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水凝胶溶胀介导的应变诱导牙本质界面处的细胞排列。

Hydrogel Swelling-Mediated Strain Induces Cell Alignment at Dentin Interfaces.

机构信息

Eastman Institute for Oral Health, Department of Periodontology, University of Rochester Medical Center, Rochester, New York 14620, United States.

Translational Biomedical Science, University of Rochester Medical Center, Rochester, New York 14642, United States.

出版信息

ACS Biomater Sci Eng. 2022 Aug 8;8(8):3568-3575. doi: 10.1021/acsbiomaterials.2c00566. Epub 2022 Jul 6.

Abstract

Cell and tissue alignment is a defining feature of periodontal tissues. Therefore, the development of scaffolds that can guide alignment of periodontal ligament cells (PDLCs) relative to tooth root (dentin) surfaces is highly relevant for periodontal tissue engineering. To control PDLC alignment adjacent to the dentin surface, poly(ethylene glycol) (PEG)-based hydrogels were explored as a highly tunable matrix for encapsulating cells and directing their activity. Specifically, a composite system consisting of dentin blocks, PEG hydrogels, and PDLCs was created to control PDLC alignment through hydrogel swelling. PDLCs in composites with minimal hydrogel swelling showed random alignment adjacent to dentin blocks. In direct contrast, the presence of hydrogel swelling resulted in PDLC alignment perpendicular to the dentin surface, with the degree and extension of alignment increasing as a function of swelling. Replicating this phenomenon with different molds, block materials, and cells, together with predictive modeling, indicated that PDLC alignment was primarily a biomechanical response to swelling-mediated strain. Altogether, this study describes a novel method for inducing cell alignment adjacent to stiff surfaces through applied strain and provides a model for the study and engineering of periodontal and other aligned tissues.

摘要

细胞和组织的定向排列是牙周组织的一个显著特征。因此,开发能够引导牙周韧带细胞(PDLCs)相对于牙根(牙本质)表面定向排列的支架对于牙周组织工程具有重要意义。为了控制与牙本质表面相邻的 PDLC 排列,聚乙二醇(PEG)基水凝胶被探索作为一种高度可调的基质,用于封装细胞并指导其活性。具体来说,创建了由牙本质块、PEG 水凝胶和 PDLC 组成的复合材料系统,通过水凝胶溶胀来控制 PDLC 排列。在具有最小水凝胶溶胀的复合材料中的 PDLC 显示出与牙本质块相邻的随机排列。与此形成鲜明对比的是,水凝胶溶胀的存在导致 PDLC 与牙本质表面垂直排列,其排列程度和延伸度随着溶胀的增加而增加。通过使用不同的模具、块材料和细胞来复制这种现象,以及预测建模,表明 PDLC 排列主要是对溶胀介导的应变的生物力学反应。总的来说,这项研究描述了一种通过施加应变诱导细胞在刚性表面附近排列的新方法,并为牙周和其他排列组织的研究和工程提供了一个模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27ad/9364318/e5edc36e405e/ab2c00566_0002.jpg

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