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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >AFM analysis of collagen fibrils in expanded scalp tissue after anisotropic tissue expansion
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AFM analysis of collagen fibrils in expanded scalp tissue after anisotropic tissue expansion

机译:各向异性组织膨胀后扩增头皮组织胶原纤维的AFM分析

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Successful use of tissue expanders depends on the quality of expanded tissue. This study evaluates the impact of anisotropic self-inflating tissue expander (SITE) on the biomechanics of skin. Two different SITE were implanted subcutaneously on sheep scalps; SITE that requires 30 days for maximum expansion (Group A; n = 5), and SITE that requires 21 days for maximum expansion (Group B; n = 5). Control animals (n = 5) were maintained without SITE implantation. Young's Modulus, D-periodicity, overlap and gap region length, diameter, and height difference between overlap and gap regions on collagen fibrils were analyzed using atomic force microscopy. Histology showed no significant differences in dermal thickness between control and expanded skin of groups A and B. Furthermore, most parameters of expanded skin were similar to controls (p 0.05). However, the height difference between overlap and gap regions was significantly smaller in group B compared to both control and group A (p 0.01). Strong correlation was observed between Young's Modulus of overlap and gap regions of the control and group A, but not group B. Results suggest that a relatively slower SITE can be useful in reconstructive surgery to maintain the biomechanical properties of expanded skin. (C) 2017 Elsevier B.V. All rights reserved.
机译:组织扩展器的成功使用取决于膨胀组织的质量。本研究评估各向异性自膨胀组织扩展器(遗址)对皮肤生物力学的影响。两种不同的部位皮下植入绵羊头皮;最大膨胀(A组; n = 5)的最大膨胀(A组; n = 5)的网站,并且需要21天的网站,以获得最大膨胀(B组; n = 5)。在没有位点植入的情况下保持对照动物(n = 5)。使用原子力显微镜分析杨氏模量,D周,重叠和间隙区域之间的长度,直径和高度差异,分析了胶原型原纤维上的间隙区域。组织学表明,对照组A和B组的控制和扩增皮肤之间的皮肤厚度没有显着差异。此外,大多数膨胀皮肤参数与对照相似(P> 0.05)。然而,与对照和A组(P <0.01)相比,B组中重叠和间隙区域之间的高度差异明显较小。在对照和A组的杨氏模量和A组的间隙区域之间观察到强烈的相关性,但不是B组。结果表明,相对较慢的位点可用于重建手术以维持膨胀皮肤的生物力学性质。 (c)2017年Elsevier B.V.保留所有权利。

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