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Wavelength and light-dose dependence in tumour phototherapy with haematoporphyrin derivative.

机译:血卟啉衍生物在肿瘤光疗中的波长和光剂量依赖性。

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摘要

Red light (c. 630 nm) is almost universally used in tumour phototherapy as it is the most penetrating of the porphyrin excitation wavebands. However, measurements of tumour attenuation of light of different wavelengths and of the excitation spectrum of haematoporphyrin derivative in vitro suggested that green light might be more efficient than red in destroying thin tumours. Experimentally, we confirmed this for tumours up to approximately 1.2 mm thick, a depth exceeding that of most carcinomas-in-situ. The superiority of green light over red in terms of the illumination time required to produce equivalent depths of necrosis may extend to greater depths (3-4 mm) if the former is produced by an argon laser and the latter by an argon-pumped dye laser. The relation between depth of necrosis Zn and light dose D is shown to be Zn = sigma gamma-1 1n(D/theta gamma) where sigma gamma is the attenuation coefficient for light at wavelength gamma and theta gamma the threshold light dose for producing necrosis at that wavelength. This logarithmic relationship suggests that it may be difficult to eradicate large tumours merely by increasing the light dose, and indicates the need for other approaches.
机译:红光(约630 nm)几乎是普遍用于肿瘤光疗的方法,因为它是卟啉激发波段中最穿透的。然而,对不同波长的光和血卟啉衍生物的体外激发光谱的肿瘤衰减的测量表明,绿光在破坏薄肿瘤方面可能比红光更有效。在实验上,我们证实了这种现象,适用于厚约1.2毫米的肿瘤,其深度超过了大多数原位癌的深度。如果前者是由氩激光器产生的,而后者是由氩泵浦的染料激光器产生的,则在产生等效坏死深度所需的照明时间方面,绿光优于红光的优势可能会扩展到更大的深度(3-4毫米)。 。坏死的深度Zn与光剂量D之间的关系显示为Zn = sigma gamma-1 1n(D / theta gamma),其中sigma gamma是波长gamma处的光的衰减系数,theta gamma是产生坏死的阈值光剂量在那个波长。这种对数关系表明,仅通过增加光剂量就可能难以根除大肿瘤,并且表明需要其他方法。

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