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Quantitative Characterization of Collagen in the Fibrotic Capsule Surrounding Implanted Polymeric Microparticles through Second Harmonic Generation Imaging

机译:通过二次谐波成像定量表征纤维化胶囊周围植入的聚合物微粒中的胶原蛋白。

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摘要

The collagenous capsule formed around an implant will ultimately determine the nature of its in vivo fate. To provide a better understanding of how surface modifications can alter the collagen orientation and composition in the fibrotic capsule, we used second harmonic generation (SHG) microscopy to evaluate collagen organization and structure generated in mice subcutaneously injected with chemically functionalized polystyrene particles. SHG is sensitive to the orientation of a molecule, making it a powerful tool for measuring the alignment of collagen fibers. Additionally, SHG arises from the second order susceptibility of the interrogated molecule in response to the electric field. Variation in these tensor components distinguishes different molecular sources of SHG, providing collagen type specificity. Here, we demonstrated the ability of SHG to differentiate collagen type I and type III quantitatively and used this method to examine fibrous capsules of implanted polystyrene particles. Data presented in this work shows a wide range of collagen fiber orientations and collagen compositions in response to surface functionalized polystyrene particles. Dimethylamino functionalized particles were able to form a thin collagenous matrix resembling healthy skin. These findings have the potential to improve the fundamental understanding of how material properties influence collagen organization and composition quantitatively.
机译:围绕植入物形成的胶原蛋白胶囊最终将决定其体内命运的性质。为了更好地了解表面修饰如何改变纤维化囊中胶原蛋白的方向和组成,我们使用了二次谐波生成(SHG)显微镜来评估皮下注射化学功能化聚苯乙烯颗粒的小鼠中胶原蛋白的组织和结构。 SHG对分子的方向敏感,使其成为测量胶原纤维排列的强大工具。另外,SHG源自被询问分子响应电场的二阶磁化率。这些张量成分的变化区分了SHG的不同分子来源,从而提供了胶原蛋白类型的特异性。在这里,我们展示了SHG定量区分I型和III型胶原的能力,并使用此方法检查了植入的聚苯乙烯颗粒的纤维状胶囊。这项工作中提供的数据表明,响应于表面官能化的聚苯乙烯颗粒,胶原纤维的取向和胶原组成范围广泛。二甲氨基官能化的颗粒能够形成类似于健康皮肤的薄胶原蛋白基质。这些发现有可能改善对材料特性如何定量影响胶原组织和组成的基本理解。

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  • 期刊名称 other
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  • 年(卷),期 -1(10),6
  • 年度 -1
  • 页码 e0130386
  • 总页数 17
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  • 入库时间 2022-08-21 11:15:16

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