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Development and Application of Biological Techniques to Two-Photon Photodynamic Therapy

机译:生物学技术对双光子光动力治疗的发展与应用

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Two-photon (2-γ) photodynamic therapy (PDT) as opposed to "standard" one-photon (1-γ)^sPDT with Visudyne? has recently been suggested as a targeted treatment alternative for wet-form age-related macular degeneration (AMD) and other neovascular diseases. AMD is a major cause of severe vision loss in the older population. It occurs due to growth of new leaky blood vessels (neovasculature) from the choriocapillaris, which results in destruction of photoreceptors in the fovea and loss of central vision. Damage outside the diseased region is always a concern, due to photosensitizer accumulation and its 1-γ excitation. Highly targeted 2-γ excitation, due to its non-linear intensity dependence, intrinsically avoids out-of-focus damage to healthy tissues and so could be valuable for wet-AMD. We have previously developed a quantitative approach for comparing the 2-γ efficacy of photosensitizers in vitro. In this study, we report further the development of ex vivo and in vivo techniques. A mouse mesenteric vessel has been investigated as the ex vivo model of neovasculature. For the in vivo studies, we have explored a mouse dorsal skin-fold window chamber model. Two-photon PDT is delivered using tightly focused ~300 fs laser pulses from a Ti:sapphire laser operating at 850 nm with 90 MHz pulse repetition rate. Confocal microscopy coupled to the laser was used to visualize the vessel's/cell's response before, during and after the treatment. We are able to demonstrate quantitative biological techniques to evaluate efficacy of 2-γ^sPDT photosensitizers in vivo.
机译:双光子(2-γ)光动力疗法(PDT)与“标准”单光子(1-γ)^ SPDT与Visudyne相反?最近被建议作为湿式年龄相关的黄斑变性(AMD)和其他新生血管疾病的有针对性的治疗方法。 AMD是老年人口严重视力丧失的主要原因。它由于来自芝麻皮卡里的新泄漏血管(Neovasculature)的生长而发生,这导致在Fovea中的光感受器破坏和中枢视觉的丧失。由于光敏剂积累及其1-γ激发,患病区域外的损伤始终是一个问题。由于其非线性强度依赖性,高度有针对性的2-γ激发,本质上避免对健康组织的焦点损伤,因此对湿法AMD可能是有价值的。我们以前开发了一种定量方法,用于比较光敏剂在体外的2-γ疗效。在这项研究中,我们进一步报告了离体和体内技术的发展。已经研究了小鼠肠系膜血管作为新星动物的前体内模型。对于体内研究,我们已经探索了一款小鼠背部肌肤折叠窗腔模型。使用从Ti的Ti:300 FS激光脉冲使用的双光子PDT:蓝宝石激光器以850nm运行,具有90 MHz脉冲重复率。耦合到激光的共聚焦显微镜用于在治疗前,期间和之后可视化容器/细胞的响应。我们能够证明定量的生物技术,以评估2-γ^ SPDT光敏剂在体内的疗效。

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