再生医学
工程伦理学
多学科方法
经济短缺
叙述性评论
精密医学
医学
移植
重要事件
风险分析(工程)
器官移植
计算机科学
管理科学
再生(生物学)
工程类
梅德林
重症监护医学
个性化医疗
作者
Domiziana Picone,Giuseppa D’Amico,Adelaide Carista,Olga Maria Manna,Stefano Burgio,Alberto Fucarino
出处
期刊:
[Multidisciplinary Digital Publishing Institute]
日期:2025-11-18
卷期号:4 (4): 52-52
标识
DOI:10.3390/applbiosci4040052
摘要
The critical shortage of donor organs remains the foremost challenge in transplantation medicine. Nevertheless, advancements in robotic-assisted surgery (RAS), artificial intelligence (AI)-enhanced donor–recipient matching, and bioengineering—particularly 3D bioprinting—are revolutionizing the field. Today, RAS has evolved from an innovative technique into a reliable clinical tool, with evidence indicating that it enhances surgical precision and results in better patient outcomes. Meanwhile, AI and machine learning are advancing donor–recipient matching and allocation, producing models that offer superior predictive accuracy for graft survival compared to traditional methods. Additionally, bioengineering strategies, especially 3D bioprinting and tissue engineering, are progressing from the creation of acellular scaffolds to the development of vascularized constructs, marking a significant milestone toward functional organ replacement. Despite persistent challenges such as high costs, regulatory obstacles, new structured formation programs, and the necessity for effective vascularization in engineered tissues, the integration of these disciplines is forging a new paradigm in regenerative medicine. The primary objective of this review is to synthesize multidisciplinary innovations by leveraging clinical studies and technological assessments to delineate future directions in regenerative medicine and organ transplantation.
科研通智能强力驱动
Strongly Powered by AbleSci AI