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Efficient singlet oxygen photosensitization upon two-photon excitation of porphyrins

机译:卟啉双光子激发时的高效单次氧气光敏

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Use of porphyrin photosensitizers in photodynamic therapy (PDT) is gaining acceptance worldwide as an alternative treatment of tumors and age-related macular degeneration. Utility of porphyrins is based on their special ability to accumulate in pathologic cells, and to transfer absorbed photon energy efficiently to extremely active singlet oxygen molecules, which then wipe Out the surrounding tumor. So far, the limited penetration depth by visible light into biological tissue has allowed only few types of skin, breast and certain endoscopically accessible cancers to be treated in this fashion. It has been proposed that by utilizing two-photon absorption (TPA), in which case illumination is carried out at near-IR wavelengths, the PDY maybe delivered deeper into the tissue. However, tetrapyrrolic photosensitizers studied so far display disappointingly small TPA cross-sections, typically on the order of T{sub left}σ{sub}(PA)= 1-10 GM (1GM = 1·10{sup }(-50) cm{sup}4·s/photon).
机译:在光动力学治疗中使用卟啉光敏剂(PDT)在全球上获得验收,作为肿瘤和年龄相关性黄斑变性的替代治疗。卟啉的效用基于它们在病理细胞中积聚的特殊能力,并有效地将吸收的光子能量转移到极具活性的单线氧分子中,然后擦除周围的肿瘤。到目前为止,可见光进入生物组织的有限渗透深度允许以这种方式对待少量的皮肤,乳房和某些内窥镜可访问的癌症。已经提出,通过利用双光子吸收(TPA),在这种情况下,在接近IR波长下进行照明,PDY可以将更深的组织递送到组织中。然而,到目前为止研究的四卷式光敏剂展示了令人失望的小TPA横截面,通常在T {Sub左}Σ{sub}(pa)= 1-10gm(1gm = 1·10 {sup}( - 50)的顺序上cm {sup} 4·s / photon)。

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