Fiallo M, Laigle A, Borrel M N, Garnier-Suillerot A
Laboratoire de Physique et Chimie Biomoléculaire, (URA CNRS 198) Université Pierre et Marie Curie, Paris, France.
Biochem Pharmacol. 1993 Feb 9;45(3):659-65. doi: 10.1016/0006-2952(93)90140-r.
Quantitative study of doxorubicin (Adriamycin), pirarubicin (4'-o-tetrahypyranyladriamycin) and daunorubicin in the nucleus of living cells was performed using microspectrofluorometry. As for the cytotoxic assays, drug-sensitive and drug-resistant K562 cells were incubated for 3 days with concentrations of drug ranging from 4 nM to 1 mM. When drug-sensitive cells were incubated with pirarubicin, the spectrum recorded from inside the nucleus was characteristic of anthracycline intercalated between the base pairs in the nucleus. However, when drug-sensitive cells were incubated with doxorubicin and drug-resistant cells with pirarubicin or doxorubicin, a new fluorescent spectrum was obtained which was due to 7,8-dehydro-9,10-desacetyldoxorubicinone, a pirarubicin and doxorubicin degradation product that is formed in the medium. This compound which is highly lipophilic is taken up rapidly into both sensitive and resistant cells.
利用显微分光荧光测定法对阿霉素(多柔比星)、吡柔比星(4'-O-四氢吡喃基阿霉素)和柔红霉素在活细胞核中的含量进行了定量研究。至于细胞毒性试验,将药物敏感和耐药的K562细胞与浓度范围为4 nM至1 mM的药物孵育3天。当药物敏感细胞与吡柔比星孵育时,从细胞核内记录的光谱是蒽环类药物插入细胞核碱基对之间的特征光谱。然而,当药物敏感细胞与阿霉素孵育以及耐药细胞与吡柔比星或阿霉素孵育时,会获得一种新的荧光光谱,这是由于7,8-脱氢-9,10-去乙酰阿霉素酮,一种在培养基中形成的吡柔比星和阿霉素降解产物。这种高度亲脂性的化合物会迅速被敏感细胞和耐药细胞摄取。