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在冰模板化胶原蛋白支架中使用类布利冈德孔结构模拟透壁螺旋心肌纤维取向

Mimicking Transmural Helical Cardiomyofibre Orientation Using Bouligand-like Pore Structures in Ice-Templated Collagen Scaffolds.

作者信息

Zhang Huijie L, Sinha Sanjay, Cameron Ruth E, Best Serena M

机构信息

Department of Materials Science and Metallurgy, University of Cambridge, Cambridge CB3 0FS, UK.

Wellcome Trust-MRC Stem Cell Institute, Department of Medicine, University of Cambridge, Cambridge CB2 0AW, UK.

出版信息

Polymers (Basel). 2023 Nov 16;15(22):4420. doi: 10.3390/polym15224420.

Abstract

The helical arrangement of cardiac muscle fibres underpins the contractile properties of the heart chamber. Across the heart wall, the helical angle of the aligned fibres changes gradually across the range of 90-180°. It is essential to recreate this structural hierarchy in vitro for developing functional artificial tissue. Ice templating can achieve single-oriented pore alignment via unidirectional ice solidification with a flat base mould design. We hypothesise that the orientation of aligned pores can be controlled simply via base topography, and we propose a scalable base design to recapitulate the transmural fibre orientation. We have utilised finite element simulations for rapid testing of base designs, followed by experimental confirmation of the Bouligand-like orientation. X-ray microtomography of experimental samples showed a gradual shift of 106 ± 10°, with the flexibility to tailor pore size and spatial helical angle distribution for personalised medicine.

摘要

心肌纤维的螺旋排列是心腔收缩特性的基础。在整个心脏壁上,排列的纤维的螺旋角在90°至180°范围内逐渐变化。在体外重建这种结构层次对于开发功能性人工组织至关重要。冰模板法可以通过使用平底模具设计的单向冰凝固来实现单方向的孔排列。我们假设排列的孔的方向可以通过基底形貌简单地控制,并且我们提出了一种可扩展的基底设计来重现透壁纤维方向。我们利用有限元模拟对基底设计进行快速测试,随后通过实验证实了类似布利冈结构的方向。实验样品的X射线显微断层扫描显示出106±10°的逐渐变化,并且能够灵活调整孔径和空间螺旋角分布以用于个性化医疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62eb/10675392/879bdc641ca1/polymers-15-04420-g001.jpg

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