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一种用于在资源有限环境中对早期口腔癌进行光动力疗法治疗的低成本、便携式、基于发光二极管的设备的研发与评估。

Development and evaluation of a low-cost, portable, LED-based device for PDT treatment of early-stage oral cancer in resource-limited settings.

作者信息

Liu Hui, Daly Liam, Rudd Grant, Khan Amjad P, Mallidi Srivalleesha, Liu Yiran, Cuckov Filip, Hasan Tayyaba, Celli Jonathan P

机构信息

Department of Physics, University of Massachusetts, Boston, Massachusetts, 02125.

Department of Engineering, University of Massachusetts, Boston, Massachusetts, 02125.

出版信息

Lasers Surg Med. 2019 Apr;51(4):345-351. doi: 10.1002/lsm.23019. Epub 2018 Aug 31.

Abstract

BACKGROUND

Photodynamic therapy (PDT) using δ-aminolevulinic acid (ALA) photosensitization has shown promise in clinical studies for the treatment of early-stage oral malignancies with fewer potential side effects than traditional therapies. Light delivery to oral lesions can also carried out with limited medical infrastructure suggesting the potential for implementation of PDT in global health settings.

OBJECTIVES

We sought to develop a cost-effective, battery-powered, fiber-coupled PDT system suitable for intraoral light delivery enabled by smartphone interface and embedded electronics for ease of operation.

METHODS

Device performance was assessed in measurements of optical power output, spectral stability, and preclinical assessment of PDT response in ALA-photosensitized squamous carcinoma cell cultures and murine subcutaneous tumor xenografts.

RESULTS

The system achieves target optoelectronic performance with a stable battery-powered output of approximately 180 mW from the fiber tip within the desired spectral window for PpIX activation. The device has a compact configuration, user friendly operation and flexible light delivery for the oral cavity. In cell culture, we show that the overall dose-response is consistent with established light sources and complete cell death of ALA photosensitized cells can be achieved in the irradiated zone. In vivo PDT response (reduction in tumor volume) is comparable with a commercial 635 nm laser.

CONCLUSIONS

We developed a low-cost, LED-based, fiber-coupled PDT light delivery source that has stable output on battery power and suitable form factor for deployment in rural and/or resource-limited settings. Lasers Surg. Med. 9999:1-7, 2018. © 2018 Wiley Periodicals, Inc.

摘要

背景

使用δ-氨基乙酰丙酸(ALA)光敏化的光动力疗法(PDT)在临床研究中已显示出治疗早期口腔恶性肿瘤的潜力,与传统疗法相比,其潜在副作用更少。在医疗基础设施有限的情况下也可进行口腔病变的光输送,这表明在全球卫生环境中实施PDT具有潜力。

目的

我们试图开发一种经济高效、由电池供电、光纤耦合的PDT系统,该系统适用于通过智能手机界面和嵌入式电子设备进行口腔内光输送,操作简便。

方法

通过测量光功率输出、光谱稳定性以及在ALA光敏化的鳞状癌细胞培养物和小鼠皮下肿瘤异种移植模型中对PDT反应的临床前评估来评估设备性能。

结果

该系统实现了目标光电性能,在用于激活原卟啉IX(PpIX)的所需光谱窗口内,光纤尖端由电池供电的稳定输出约为180 mW。该设备结构紧凑,操作方便,可为口腔提供灵活的光输送。在细胞培养中,我们表明总体剂量反应与既定光源一致,并且在照射区域可实现ALA光敏化细胞的完全死亡。体内PDT反应(肿瘤体积减小)与商用635 nm激光相当。

结论

我们开发了一种低成本、基于发光二极管(LED)的、光纤耦合的PDT光输送源,该光源在电池供电下具有稳定输出,并且具有适合在农村和/或资源有限环境中部署的外形尺寸。《激光外科与医学》9999:1 - 7, 2018。© 2018威利期刊公司。

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