Department of Vision Sciences, Glasgow Caledonian University, Cowcaddens Road, Glasgow, UK.
Ophthalmic Physiol Opt. 2010 Mar;30(2):167-74. doi: 10.1111/j.1475-1313.2009.00703.x.
To re-assess and further quantify the pH-related changes in the absorbance and fluorescence emission spectra of sodium fluorescein in buffered aqueous solutions.
Analytical grade sodium fluorescein (NaF) or commercial NaF ophthalmic products (Minims 2% sodium fluorescein or Fluorets sodium fluorescein ophthalmic strips) were prepared over a range of dilutions in 1% NaCl with the pH set with phosphate, borate or acetate buffer mixtures between pH 4.0 and 10.0 at room temperature. Absorbance and fluorescence spectra were recorded in 10 mm pathlength cuvettes.
At pH 7.5-8.5, the main NaF absorbance in dilute solution (0.005% w/v, or c. 13 microM) is at 490 nm, but this peak shifts progressively to 460 nm as the pH is lowered below 7.5. The 490 nm absorption peak shows a 50% of maximum value at pH 6.75. For extremely diluted solutions of NaF (0.000002%, c. 50 nM), the fluorescence emission at 513 nm follows the same profile. At higher concentrations (>0.000005%), NaF solutions start to show marked fluorescence quenching at neutral pH with the emission wavelength progressively shifting to 530 nm and even to 560 nm at extremely high concentrations (0.125%) where the fluorescence is all but quenched.
The present studies confirm and extend some earlier reports that pH (over the range of 4.0-8.5), as well as concentration, predictably determines the fluorescence emission of dilute aqueous solutions of NaF.
重新评估并进一步量化缓冲水溶液中荧光素钠的吸收光谱和荧光发射光谱与 pH 值的相关变化。
在室温下,用磷酸盐、硼酸盐或乙酸盐缓冲混合物将 pH 值调至 4.0 至 10.0 之间,用 1%NaCl 配制分析级荧光素钠(NaF)或商业 NaF 眼科产品(Minims 2%荧光素钠或 Fluorets 荧光素钠眼科条),并在 10mm 光路比色皿中进行一系列稀释。记录吸收光谱和荧光光谱。
在 pH 值为 7.5-8.5 时,稀溶液(0.005%w/v,约 13μM)中主要的 NaF 吸收峰在 490nm,但当 pH 值低于 7.5 时,该峰逐渐向 460nm 移动。490nm 吸收峰在 pH 6.75 时达到最大吸收值的 50%。对于 NaF 的极其稀释溶液(0.000002%,约 50nM),513nm 的荧光发射也遵循相同的谱线。在较高浓度(>0.000005%)下,中性 pH 值下 NaF 溶液开始出现明显的荧光猝灭,发射波长逐渐移至 530nm,甚至在极高浓度(0.125%)下移至 560nm,此时荧光几乎完全猝灭。
本研究证实并扩展了一些早期报告,即 pH 值(4.0-8.5 范围内)以及浓度可预测地决定了稀水溶液中 NaF 的荧光发射。