首页> 外文会议>Optical Coherence tomography and coherence domain optical methods in biomedicine XVIII >Photodynamic therapy induces epidermal thickening in hairless mice skin: an optical coherence tomography assessment
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Photodynamic therapy induces epidermal thickening in hairless mice skin: an optical coherence tomography assessment

机译:光动力疗法诱导无毛小鼠皮肤表皮增厚:光学相干断层扫描评估

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Photodynamic therapy (PDT) promotes skin improvement according to many practitioners, however the immediately in vivo assessment of its response remains clinically inaccessible. As a non-invasive modality, optical coherence tomography (OCT) has been shown a feasible optical diagnostic technique that provides images in real time, avoiding tissue biopsies. For this reason, our investigation focused on evaluates the PDT effect on a rodent model by means of OCT. Therefore, a normal hairless mouse skin has undergone a single-session PDT, which was performed with topical 5-aminolevulinic acid (ALA) cream using a red (630 nm) light emitting diode (LED) which reached the light dose of 75 J/cm~2. As the optical imaging tool, an OCT (930 nm) with axial resolution of 6.0 microns in air was used, generating images with contact to the mouse skin before, immediately after, 24 hours, and 2 weeks after the correspondent procedure. Our result demonstrates that, within 24 hours after ALA-PDT, the mouse skin from the PDT group has shown epidermal thickness (ET), which has substantially increased after 2 weeks from the treatment day. Moreover, the skin surface has become evener after ALA-PDT. Concluding, this investigation demonstrates that the OCT is a feasible and reliable technique that allows real-time cross-sectional imaging of skin, which can quantify an outcome and predict whether the PDT reaches its goal.
机译:根据许多从业人员的说法,光动力疗法(PDT)可以促进皮肤改善,但是,对其反应的立即体内评估在临床上仍然难以获得。作为一种非侵入性方式,光学相干断层扫描(OCT)已显示出一种可行的光学诊断技术,该技术可实时提供图像,而无需进行组织活检。因此,我们的研究重点是通过OCT评估PDT对啮齿动物模型的影响。因此,正常的无毛小鼠皮肤经历了一次PDT,这是通过局部5-氨基乙酰丙酸(ALA)乳霜使用红色(630 nm)发光二极管(LED)进行的,达到了75 J /厘米〜2。作为光学成像工具,使用了空气中轴向分辨率为6.0微米的OCT(930 nm),在相应程序之前,之后,24小时和2周之后,通过与小鼠皮肤的接触产生了图像。我们的结果表明,在ALA-PDT后24小时内,PDT组的小鼠皮肤表皮厚度(ET)显着增加,从治疗日起两周后,表皮厚度显着增加。此外,ALA-PDT后皮肤表面变得更均匀。最后,这项研究表明,OCT是一种可行且可靠的技术,可以对皮肤进行实时横截面成像,从而可以量化结果并预测PDT是否达到其目标。

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