Kantaros Antreas, Petrescu Florian Ion Tiberiu, Ganetsos Theodore
Department of Industrial Design and Production Engineering, University of West Attica, 12244 Athens, Greece.
"Theory of Mechanisms and Robots" Department, Faculty of Industrial Engineering and Robotics, National University of Science and Technology Polytechnic Bucharest, 060042 Bucharest, Romania.
Biomimetics (Basel). 2025 Feb 19;10(2):125. doi: 10.3390/biomimetics10020125.
The sector of 4D printing represents a new frontier in additive manufacturing that allows for a material's capability to adapt and respond to various stimuli, such as thermal transitions, humidity, and pH levels. The adaptability of such a material has great potential in healthcare applications, especially in designing personalized and responsive medical devices. This article looks into the revolutionary potential of healthcare applications of 4D printing, referencing applications in self-repairable implants, smart stents, personalized drug delivery systems, and response-based prosthetic devices. The advances in 3D printing have created a platform for such innovations to take place, while the material properties unique to 4D printing allow new methods of tackling existing health issues. However, the large-scale application of 4D printing in medicine is currently hampered by material limitations, regulation challenges, and financial challenges. In spite of these challenges, ongoing advances in technologies, combined with artificial intelligence and machine learning, provide the potential to surpass such challenges, hence improving the precision, efficacy, and personalization of medical devices. This work outlines existing applications, looks at potential areas of application in the future, and analyzes potential applications of 4D printing contributing to healthcare, recognizing challenges that need to be overcome in order to unlock its full potential.
4D打印领域代表了增材制造的一个新前沿,它使材料能够适应并响应各种刺激,如热转变、湿度和pH值水平。这种材料的适应性在医疗保健应用中具有巨大潜力,特别是在设计个性化和响应性医疗设备方面。本文探讨了4D打印在医疗保健应用中的变革潜力,并参考了其在可自我修复植入物、智能支架、个性化药物输送系统和基于响应的假肢装置等方面的应用。3D打印的进步为这些创新创造了一个平台,而4D打印独特的材料特性则带来了解决现有健康问题的新方法。然而,4D打印在医学上的大规模应用目前受到材料限制、监管挑战和资金挑战的阻碍。尽管存在这些挑战,但技术的不断进步,再加上人工智能和机器学习,提供了超越这些挑战的潜力,从而提高医疗设备的精度、功效和个性化程度。这项工作概述了现有应用,展望了未来潜在的应用领域,并分析了4D打印对医疗保健的潜在应用,同时认识到为释放其全部潜力而需要克服的挑战。