Cossu Giulia, Le Van Tuan, Kerherve Luc, Houidi Sayda A, Morlaix Edouard, Bonneville Florent, Chapon Renan, Baland Olivier, Cao Catherine, Lleu Maxime, Farah Walid, El Cadhi Ahmed, Beaurain Jacques, Picart Thiebaud, Xu Bin, Berhouma Moncef
Department of Neurosurgery, University Hospital of Lausanne and University of Lausanne, Lausanne, Switzerland.
Department of Neurosurgery, University Hospital of Dijon Bourgogne, Dijon, France.
Brain Spine. 2024 Oct 10;4:103928. doi: 10.1016/j.bas.2024.103928. eCollection 2024.
The introduction of intraoperative fluorophores represented a significant advancement in neurosurgical practice. Nowadays they found different applications: in oncology to improve the visualization of tumoral tissue and optimize resection rates and in vascular neurosurgery to assess the exclusion of vascular malformations or the permeability of bypasses, with real-time intraoperative evaluations.
A comprehensive knowledge of how fluorophores work is crucial to maximize their benefits and to incorporate them into daily neurosurgical practice. We would like to revise here their applications and clinical relevance.
A focused literature review of relevant articles dealing with the versatile applications of fluorophores in neurosurgery was performed.
The fundamental mechanisms of action of intraoperative fluorophores are enlightened, examining their interactions with target tissues and the principles driving fluorescence-guided surgery. The clinical applications of the principal fluorophores, namely fluorescein sodium, 5-ALA and indocyanine green, are detailed, in regards to the management of vascular malformations, brain tumors and pathologies treated through endoscopic endonasal approaches.
Future perspective dealing with the development of new technologies or of new molecules are discussed. By critically assessing the efficacy and applications of the different fluorophores, as well as charting their potential future uses, this paper seeks to guide clinicians in their practice and provide insights for driving innovation and progress in fluorescence-based surgery and research.
术中荧光团的引入是神经外科实践中的一项重大进展。如今,它们有不同的应用:在肿瘤学中用于改善肿瘤组织的可视化并优化切除率,在血管神经外科中用于评估血管畸形的排除情况或旁路的通透性,并进行实时术中评估。
全面了解荧光团的工作原理对于最大化其益处并将其纳入日常神经外科实践至关重要。我们在此想回顾一下它们的应用及临床相关性。
对有关荧光团在神经外科中广泛应用的相关文章进行了重点文献综述。
阐述了术中荧光团的基本作用机制,研究了它们与靶组织的相互作用以及荧光引导手术的驱动原理。详细介绍了主要荧光团,即荧光素钠、5-氨基乙酰丙酸和吲哚菁绿在血管畸形、脑肿瘤以及通过鼻内镜鼻内入路治疗的疾病管理方面的临床应用。
讨论了涉及新技术或新分子开发的未来前景。通过批判性地评估不同荧光团的疗效和应用,并规划它们未来的潜在用途,本文旨在指导临床医生的实践,并为推动基于荧光的手术和研究的创新与进步提供见解。