Engineering Research Center of Western Resource Innovation Medicine Green Manufacturing, Ministry of Education, School of Chemical Engineering, Northwest University, Xi'an, 710069, China.
Shaanxi Key Laboratory of Degradable Biomedical Materials and Shaanxi R&D Center of Biomaterials and Fermentation Engineering, School of Chemical Engineering, Northwest University, Xi'an, 710069, China.
Biomater Sci. 2024 May 14;12(10):2504-2520. doi: 10.1039/d3bm01875j.
In recent years, the design and synthesis of Janus hydrogels have witnessed a thriving development, overcoming the limitations of single-performance materials and expanding their potential applications in tissue engineering and regenerative medicine. Janus hydrogels, with their exceptional mechanical properties and excellent biocompatibility, have emerged as promising candidates for various biomedical applications, including tissue engineering and regenerative therapies. In this review, we present the latest progress in the synthesis of Janus hydrogels using commonly employed preparation methods. We elucidate the surface and interface interactions of these hydrogels and discuss the enhanced properties bestowed by the unique "Janus" structure in biomaterials. Additionally, we explore the applications of Janus hydrogels in facilitating regenerative therapies, such as drug delivery, wound healing, tissue engineering, and biosensing. Furthermore, we analyze the challenges and future trends associated with the utilization of Janus hydrogels in biomedical applications.
近年来,Janus 水凝胶的设计和合成取得了蓬勃的发展,克服了单一性能材料的局限性,并扩大了它们在组织工程和再生医学中的潜在应用。Janus 水凝胶具有优异的机械性能和良好的生物相容性,有望成为各种生物医学应用的候选材料,包括组织工程和再生治疗。在本文中,我们介绍了使用常用制备方法合成 Janus 水凝胶的最新进展。我们阐述了这些水凝胶的表面和界面相互作用,并讨论了独特的“Janus”结构在生物材料中赋予的增强性能。此外,我们还探讨了 Janus 水凝胶在促进再生治疗中的应用,如药物输送、伤口愈合、组织工程和生物传感。此外,我们分析了在生物医学应用中使用 Janus 水凝胶所面临的挑战和未来趋势。