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作为其结构和机械性能的函数,对冰模板化胶原支架的固有渗透性的研究。

Investigation of the intrinsic permeability of ice-templated collagen scaffolds as a function of their structural and mechanical properties.

机构信息

Cambridge Centre for Medical Materials, Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Rd, Cambridge CB3 0FS, UK.

Cambridge University Engineering Department, The Nanoscience Centre, University of Cambridge, 11 JJ Thomson Avenue, Cambridge CB3 0FF, UK.

出版信息

Acta Biomater. 2019 Jan 1;83:189-198. doi: 10.1016/j.actbio.2018.10.034. Epub 2018 Oct 24.

Abstract

Collagen scaffolds are widely used in a range of tissue engineering applications, both in vitro and in vivo, where their permeability to fluid flow greatly affects their mechanical and biological functionality. This paper reports new insights into the interrelationships between permeability, scaffold structure, fluid pressure and deformation in collagen scaffolds, focussing in particular on the degree of closure and the alignment of the pores. Isotropic and aligned scaffolds of different occlusivity were produced by ice templating, and were characterised in terms of their structure and mechanical properties. Permeability studies were conducted using two experimental set-ups to cover a wide range of applied fluid pressures. The permeability was found to be constant at low pressures for a given scaffold with more open structures and aligned structures being more permeable. The deformation of scaffolds under high pressure led to a decrease in permeability. The aligned structures were more responsive to deformation than their isotropic equivalents with their permeability falling more quickly at low strain. For isotropic samples, a broad (1 - ɛ) dependence for permeability was observed with the constant of proportionality varying with collagen fraction as the starting structures became more occluded. Aligned scaffolds did not follow the same behaviour, with the pores apparently closing more quickly in response to early deformation. These results highlight the importance of scaffold structure in determining permeability to interstitial fluid, and provide an understanding of scaffold behaviour within the complex mechanical environment of the body. STATEMENT OF SIGNIFICANCE: Collagen scaffolds are widely used in tissue engineering applications, for instance to contribute with wound healing. Their permeability to fluid flow, such as water and blood, is important to ensure they perform efficiently when inside the body. The present study reports new insights into the relationships between permeability, scaffold structure, fluid pressure and deformation in collagen scaffolds. It presents in particular the experimental setups used to measure these properties and the result of comparisons between collagen scaffolds with different structures: aligned and isotropic (non-aligned). It indicates quantitative differences in terms of permeability, and the effects of compression on such permeability. The results contribute to the development and understanding of collagen scaffolds and their applications.

摘要

胶原支架广泛应用于各种组织工程应用中,无论是在体外还是体内,其对流体流动的渗透性极大地影响其机械和生物学功能。本文报道了胶原支架中渗透性、支架结构、流体压力和变形之间相互关系的新见解,特别关注孔的封闭程度和排列。通过冰模板法制备了不同封闭程度和取向的各向同性和取向支架,并对其结构和力学性能进行了表征。使用两种实验装置进行渗透性研究,以涵盖广泛的应用流体压力。发现对于给定的支架,具有更开放结构和取向结构的支架在低压力下渗透性是恒定的,而渗透性更高。在高压力下支架的变形导致渗透性降低。与各向同性支架相比,取向支架对变形的响应更大,其渗透性在低应变时下降更快。对于各向同性样品,观察到渗透性与(1-ɛ)的宽依赖性,比例常数随胶原分数而变化,因为起始结构变得更加封闭。取向支架没有遵循相同的行为,由于早期变形,孔显然更快地关闭。这些结果强调了支架结构在确定间质流体渗透性方面的重要性,并提供了对体内复杂力学环境中支架行为的理解。

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