Gómez-Fernández Hodei, Alhakim-Khalak Fouad, Ruiz-Alonso Sandra, Díaz Aitor, Tamayo Julen, Ramalingam Murugam, Larra Eva, Pedraz José L
NanoBioCel Research Group, Laboratory of Pharmacy and Pharmaceutical Technology. Department of Pharmacy and Food Science, Faculty of Pharmacy, University of the Basque Country (UPV/EHU), Paseo de la Universidad 7, 01006 Vitoria-Gasteiz, Spain; AJL Ophthalmic, Ferdinand Zeppelin Kalea, 01510 Vitoria-Gasteiz, Spain.
NanoBioCel Research Group, Laboratory of Pharmacy and Pharmaceutical Technology. Department of Pharmacy and Food Science, Faculty of Pharmacy, University of the Basque Country (UPV/EHU), Paseo de la Universidad 7, 01006 Vitoria-Gasteiz, Spain; Bioaraba, NanoBioCel Research Group, 01009 Vitoria-Gasteiz, Spain; Networking Research Centre of Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Institute of Health Carlos III, 28029 Madrid, Spain.
Int J Pharm. 2024 Sep 5;662:124510. doi: 10.1016/j.ijpharm.2024.124510. Epub 2024 Jul 23.
The global shortage of corneal transplants has spurred an urgency in the quest for efficient treatments. This systematic review not only provides a concise overview of the current landscape of corneal morphology, physiology, diseases, and conventional treatments but crucially delves into the forefront of tissue engineering for corneal regeneration. Emphasizing cellular and acellular components, bioprinting techniques, and pertinent biological assays, it explores optimization strategies for manufacturing and cost-effectiveness. To bridge the gap between research and industrial production, the review outlines the essential regulatory strategy required in Europe, encompassing relevant directives, frameworks, and governing bodies. This comprehensive regulatory framework spans the entire process, from procuring initial components to marketing and subsequent product surveillance. In a pivotal shift towards the future, the review culminates by highlighting the latest advancements in this sector, particularly the integration of tissue therapy with artificial intelligence. This synergy promises substantial optimization of the overall process, paving the way for unprecedented breakthroughs in corneal regeneration. In essence, this review not only elucidates the current state of corneal treatments and tissue engineering but also outlines regulatory pathways and anticipates the transformative impact of artificial intelligence, providing a comprehensive guide for researchers, practitioners, and policymakers in the field.
全球角膜移植供体短缺促使人们迫切寻求有效的治疗方法。本系统综述不仅简要概述了角膜形态学、生理学、疾病及传统治疗方法的现状,还深入探讨了角膜再生组织工程的前沿领域。综述强调了细胞和无细胞成分、生物打印技术及相关生物学检测,探索了制造优化策略和成本效益。为弥合研究与工业生产之间的差距,综述概述了欧洲所需的基本监管策略,包括相关指令、框架和管理机构。这一全面的监管框架涵盖了从采购初始组件到营销及后续产品监测的全过程。在迈向未来的关键转变中,综述通过突出该领域的最新进展,特别是组织治疗与人工智能的整合而告终。这种协同作用有望大幅优化整个过程,为角膜再生带来前所未有的突破。本质上,本综述不仅阐明了角膜治疗和组织工程的现状,还概述了监管途径,并预测了人工智能的变革性影响,为该领域的研究人员、从业者和政策制定者提供了全面指南。