Tong Henry H Y, Shekunov Boris Y, York Peter, Chow Albert H L
School of Health Sciences, Macao Polytechnic Institute, Macao, People's Republic of China.
J Pharm Sci. 2005 Mar;94(3):695-700. doi: 10.1002/jps.20280.
In our previous studies, surface analysis by inverse gas chromatography (IGC) at infinite dilution (zero coverage) was performed on four salmeterol xinafoate (SX) powdered samples, viz, two supercritical CO2-processed Form I (SX-I) and Form II (SX-II) polymorphs, a commercial granulated SX (GSX) raw material and its micronized product (MSX). Both GSX and MSX are also of the same Form I polymorph. To further probe the differences in surface properties between the samples, the present study has extended the IGC analysis to the finite concentration range of selected energy probes. The adsorption isotherms of the SX samples were constructed using (nonpolar) octane, (polar acidic) chloroform, and (polar basic) tetrahydrofuran as liquid probes. Type II adsorption isotherms with weak knees were observed with each probe for all SX Form I samples. The extents of probe adsorption by the samples at various relative pressures follow the rank order: SX-II > GSX approximately MSX > SX-I, indicating that the SX-I has fewer high-energy adsorption sites than GSX and MSX. Type III isotherms were observed for SX-II with the two polar probes, indicative of weak adsorbate-adsorbent interactions. The additional information generated shows that IGC analysis at finite coverage is a valuable complementary tool to that at infinite dilution.
在我们之前的研究中,对四种昔萘酸沙美特罗(SX)粉末样品进行了无限稀释(零覆盖)下的反相气相色谱(IGC)表面分析,即两种超临界二氧化碳处理的I型(SX-I)和II型(SX-II)多晶型物、一种商业颗粒状SX(GSX)原料及其微粉化产品(MSX)。GSX和MSX也都是I型多晶型物。为了进一步探究样品之间表面性质的差异,本研究将IGC分析扩展到选定能量探针的有限浓度范围。使用(非极性)辛烷、(极性酸性)氯仿和(极性碱性)四氢呋喃作为液体探针构建了SX样品的吸附等温线。对于所有I型SX样品,每种探针都观察到了带有弱拐点的II型吸附等温线。样品在各种相对压力下对探针的吸附程度遵循以下顺序:SX-II > GSX ≈ MSX > SX-I,这表明SX-I比GSX和MSX具有更少的高能吸附位点。对于SX-II与两种极性探针,观察到了III型等温线,这表明吸附质与吸附剂之间的相互作用较弱。所产生的额外信息表明,有限覆盖下的IGC分析是无限稀释下IGC分析的一种有价值的补充工具。