaffold can be tailored. To introduce a pore network to guide the growth of a vascular system, a positive-negative casting technique has also been developed. A positive polymer copy can be made of a natural vascular system and ceramic is foamed around the copy. During sintering, the polymer is pyrolyzed leaving a multiscale pore network in the ceramic. By combining these techniques, it is proposed that a calcium phosphate bioreactor core can be processed that is suitable for the culturing of human liver tissue.
机译:慢性肝病是美国的11大死亡原因,2009年有30,000多人丧生。目前用于治疗慢性肝衰竭的方法是肝移植,但是组织的可利用性远远少于需要的患者数量。为了在实验室中发育人类肝脏组织,必须创建3D培养环境以支持复杂组织的生长。羟基磷灰石(HAp)已被选作支架材料,因为它在体内具有生物相容性,并具有产生生物可吸收支架的能力。通过使用陶瓷材料,可以创造一个可以在其中生长组织的三维保护环境。本研究的第一部分是研究在HAp和不同生物相容性水凝胶复合材料上生长的成年人类肝细胞的行为。已使用乳液发泡技术产生了多孔HAp,将细胞悬浮在水凝胶中后将其注入结构中,并保持培养28天。功能测定,基因表达和荧光显微镜将用于检查这些培养物。这项研究的第二部分将是开发一种加工技术,以创建一种结合了血管系统模板的可吸收支架。先前的实验表明,HAp在高温下分解为可吸收的磷酸钙的过程将用于制造多相材料。通过控制形成的转化产物的量,提出可以调整支架的吸收。为了引入孔网络以指导血管系统的生长,还开发了正负铸造技术。正极聚合物仿制品可以由天然血管系统制成,并且陶瓷在仿制品周围发泡。在烧结过程中,聚合物被热解,从而在陶瓷中留下多尺度的孔网络。通过组合这些技术,提出了可以加工适于人类肝组织培养的磷酸钙生物反应器核心。

著录项

  • 作者

    Finoli, Anthony.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Engineering Materials Science.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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