首页> 外文会议>Advances in Laser and Light Spectroscopy to Diagnose Cancer and Other Diseases II >Pharmacokinetics of endogenous porphyrins induced by 5-aminolevulinic acid as observed by means of laser-induced fluorescence from several organs of tumor-bearing mice
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Pharmacokinetics of endogenous porphyrins induced by 5-aminolevulinic acid as observed by means of laser-induced fluorescence from several organs of tumor-bearing mice

机译:通过5-氨基乙酰丙酸诱导的荷瘤小鼠多个器官的荧光观察到的内源性卟啉的药代动力学

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Abstract: Photodynamic therapy (PDT) and photodynamic diagnosis (PDD) add support to efficient treatment modalities of superficial and early stage cancer. Recently 5-aminolevulinic acid (5-ALA), a precursor of hemoglobin in the hem biosynthetic pathway, was used to stimulate endogenous porphyrin production. The time dependency of 5-ALA induced porphyrin fluorescence has been investigated on several normal tissues as well as on a tumor in an in-vivo tumor model (human gastrointestinal adenocarcinoma Grade II, UICC IIa). 5-ALA has been administered intravenously at a concentration of 50 mg/(kg bw). With respect to a certain time schedule the animals were sacrificed and 12 different organs as well as the tumor were removed. Using laser-induced fluorescence techniques the emission spectra in the range of $lambda $EQ (550-750) nm were detected from the tissues after excitation with light of the wavelength $lambda $EQ (411 $POM 4) nm. For quantitative evaluation the integral fluorescence intensity at $lambda $EQ (635 $POM 2) nm of the porphyrin specific spectra has been determined. All tissues showed porphyrin fluorescence, while brightest fluorescence has been detected from the tumor. With respect to the other tissues the relative tumor selectivity showed a maximum ratio at 406 h post injection. The kinetics of the porphyrin fluorescence intensity of the organs follow different time dependencies. Simple mathematical pharmacokinetic models are developed and discussed.!21
机译:摘要:光动力疗法(PDT)和光动力诊断(PDD)为浅表和早期癌症的有效治疗方式提供了支持。最近,在下摆生物合成途径中血红蛋白的前体5-氨基乙酰丙酸(5-ALA)被用来刺激内源性卟啉的产生。 5-ALA诱导的卟啉荧光的时间依赖性已经在几种正常组织以及体内肿瘤模型(人类胃肠道腺癌II级,UICC IIa)中的肿瘤上进行了研究。 5-ALA已以50 mg /(kg bw)的浓度静脉内给药。关于一定的时间表,将动物处死并除去12个不同器官以及肿瘤。使用激光诱导荧光技术,在用波长λλEQ(411λPOM4)nm的光激发后,从组织中检测到λλEQ(550-750)nm范围内的发射光谱。为了进行定量评估,已确定了卟啉特异性光谱在$λQ(635 $ POM 2)nm处的积分荧光强度。所有组织均显示卟啉荧光,而从肿瘤中检测到最亮的荧光。对于其他组织,相对肿瘤选择性在注射后406小时显示出最大比率。器官卟啉荧光强度的动力学遵循不同的时间依赖性。开发并讨论了简单的数学药代动力学模型!21

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