Light emitting fabrics for photodynamic therapy: Technology, experimental and clinical applications

S. Mordon, E. Thecua, L. Ziane, F. Lecomte, P. Deleporte, G. Baert, A. Vignion-Dewalle
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引用次数: 11

Abstract

A homogeneous and reproducible fluence rate delivery during clinical PDT (PhotoDynamic Therapy) plays a determinant role in preventing under-or overtreatment. The development of a flexible light source able to generate uniform light on all its surface would considerably improve the homogeneity of light delivery. The integration of plastic optical fibers into textile structures offers an interesting alternative. This article aims to describe briefly the technology used to develop Light Emitting Fabrics (LEF) and their use in vitro (CELL-LEF), in vivo (VIVO-LEF) for experimental evaluation of PDT. At last, the use of LEF for clinical applications is given by 3 examples. For in-vitro applications, the CELL-LEF device allows the illumination of several 96-well cell culture plates. For the VIVO-LEF, the system developed for PDT can treat 3 mice simultaneously with a homogeneous and high irradiance The medical LEF systems developed for PDT in Dermatology for the treatment of actinic keratosis demonstrate their superiority thanks to a uniform light distribution due the flexibility of LEF. Interestingly, the technology used for manufacturing LEF is very well known by the textile industry, leading to very competitive production costs. The fact that optical fibers can transmit light from 400 nm to 1200 nm allows the connection of LEF to different laser sources covering the light spectrum of all photosensitizers used for medical applications. New developments should allow to use the LEF inside cavities such as the pleural or the peritoneal cavities.
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光动力治疗用发光织物:技术、实验和临床应用
在临床PDT(光动力治疗)中,均匀和可重复的通量率递送在防止治疗不足或过度方面起决定性作用。能够在其所有表面产生均匀光的柔性光源的发展将大大改善光传输的均匀性。将塑料光纤集成到纺织结构中提供了一个有趣的选择。本文旨在简要介绍用于开发发光织物(LEF)的技术以及它们在体外(CELL-LEF)和体内(vivo -LEF)中用于PDT实验评估的技术。最后,通过3个实例介绍了LEF在临床中的应用。对于体外应用,cell - lef设备允许几个96孔细胞培养板的照明。对于VIVO-LEF,为PDT开发的系统可以同时以均匀和高辐照度治疗3只小鼠。用于皮肤病学PDT治疗光化性角化病的医疗LEF系统由于LEF的灵活性而具有均匀的光分布,因此具有优势。有趣的是,用于制造LEF的技术是纺织业非常熟悉的,导致非常有竞争力的生产成本。光纤可以传输400 nm到1200 nm的光,这一事实允许将LEF连接到不同的激光源,覆盖医疗应用中使用的所有光敏剂的光谱。新的发展应该允许在诸如胸膜腔或腹膜腔等腔内使用LEF。
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