Faculty of Biomedical Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Science. 2012 Jun 1;336(6085):1124-8. doi: 10.1126/science.1214804.
Hydrogels are polymeric materials distinguished by high water content and diverse physical properties. They can be engineered to resemble the extracellular environment of the body's tissues in ways that enable their use in medical implants, biosensors, and drug-delivery devices. Cell-compatible hydrogels are designed by using a strategy of coordinated control over physical properties and bioactivity to influence specific interactions with cellular systems, including spatial and temporal patterns of biochemical and biomechanical cues known to modulate cell behavior. Important new discoveries in stem cell research, cancer biology, and cellular morphogenesis have been realized with model hydrogel systems premised on these designs. Basic and clinical applications for hydrogels in cell therapy, tissue engineering, and biomedical research continue to drive design improvements using performance-based materials engineering paradigms.
水凝胶是一类具有高含水量和多样化物理性质的高分子材料。它们可以通过工程设计来模拟生物体组织的细胞外环境,从而应用于医学植入物、生物传感器和药物输送装置。细胞相容的水凝胶是通过协调控制物理性质和生物活性的策略来设计的,以影响与细胞系统的特定相互作用,包括已知可以调节细胞行为的生物化学和生物力学线索的时空模式。基于这些设计的模型水凝胶系统已经实现了干细胞研究、癌症生物学和细胞形态发生学的重要新发现。水凝胶在细胞治疗、组织工程和生物医学研究中的基础和临床应用继续推动使用基于性能的材料工程范例进行设计改进。