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5-ALA Photopreparation Using Pulsed NIR Enhances Skin Fluorescence via Temperature-Independent Cell Signaling Pathways

机译:使用脉冲NIR的5-ALA光制备可通过与温度无关的细胞信号通路增强皮肤荧光

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The effect of near infrared light (940 nm) on the conversion of 5-aminolevulinic acid (5-ALA) to PpIX, a compound involved in photodynamic therapy (PDT), was examined. The back skin of three test subjects was irradiated with continuous wavelength and pulsed infrared light at 940 nm. These irradiations took place 50-53, 24-29, and 8-14 hours prior to the application of the 5-ALA. After a three-hour incubation period with 5-ALA, a FluoDerm™device was used to measure the fluorescence of the skin (emitting wavelength: 400-420 nm; measuring excitation wavelength: 610-720 nm), a direct indication of the activity of 5-ALA. 5-ALA must penetrate the skin and then be converted to PpIX before any fluorescence increase can be observed. Results: For two patients (one was disqualified), the continuous wavelength, 50 hour pre-irradiation condition, the FluoDerm readings showed a 19 to 23% increase in fluorescence (p = 0.05) compared to the no-irradiation, 5-ALA only control.
机译:研究了近红外光(940 nm)对5-氨基乙酰丙酸(5-ALA)转化为PpIX的影响,PpIX是一种参与光动力疗法(PDT)的化合物。用连续波长和940 nm的脉冲红外光照射三个测试对象的背部皮肤。这些辐射是在使用5-ALA之前50-53、24-29和8-14小时进行的。在与5-ALA孵育3小时后,使用FluoDerm™设备测量皮肤的荧光(发射波长:400-420 nm;测量激发波长:610-720 nm),这是活性的直接指标5-ALA。 5-ALA必须穿透皮肤,然后转化为PpIX,然后才能观察到任何荧光增加。结果:对于连续照射,辐射前50小时的条件的两名患者(一名不合格),FluoDerm读数显示荧光比未照射(仅5-ALA)增加19%至23%(p = 0.05)。控制。

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