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通过机械约束的空间排列控制间充质组织重塑

Controlling Mesenchyme Tissue Remodeling via Spatial Arrangement of Mechanical Constraints.

作者信息

Winston Tackla S, Chen Chao, Suddhapas Kantaphon, Tarris Bearett A, Elattar Saif, Sun Shiyang, Zhang Teng, Ma Zhen

机构信息

Department of Biomedical and Chemical Engineering, Syracuse University, Syracuse, NY, United States.

BioInspired Syracuse Institute for Materials and Living Systems, Syracuse University, Syracuse, NY, United States.

出版信息

Front Bioeng Biotechnol. 2022 Feb 18;10:833595. doi: 10.3389/fbioe.2022.833595. eCollection 2022.

Abstract

Tissue morphogenetic remodeling plays an important role in tissue repair and homeostasis and is often governed by mechanical stresses. In this study, we integrated an mesenchymal tissue experimental model with a volumetric contraction-based computational model to investigate how geometrical designs of tissue mechanical constraints affect the tissue remodeling processes. Both experimental data and simulation results verified that the standing posts resisted the bulk contraction of the tissues, leading to tissue thinning around the posts as gap extension and inward remodeling at the edges as tissue compaction. We changed the geometrical designs for the engineered mesenchymal tissues with different shapes of posts arrangements (triangle vs. square), different side lengths (6 mm vs. 8 mm), and insertion of a center post. Both experimental data and simulation results showed similar trends of tissue morphological changes of significant increase of gap extension and deflection compaction with larger tissues. Additionally, insertion of center post changed the mechanical stress distribution within the tissues and stabilized the tissue remodeling. This experimental-computational integrated model can be considered as a promising initiative for future mechanistic understanding of the relationship between mechanical design and tissue remodeling, which could possibly provide design rationale for tissue stability and manufacturing.

摘要

组织形态发生重塑在组织修复和内环境稳定中发挥着重要作用,并且通常受机械应力支配。在本研究中,我们将间充质组织实验模型与基于体积收缩的计算模型相结合,以研究组织机械约束的几何设计如何影响组织重塑过程。实验数据和模拟结果均证实,立柱抵抗了组织的整体收缩,导致立柱周围的组织变薄,形成间隙扩展,边缘处向内重塑形成组织压实。我们改变了工程化间充质组织的几何设计,包括不同形状的立柱排列(三角形与正方形)、不同边长(6毫米与8毫米)以及插入中心立柱。实验数据和模拟结果均显示出类似的组织形态变化趋势,即随着组织变大,间隙扩展和偏转压实显著增加。此外,插入中心立柱改变了组织内的机械应力分布,并稳定了组织重塑。这种实验 - 计算集成模型可被视为未来从机械学角度理解机械设计与组织重塑之间关系的一项有前景的举措,这可能为组织稳定性和制造提供设计原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6fd/8896258/a56413d92087/fbioe-10-833595-g001.jpg

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