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Dose and Timing of N-Cadherin Mimetic Peptides Regulate MSC Chondrogenesis within Hydrogels.N-钙黏蛋白模拟肽的剂量和时间调节水凝胶中的 MSC 软骨形成。
Adv Healthc Mater. 2018 May;7(9):e1701199. doi: 10.1002/adhm.201701199. Epub 2018 Jan 23.
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Role of dexamethasone in the long-term functional maturation of MSC-laden hyaluronic acid hydrogels for cartilage tissue engineering.地塞米松在用于软骨组织工程的负载间充质干细胞的透明质酸水凝胶长期功能成熟中的作用
J Orthop Res. 2018 Jun;36(6):1717-1727. doi: 10.1002/jor.23815. Epub 2017 Dec 29.
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Enhanced nutrient transport improves the depth-dependent properties of tri-layered engineered cartilage constructs with zonal co-culture of chondrocytes and MSCs.增强的营养物质运输改善了通过软骨细胞与间充质干细胞的区域共培养构建的三层工程软骨构建体的深度依赖性特性。
Acta Biomater. 2017 Aug;58:1-11. doi: 10.1016/j.actbio.2017.06.025. Epub 2017 Jun 16.
4
Recent strategies in cartilage repair: A systemic review of the scaffold development and tissue engineering.软骨修复的最新策略:支架开发与组织工程的系统综述
J Biomed Mater Res A. 2017 Aug;105(8):2343-2354. doi: 10.1002/jbm.a.36087. Epub 2017 May 10.
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Recent advances in hydrogels for cartilage tissue engineering.用于软骨组织工程的水凝胶的最新进展。
Eur Cell Mater. 2017 Jan 30;33:59-75. doi: 10.22203/eCM.v033a05.
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Hydrogels that mimic developmentally relevant matrix and N-cadherin interactions enhance MSC chondrogenesis.水凝胶模拟发育相关的基质和 N-钙黏蛋白相互作用可增强间充质干细胞的软骨生成。
Proc Natl Acad Sci U S A. 2013 Jun 18;110(25):10117-22. doi: 10.1073/pnas.1214100110. Epub 2013 Jun 3.
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The effect of donor variation and senescence on endothelial differentiation of human mesenchymal stromal cells.供体变异和衰老对人骨髓间充质基质细胞内皮分化的影响。
Tissue Eng Part A. 2013 Nov;19(21-22):2318-29. doi: 10.1089/ten.TEA.2012.0646. Epub 2013 Jun 26.
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Tissue engineering for articular cartilage repair--the state of the art.关节软骨修复的组织工程——现状。
Eur Cell Mater. 2013 May 2;25:248-67. doi: 10.22203/ecm.v025a18.
9
Applications and emerging trends of hyaluronic acid in tissue engineering, as a dermal filler and in osteoarthritis treatment.透明质酸在组织工程、作为皮肤填充剂和骨关节炎治疗中的应用和新兴趋势。
Acta Biomater. 2013 Jul;9(7):7081-92. doi: 10.1016/j.actbio.2013.03.005. Epub 2013 Mar 15.
10
High mesenchymal stem cell seeding densities in hyaluronic acid hydrogels produce engineered cartilage with native tissue properties.高间充质干细胞接种密度在透明质酸水凝胶中产生具有天然组织特性的工程化软骨。
Acta Biomater. 2012 Aug;8(8):3027-34. doi: 10.1016/j.actbio.2012.04.033. Epub 2012 Apr 27.

透明质酸中人类间充质干细胞软骨分化的供体差异和优化。

Donor Variation and Optimization of Human Mesenchymal Stem Cell Chondrogenesis in Hyaluronic Acid.

机构信息

1 McKay Orthopaedic Research Laboratory, Department of Orthopaedic Surgery, Perelman School of Medicine, University of Pennsylvania , Philadelphia, Pennsylvania.

2 Department of Bioengineering, School of Engineering and Applied Science, University of Pennsylvania , Philadelphia, Pennsylvania.

出版信息

Tissue Eng Part A. 2018 Nov;24(21-22):1693-1703. doi: 10.1089/ten.TEA.2017.0520. Epub 2018 Sep 21.

DOI:10.1089/ten.TEA.2017.0520
PMID:29792383
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6238652/
Abstract

Mesenchymal stem cells (MSCs) are an attractive cell type for cartilage repair that can undergo chondrogenesis in a variety of three-dimensional (3D) scaffolds. Hyaluronic acid (HA) hydrogels provide a biologically relevant interface for cell encapsulation. While previous studies have shown that MSC-laden HA constructs can mature in vitro to match native mechanical properties using cells from animal sources, clinical application will depend on the successful translation of these findings to human cells. Though numerous studies have investigated chondrogenesis of human MSC (hMSC)-laden constructs, their functional outcomes were quite inferior to those using animal sources, and donor-specific responses to 3D HA hydrogels have not been fully investigated. To that end, hMSCs were derived from seven donors, and their ability to undergo chondrogenesis in pellet culture and HA hydrogels was evaluated. Given the initial observation of overt cell aggregation and/or gel contraction for some donors, the impact of variation in cell and HA macromer concentration on functional outcomes during chondrogenesis was evaluated using one young/healthy donor. The findings show marked differences in functional chondrogenesis of hMSCs in 3D HA hydrogels based on donor. Increasing cell density resulted in increased mechanical properties, but also promoted construct contraction. Increasing the macromer density generally stabilized construct dimensions and increased extracellular matrix production, but limited the distribution of formed matrix at the center of the construct and reduced mechanical properties. Collectively, these findings suggest that the use of hMSCs may require tuning of cell density and gel mechanics on a donor-by-donor basis to provide for the most robust tissue formation for clinical application.

摘要

间充质干细胞(MSCs)是一种有吸引力的软骨修复细胞类型,可在多种三维(3D)支架中进行软骨生成。透明质酸(HA)水凝胶为细胞包封提供了具有生物相关性的界面。虽然先前的研究表明,负载 MSC 的 HA 构建体可以在体外使用动物来源的细胞成熟,以匹配天然机械性能,但临床应用将取决于这些发现成功转化为人类细胞。尽管有许多研究调查了负载人 MSC(hMSC)的构建体的软骨生成,但它们的功能结果远不如使用动物来源的构建体,并且对 3D HA 水凝胶的供体特异性反应尚未得到充分研究。为此,从七位供体中分离出 hMSC,并评估其在微球培养和 HA 水凝胶中软骨生成的能力。鉴于一些供体最初观察到明显的细胞聚集和/或凝胶收缩,使用一位年轻/健康的供体评估了细胞和 HA 大分子浓度变化对软骨生成过程中功能结果的影响。研究结果表明,基于供体的 hMSC 在 3D HA 水凝胶中的功能软骨生成存在显著差异。增加细胞密度会导致机械性能增加,但也会促进构建体收缩。增加大分子密度通常会稳定构建体尺寸并增加细胞外基质的产生,但会限制形成基质在构建体中心的分布并降低机械性能。总之,这些发现表明,使用 hMSC 可能需要根据供体调整细胞密度和凝胶力学,以为临床应用提供最稳健的组织形成。