Combined Application of Dual-Wavelength Fluorescence Monitoring and Contactless Thermometry during Photodynamic Therapy of Basal Cell Skin Cancer.

IF 1.1 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
Sovremennye Tehnologii v Medicine Pub Date : 2021-01-01 Epub Date: 2020-06-28 DOI:10.17691/stm2020.12.3.06
A M Mironycheva, M Yu Kirillin, A V Khilov, A Sh Malygina, D A Kurakina, V N Gutakovskaya, I V Turchin, N Yu Orlinskaya, I L Shlivko, I A Klemenova, O E Garanina, S V Gamayunov
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引用次数: 1

Abstract

The aim of the study was to assess the capabilities of combined application of dual-wavelength fluorescence visualization and contactless skin thermometry during photodynamic therapy monitoring (PDT) of basal cell cancer.

Materials and methods: The study was performed at the University Clinic of Privolzhsky Research Medical University (Nizhny Novgorod). Nine clinically, dermatoscopically, and histologically verified foci of basal cell skin cancer were exposed to PDT sessions (wavelength of 662 nm, light dose density of 150 J/cm2) with systemic application of chlorin-based photosensitizer Fotoditazin. A semiconductor laser system Latus-T (Russia) was employed for irradiation. Dual-wavelength fluorescence visualization and contactless thermometry with an IR pyrometer were used to monitor the PDT sessions.

Results: The PDT sessions of nine foci of basal cell cancer were carried out under the control of fluorescence imaging and contactless thermometry. Photosensitizer photobleaching in all foci amounted to 40% signifying a percent of photosensitizer involved in the photodynamic reaction. It has been shown that the combined employment of dual-wavelength fluorescence monitoring and contactless thermometry during the PDT of basal cell skin cancer allows oncologists to control simultaneously the degree of photosensitizer photobleaching and the depth of the photodynamic effect in tissues, the extent of involving the mechanisms associated with hyperthermia as well as the correctness of the procedure conducting. In the course of 9-month dynamic follow-up after the treatment, no clinical and dermatoscopic signs of recurrence were found.

Conclusion: A bimodal control of PDT enables the assessment of the correctness and efficacy of the procedure performance. The contactless control of tissue heating allows ensuring the temperature mode for hyperthermia realization, while the fluorescence monitoring makes it possible to evaluate the accumulation of the photosensitizer in the tumor and the depth of the PDT action as well as to predict the procedure efficacy based on the photobleaching data. The complementary use of these techniques allows the adjustment of the mode directly in the course of the PDT procedure. The acquisition of the sufficient statistical data on the combined monitoring will result in the development of a novel PDT protocol.

Abstract Image

Abstract Image

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双波长荧光监测与非接触式测温在基底细胞皮肤癌光动力治疗中的联合应用。
该研究的目的是评估双波长荧光可视化和非接触式皮肤测温在基底细胞癌光动力治疗监测(PDT)中的联合应用能力。材料和方法:本研究在Privolzhsky研究医科大学(Nizhny Novgorod)大学诊所进行。9例经临床、皮肤镜和组织学证实的基底细胞皮肤癌灶暴露于PDT(波长为662 nm,光剂量密度为150 J/cm2)下,全身应用氯基光敏剂Fotoditazin。采用半导体激光系统Latus-T(俄罗斯)进行辐照。采用双波长荧光可视化和红外高温计的非接触式测温来监测PDT过程。结果:在荧光成像和非接触式测温控制下,对9个基底细胞癌灶进行PDT。光敏剂光漂白在所有焦点达40%,表明光敏剂参与光动力反应的百分比。研究表明,在基底细胞皮肤癌的PDT过程中,双波长荧光监测和非接触式测温的结合使用使肿瘤学家能够同时控制光敏剂光漂白的程度和光动力效应在组织中的深度,涉及与热疗相关的机制的程度以及过程传导的正确性。在治疗后9个月的动态随访中,未发现临床及皮镜下复发征象。结论:PDT的双峰控制可以评估手术性能的正确性和有效性。组织加热的非接触式控制可以确保热疗实现的温度模式,而荧光监测可以评估光敏剂在肿瘤中的积累和PDT作用的深度,并根据光漂白数据预测手术效果。这些技术的互补使用允许在PDT过程中直接调整模式。对联合监测的充分统计数据的获取将导致一种新的PDT方案的发展。
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来源期刊
Sovremennye Tehnologii v Medicine
Sovremennye Tehnologii v Medicine MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
1.80
自引率
0.00%
发文量
38
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