Graham D, Millar A M
Radiopharmacy, Royal Infirmary, Aberdeen, UK.
Nucl Med Commun. 1999 May;20(5):439-44. doi: 10.1097/00006231-199905000-00007.
In an evaluation of techniques for dispensing 99Tcm-tetrofosmin injections, variability in radiochemical purity measured by the recommended 'cut-and-count' thin-layer chromatographic (TLC) analytical technique was observed. This was due to inconsistency in the position of the 99Tcm-tetrofosmin on the chromatography plate. An investigation was therefore undertaken to identify the factors which influence the Rf value of 99Tcm-tetrofosmin and the subsequent effect on the values obtained in the measurement of radiochemical purity. TLC was performed on an ITLC/SG stationary phase with a mobile phase of dichloromethane:acetone (65:35). On a satisfactory chromatogram, the main peak had an Rf of approximately 0.5 and the radiochemical purity was measured at > 90%. The Rf of the main peak and the measured radiochemical purity were found to increase as the size of the sample applied to the plate was increased. Force-drying the sample spot after application to the TLC plate gave a single peak with an Rf of 0. The dimensions of the tank and the time allowed for mobile phase saturation did not affect the outcome of the analysis. Small variations in the composition of the mobile phase affected the Rf of the main peak but not the measured radiochemical purity. TLC plates that were dried at 11 degrees C before use were found to give distorted chromatograms and unreliable measurements of radiochemical purity. In conclusion, when using TLC to measure the radiochemical purity of 99Tcm-tetrofosmin, the following precautions should be observed: (1) the sample spot applied to the TLC plate should be in the range 10-20 microliters; (2) the spot should not be force-dried with air; and (3) ITLC/SG plates should not be dried before use.
在一项关于99锝-替曲膦注射液给药技术的评估中,观察到采用推荐的“切割计数”薄层色谱(TLC)分析技术测定的放射化学纯度存在差异。这是由于99锝-替曲膦在色谱板上的位置不一致所致。因此开展了一项调查,以确定影响99锝-替曲膦比移值(Rf值)的因素以及对放射化学纯度测量所得值的后续影响。使用ITLC/SG固定相,以二氯甲烷:丙酮(65:35)作为流动相进行TLC。在一张令人满意的色谱图上,主峰的Rf约为0.5,放射化学纯度测定值>90%。发现随着点样到板上的样品量增加,主峰的Rf和测量的放射化学纯度均升高。点样到TLC板上后强制吹干样品点得到一个Rf为0的单峰。展开缸的尺寸和流动相饱和所需时间不影响分析结果。流动相组成的微小变化会影响主峰的Rf,但不影响测量的放射化学纯度。发现使用前在11摄氏度下干燥的TLC板会给出失真的色谱图以及不可靠的放射化学纯度测量结果。总之,使用TLC测量99锝-替曲膦的放射化学纯度时,应注意以下事项:(1)点样到TLC板上的样品量应在10 - 20微升范围内;(2)不应强制用空气吹干样品点;(3)ITLC/SG板在使用前不应干燥。