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使用5-氨基乙酰丙酸对膀胱癌进行荧光共聚焦显微镜检查及图像分析

Fluorescence confocal microscopy and image analysis of bladder cancer using 5-aminolevulinic acid.

作者信息

Olivo Malini, Lau Weber, Manivasager Vanaja, Hoon Tan Puay, Christopher Cheng

机构信息

Division of Medical Sciences, National Cancer Centre, Singapore 169610.

出版信息

Int J Oncol. 2003 Mar;22(3):523-8.

Abstract

5-aminolevulinic acid mediated changes in tissue specific fluorescence were studied in bladder cancer. Bladders of normal patients and also patients diagnosed with cancer were instilled with 5-aminolevulinic acid and the resultant protoporphyrin IX mediated fluorescence intensity was imaged and quantified with confocal laser microscopy and fluorescence image analysis. Urothelial tumour cells were observed to fluoresce more intensely than normal urothelial cells. Submucosa and muscle tissues exhibited minimal fluorescence compared to urothelial cells of malignant origin and also normal urothelial cells. Degree of fluorescence intensity was in the order of malignant urothelium > normal urothelium > normal submucosa > normal muscles. Fluorescence intensity was also found to increase with duration of ALA instillation. Grade 3 malignant cells produced more fluorescence compared to grade 2 and grade 1. Similarly, T1 transitional cell carcinoma (TCC) showed increased fluorescence intensity than that of Ta TCC. Also, tumour blood vessels fluoresced more intensely compared to blood vessels found in normal bladder tissue. Tissue specific ALA mediated PpIX micro fluorescence can be used as a diagnostic technique for early detection of neoplasms and confocal laser microscopy and fluorescence image analysis are advantageous diagnostic tools for the photodynamic diagnosis of bladder neoplasms in vivo.

摘要

在膀胱癌中研究了5-氨基酮戊酸介导的组织特异性荧光变化。向正常患者以及被诊断患有癌症的患者的膀胱中注入5-氨基酮戊酸,并用共聚焦激光显微镜和荧光图像分析对由此产生的原卟啉IX介导的荧光强度进行成像和定量。观察到尿路上皮肿瘤细胞比正常尿路上皮细胞发出更强的荧光。与恶性起源的尿路上皮细胞以及正常尿路上皮细胞相比,黏膜下层和肌肉组织表现出最小的荧光。荧光强度的程度顺序为恶性尿路上皮>正常尿路上皮>正常黏膜下层>正常肌肉。还发现荧光强度随ALA注入持续时间增加。3级恶性细胞比2级和1级产生更多的荧光。同样,T1期移行细胞癌(TCC)比Ta期TCC表现出更高的荧光强度。此外,肿瘤血管比正常膀胱组织中的血管发出更强的荧光。组织特异性ALA介导的PpIX微荧光可作为早期检测肿瘤的诊断技术,共聚焦激光显微镜和荧光图像分析是体内膀胱肿瘤光动力诊断的有利诊断工具。

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