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Instructive biomaterials for controlling cellular response and second harmonic generation imaging for quantitative characterization of collagen.

机译:具有指导意义的生物材料,用于控制细胞反应和二次谐波成像,以定量表征胶原蛋白。

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摘要

Biomaterial - biological system interaction triggers complex response to the implanted materials. The response includes series of overlapping processes as coagulation, inflammation and wound healing. Immune cells interaction with the material interface during these processed play crucial role in successful outcome of the implanted biomaterials in tissue engineering, wound healing, and artificial organs. Biomaterial type and microenvironment influence host response. Here, we show ability to reprogram immune cell as macrophages towards either pro-inflammatory or anti-inflammatory response through polystyrene latex beads bearing different functional groups. Although there is a plethora of evidence illustrating how biomaterials influence functions of macrophages, there is a paucity of studies investigating the effects of polymer materials on both polarizations and phenotype differentiation. During the wound healing stage polymer can also influence healing quality and time through affecting formation of proteins as collagen. The quality of the healed wound depends on collagen organization. Achieving random collagen deposition that more closely resembles young, healthy skin would be a vast improvement upon the imperfections of the natural wound healing process and the integration of tissue engineered scaffolds. Collagen secreted around implant can play crucial role in the successful outcome of the implanted devices such as sensors or delivery devices. Our goal is to affect cells responsible for formation of collagen and its orientation during the wound healing process through polymer substrates. The library of materials used here is based on the basic amino acid arginine. Our results demonstrate the ability to exert a level of control over cellular responses through biomaterials and the potential to attain the desired outcome with exposure to these materials in wound healing and tissue engineering.;Second harmonic generation imaging was used for quantitative characterization of collagen fiber deposited by cells. Non-centrosymmetric helical structure of collagen fibers allow us to image without any labels and minimum damage. One of the main applications of SHG microscopy has been imaging collagen fibers and determining fiber organization and parameters related to the second-order nonlinear susceptibility. We have used SHG microscopy to assess the quality of deposited collagen through quantitative analysis of collagen orientation and structure.
机译:生物材料-生物系统的相互作用触发了对植入材料的复杂反应。反应包括凝血,炎症和伤口愈合等一系列重叠过程。在这些过程中,免疫细胞与材料界面的相互作用在组织工程,伤口愈合和人造器官的成功植入生物材料中起着至关重要的作用。生物材料的类型和微环境影响宿主的反应。在这里,我们展示了通过带有不同功能基团的聚苯乙烯乳胶珠将免疫细胞重新编程为巨噬细胞的能力,从而朝着促炎或抗炎反应发展。尽管有大量证据说明生物材料如何影响巨噬细胞的功能,但仍缺乏研究来研究聚合物材料对极化和表型分化的影响。在伤口愈合阶段,聚合物还可以通过影响蛋白质(如胶原蛋白)的形成来影响愈合质量和时间。伤口愈合的质量取决于胶原蛋白的组织。在自然伤口愈合过程的缺陷和组织工程支架的整合方面,实现更接近年轻,健康的皮肤的随机胶原蛋白沉积将是一项巨大的进步。植入物周围分泌的胶原蛋白可在植入设备(例如传感器或输送设备)的成功结果中发挥关键作用。我们的目标是通过聚合物基质影响伤口愈合过程中负责胶原形成及其定向的细胞。此处使用的材料库基于碱性氨基酸精氨酸。我们的结果证明了能够通过生物材料对细胞反应进行一定程度的控制的能力,以及通过在伤口愈合和组织工程中暴露于这些材料而获得所需结果的潜力。;二次谐波成像用于定量表征沉积的胶原纤维通过细胞。胶原纤维的非中心对称螺旋结构使我们能够在没有任何标签的情况下成像,并且损害最小。 SHG显微镜的主要应用之一是对胶原纤维成像,并确定与第二阶非线性磁化率有关的纤维组织和参数。我们已经使用SHG显微镜通过对胶原蛋白取向和结构的定量分析来评估沉积胶原蛋白的质量。

著录项

  • 作者

    Akilbekova, Dana.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:54:04

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