Ambroz M, MacRobert A J, Morgan J, Rumbles G, Foley M S, Phillips D
Department of Chemical Physics, Charles University, Prague, Czech Republic.
J Photochem Photobiol B. 1994 Feb;22(2):105-17. doi: 10.1016/1011-1344(93)06955-3.
Spectroscopic studies were carried out on the photosensitizer disulphonated aluminium phthalocyanine (AlS2Pc) which has prospective applications in photodynamic therapy. The fluorescence lifetimes of AlS2Pc were measured in a range of model systems and cultured leukaemic cells using laser excitation and time-correlated, single-photon-counting detection. In an investigation of non-covalent protein binding, we studied AlS2Pc in the presence of human serum albumin (HSA) in 0.1 M phosphate-buffered saline at pH 7.4. On addition of excess concentrations of HSA, small red shifts in the fluorescence and absorbance spectra were observed, together with an increase in fluorescence polarization anisotropy, consistent with binding of the phthalocyanine. Fluorescence decays could be resolved into two lifetimes for bound AlS2Pc with a dominant component of 5.5 ns and a minor component of 1 ns. Fluorescence imaging and time-resolved microfluorometry were carried out on intracellular AlS2Pc using leukaemic K562 cells. Microscopic imaging with a charge-coupled device (CCD) camera revealed that AlS2Pc fluorescence predominated in a discrete perinuclear region which was then probed selectively by a focused laser spot for fluorescence lifetime measurements. Bi-exponential decays with lifetime components of 6.1 and 2.2 ns were observed. On irradiation at 633 nm, the fluorescence intensity increased initially and subsequently declined due to photodegradation.
对具有光动力疗法潜在应用的光敏剂二磺化铝酞菁(AlS2Pc)进行了光谱研究。使用激光激发和时间相关单光子计数检测,在一系列模型系统和培养的白血病细胞中测量了AlS2Pc的荧光寿命。在一项非共价蛋白质结合的研究中,我们在pH 7.4的0.1 M磷酸盐缓冲盐水中,在人血清白蛋白(HSA)存在的情况下研究了AlS2Pc。加入过量浓度的HSA后,观察到荧光和吸收光谱出现小的红移,同时荧光偏振各向异性增加,这与酞菁的结合一致。结合的AlS2Pc的荧光衰减可以分解为两个寿命,主要成分是5.5 ns,次要成分是1 ns。使用白血病K562细胞对细胞内AlS2Pc进行了荧光成像和时间分辨显微荧光测定。用电荷耦合器件(CCD)相机进行的显微成像显示,AlS2Pc荧光在离散的核周区域占主导地位,然后用聚焦激光光斑对其进行选择性探测以测量荧光寿命。观察到寿命成分分别为6.1和2.2 ns的双指数衰减。在633 nm照射下,荧光强度最初增加,随后由于光降解而下降。