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布里渊光谱:一种用于解读经纳米级薄膜功能化的生物支架粘弹性特性的新工具。

Brillouin spectroscopy: a new tool to decipher viscoelastic properties of biological scaffold functionalized with nanoscale films.

作者信息

Beroud J, Vincent B, Paternotte E, Nguyen V-S, Kerdjoudj H, Velot E, Rouxel D, Menu P

机构信息

UMR 7365 CNRS-Université de Lorraine, IMoPA, Biopôle de l'Université de Lorraine, Vandoeuvre-lès-Nancy, France.

出版信息

Biomed Mater Eng. 2013;23(4):251-61. doi: 10.3233/BME-130749.

Abstract

BACKGROUND

In tissue engineering, the endothelialization of vascular scaffold can be a crucial step to improve graft patency. A functional cellularization requires coating surfaces. Since 2003, our group used polyelectrolyte multilayer films (PEMFs) made of poly(allylamine hydrochloride) and polystyren sulfonate to coat luminal surface of blood vessel. Previous results showed that PEMFs have remarkable effect on cellular behavior: adhesion, proliferation, differentiation. However, no method seems adapted for in vitro measurement of the viscoelastic shift after PEMFs buildup.

OBJECTIVE

In this present work, we proposed to use a new analytical method based on Brillouin spectroscopy (BS) to investigate the influence PEMFs coating on vessel intrinsic viscoelasticy.

METHODS

On human umbilical arteries and rabbit vessels, PEMFs were buildup and the luminal surfaces viscoelasticy were measuring by BS.

RESULTS

It seems that these films do not alter dynamic functionality and BS could be an interesting method for understanding the role of the tissue architecture, the interrelation between the different structures constituting the wall and the influence of this architecture on the tissue behavior, especially with the characterized components of the different vascular wall.

CONCLUSION

The ability of BS to characterize biological samples opens potential applications in tissue engineering field, especially as a tool for a better understanding of vascular diseases.

摘要

背景

在组织工程中,血管支架的内皮化是提高移植物通畅性的关键步骤。功能性细胞化需要对表面进行涂层处理。自2003年以来,我们团队使用由聚(烯丙胺盐酸盐)和聚苯乙烯磺酸盐制成的聚电解质多层膜(PEMFs)来包覆血管腔表面。先前的结果表明,PEMFs对细胞行为(黏附、增殖、分化)有显著影响。然而,似乎没有适用于体外测量PEMFs形成后黏弹性变化的方法。

目的

在本研究中,我们提议使用一种基于布里渊光谱(BS)的新分析方法来研究PEMFs涂层对血管固有黏弹性的影响。

方法

在人脐动脉和兔血管上形成PEMFs,并通过BS测量腔表面的黏弹性。

结果

这些膜似乎不会改变动态功能,并且BS可能是一种了解组织结构作用、构成血管壁的不同结构之间的相互关系以及这种结构对组织行为影响的有趣方法,特别是对于不同血管壁的特征成分。

结论

BS表征生物样品的能力在组织工程领域开辟了潜在应用,尤其是作为更好地理解血管疾病的工具。

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