Krishan A, Ganapathi R
Cancer Res. 1980 Nov;40(11):3895-900.
We have used a laser flow cytometer to excite and quantitate the intracellular fluorescence of cells exposed in vitro and in vivo to various anthracyclines. In cells exposed to Adriamycin (ADR), intracellular drug fluorescence appeared slowly and reached a peak after 4 hr of incubation. Cells incubated with 10 micrograms/ml were 5 times more fluorescent than were cells incubated with 1 microgram/ml. Cells exposed to daunomycin were 2 to 4 times more fluorescent than were cells similarly exposed to ADR, and the intracellular appearance of daunomycin fluorescence was much more rapid. Cells exposed to N-trifluoroacetyladriamycin and carminomycin had higher amounts of intracellular fluorescence (2 to 4 times), and peak values were reached much more rapidly than in cells exposed to ADR. In cells exposed to rubidazone, fluorescence increased 2- to 4-fold with increased drug concentration and length of exposure. In contrast, nogalamycin fluorescence reached a peak after 60 min of incubation, and a 10-fold increase in drug concentration increased fluorescence only 2-fold. In animals given injections of ADR (4 mg/kg) and sacrificed after 3 hr, drug fluorescence could be detected in tumor and spleen cells. In contrast, fluorescence in heart nuclei was barely recognizable. However, incubation of isolated nuclei in ADR (1 microgram/ml) showed that bone marrow and heart nuclei had greater amounts of ADR fluorescence (2- to 3-fold) than did spleen or liver nuclei similarly treated. The use of laser flow cytometry for monitoring intracellular anthracycline transport, binding, and efflux is demonstrated.
我们使用激光流式细胞仪激发并定量测定体外和体内暴露于各种蒽环类药物的细胞的细胞内荧光。在暴露于阿霉素(ADR)的细胞中,细胞内药物荧光出现缓慢,孵育4小时后达到峰值。用10微克/毫升孵育的细胞的荧光强度是用1微克/毫升孵育的细胞的5倍。暴露于柔红霉素的细胞的荧光强度比同样暴露于ADR的细胞高2至4倍,并且柔红霉素荧光在细胞内的出现要快得多。暴露于N-三氟乙酰阿霉素和洋红霉素的细胞具有更高的细胞内荧光量(2至4倍),并且峰值出现的速度比暴露于ADR的细胞快得多。在暴露于鲁比达唑的细胞中,随着药物浓度和暴露时间的增加,荧光增加2至4倍。相比之下,诺加霉素荧光在孵育60分钟后达到峰值,药物浓度增加10倍仅使荧光增加2倍。给动物注射ADR(4毫克/千克)并在3小时后处死,在肿瘤和脾细胞中可检测到药物荧光。相比之下,心脏细胞核中的荧光几乎无法辨认。然而,将分离的细胞核在ADR(1微克/毫升)中孵育表明,骨髓和心脏细胞核中的ADR荧光量(2至3倍)比同样处理的脾或肝细胞核中的荧光量更大。证明了使用激光流式细胞仪监测细胞内蒽环类药物的转运、结合和流出。