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用于平衡细胞增殖和分化的软水凝胶。

Soft Hydrogels for Balancing Cell Proliferation and Differentiation.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials and Engineering, Sichuan University, 610065 Chengdu, China.

Department of Cellular Biophysics, Max Planck Institute for Medical Research, Jahnstraße 29, 69120 Heidelberg, Germany.

出版信息

ACS Biomater Sci Eng. 2020 Aug 10;6(8):4687-4701. doi: 10.1021/acsbiomaterials.0c00854. Epub 2020 Jul 24.

Abstract

Hydrogels have been widely explored for the delivery of cells in a variety of regenerative medicine applications due to their ability to mimic both the biochemical and physical cues of cell microniches. For bone regeneration, in particular, stiff hydrogels mimicking osteoid stiffness have been utilized due to the fact that stiff substrates favor stem cell osteogenic differentiation. Unlike cell adhesion in two dimensions, three-dimensional hydrogels offer mechanical stimulation but limit the cell spreading and growth due to the dense matrix network. Therefore, we designed degradable, soft hydrogels (∼0.5 kPa) mimicking the soft bone marrow stiffness, with incorporated matrix metalloproteinase (MMP)-cleavable sites and RGD-based adhesive sites, to enhance the spreading and proliferation of the encapsulated cells, which are commonly inhibited in nondegradable and/or stiff implants. When the hydrogels were cultured on rigid surfaces to mirror the microenvironment of bone defects in vivo, the cells were shown to migrate toward the interface and differentiate down the osteogenic lineage, enhanced by the codelivery of bone morphogenetic protein-2 (BMP-2). Furthermore, this soft hydrogel might find applications in therapeutic interventions since it is easily injectable and cost-efficient. Taken together, we have designed a new system to balance cell growth and differentiation for improving hydrogel-based bone regenerative medicine strategies.

摘要

水凝胶由于能够模拟细胞微环境的生化和物理线索,因此在多种再生医学应用中被广泛探索用于细胞的递送。特别是对于骨再生,由于硬基底有利于干细胞成骨分化,因此利用了模拟类骨质硬度的硬水凝胶。与二维的细胞黏附不同,三维水凝胶提供机械刺激,但由于致密的基质网络,限制了细胞的扩展和生长。因此,我们设计了可降解的、柔软的水凝胶(约 0.5 kPa),模拟柔软的骨髓硬度,其中包含基质金属蛋白酶(MMP)可切割位点和 RGD 基黏附位点,以增强包封细胞的扩展和增殖,而在不可降解和/或硬植入物中,这些细胞通常受到抑制。当水凝胶在刚性表面上培养以模拟体内骨缺损的微环境时,细胞被显示向界面迁移并沿着成骨谱系分化,这是通过骨形态发生蛋白 2(BMP-2)的共递送增强的。此外,由于这种柔软的水凝胶易于注射且具有成本效益,因此可能会在治疗干预中找到应用。总之,我们设计了一种新的系统来平衡细胞生长和分化,以改善基于水凝胶的骨再生医学策略。

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