Chourpa I, Millot J M, Sockalingum G D, Riou J F, Manfait M
Laboratoire de Spectroscopie Biomoléculaire, IFR 53, UFR de Pharmacie, Université de Reims Champagne-Ardenne, France.
Biochim Biophys Acta. 1998 Mar 2;1379(3):353-66. doi: 10.1016/s0304-4165(97)00115-3.
Potent antitumor activity exhibited by 20-S-camptothecin (CPT) and numerous derivatives is known to be lost upon opening of the alpha-hydroxy-lactone ring of these drugs, hydrolyzable at neutral and basic pH. To quantify in 'real time' the lactone hydrolysis reaction in CPTs under physiological conditions, we have applied a non-perturbing approach by fluorescence spectroscopy. CPT and a set of its derivatives (21-lactam-S-CPT, 10,11-(methylenedioxy)-CPT, CPT-11, SN-38, topotecan, tricyclic ketone-CPT) with antitumor activity varying from negligible to 10 times that of CPT have been studied. Prior to the kinetic measurements, the effects of substitutions, pH, polarity of molecular environment, lactone ring opening (lactone-carboxylate transition) have been investigated in terms of the UV-visible absorption and fluorescence emission spectra of CPTs. Then the determined parameters of the fluorescence emission spectra corresponding to the respective lactone and carboxylate forms have been used to estimate the residual lactone percentage as a function of time. The reproducibility of the obtained data demonstrates that the spectroscopic approach provides a satisfactory precision for this kind of measurements. For CPT at pH 7.3, the lactone half-life was 29.4 +/- 1.7 min and the lactone percentage at equilibrium was 20.9 +/- 0.3%. Within a series of derivatives with substitutions at quinoline rings, the lactone half-life varied from 29 to 32 min and the equilibrium lactone content varied from 15% to 23%. For each compound, even slight increase of pH from 7.1 to 7.3 or from 7.3 to 7.6 logically leads to a remarkable decrease of both lactone half-life and equilibrium lactone percentage.
已知20 - S - 喜树碱(CPT)及其众多衍生物具有强大的抗肿瘤活性,但这些药物的α - 羟基 - 内酯环在中性和碱性pH条件下可水解,一旦打开,其活性就会丧失。为了在生理条件下“实时”量化CPT中的内酯水解反应,我们采用了一种通过荧光光谱进行的非干扰方法。研究了CPT及其一系列衍生物(21 - 内酰胺 - S - CPT、10,11 - (亚甲基二氧基) - CPT、CPT - 11、SN - 38、拓扑替康、三环酮 - CPT),其抗肿瘤活性从可忽略不计到CPT的10倍不等。在进行动力学测量之前,已根据CPT的紫外 - 可见吸收光谱和荧光发射光谱研究了取代基、pH、分子环境极性、内酯环打开(内酯 - 羧酸盐转变)的影响。然后,将对应于各自内酯和羧酸盐形式的荧光发射光谱的测定参数用于估计作为时间函数的残余内酯百分比。所获数据的重现性表明,光谱方法为这类测量提供了令人满意的精度。对于pH为7.3的CPT,内酯半衰期为29.4±1.7分钟,平衡时的内酯百分比为20.9±0.3%。在喹啉环上有取代基的一系列衍生物中,内酯半衰期从29分钟到32分钟不等,平衡内酯含量从15%到23%不等。对于每种化合物,pH从7.1略微增加到7.3或从7.3增加到7.6,逻辑上都会导致内酯半衰期和平衡内酯百分比显著下降。