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用于软骨再生的次摆线支架。

Hypotrochoidal scaffolds for cartilage regeneration.

作者信息

van Kampen Kenny A, Olaret Elena, Stancu Izabela-Cristina, Duarte Campos Daniela F, Fischer Horst, Mota Carlos, Moroni Lorenzo

机构信息

Department of Complex Tissue Regeneration, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University, Universiteitsingel 40, 6229ER, Maastricht, the Netherlands.

Advanced Polymer Materials Group, University Politehnica of Bucharest, 1-7 Gh. Polizu Street, 011061, Bucharest, Romania.

出版信息

Mater Today Bio. 2023 Oct 14;23:100830. doi: 10.1016/j.mtbio.2023.100830. eCollection 2023 Dec.

Abstract

The main function of articular cartilage is to provide a low friction surface and protect the underlying subchondral bone. The extracellular matrix composition of articular cartilage mainly consists of glycosaminoglycans and collagen type II. Specifically, collagen type II fibers have an arch-like organization that can be mimicked with segments of a hypotrochoidal curve. In this study, a script was developed that allowed the fabrication of scaffolds with a hypotrochoidal design. This design was investigated and compared to a regular 0-90 woodpile design. The mechanical analyses revealed that the hypotrochoidal design had a lower component Young's modulus while the toughness and strain at yield were higher compared to the woodpile design. Fatigue tests showed that the hypotrochoidal design lost more energy per cycle due to the damping effect of the unique microarchitecture. In addition, data from cell culture under dynamic stimulation demonstrated that the collagen type II deposition was improved and collagen type X reduced in the hypotrochoidal design. Finally, Alcian blue staining revealed that the areas where the stress was higher during the stimulation produced more glycosaminoglycans. Our results highlight a new and simple scaffold design based on hypotrochoidal curves that could be used for cartilage tissue engineering.

摘要

关节软骨的主要功能是提供低摩擦表面并保护其下方的软骨下骨。关节软骨的细胞外基质成分主要由糖胺聚糖和II型胶原蛋白组成。具体而言,II型胶原纤维具有拱形结构,可用次摆线曲线段模拟。在本研究中,开发了一种脚本,可用于制造具有次摆线设计的支架。对该设计进行了研究,并与常规的0-90木堆设计进行了比较。力学分析表明,与木堆设计相比,次摆线设计的部件杨氏模量较低,而韧性和屈服应变较高。疲劳试验表明,由于独特微结构的阻尼作用,次摆线设计每个循环损失的能量更多。此外,动态刺激下的细胞培养数据表明,在次摆线设计中II型胶原蛋白沉积增加,X型胶原蛋白减少。最后,阿尔新蓝染色显示,刺激过程中应力较高的区域产生了更多的糖胺聚糖。我们的结果突出了一种基于次摆线曲线的新型简单支架设计,可用于软骨组织工程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6ba/10590751/caeb52be6310/ga1.jpg

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