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未结合胆红素在二甲基亚砜 - 水体系中的低溶解度:对pKa测定的影响

Low solubility of unconjugated bilirubin in dimethylsulfoxide--water systems: implications for pKa determinations.

作者信息

Mukerjee Pasupati, Ostrow J Donald, Tiribelli Claudio

机构信息

School of Pharmacy, University of Wisconsin, 777 Highland Avenue, Madison, WI 53705-2222, USA.

出版信息

BMC Biochem. 2002 Jun 17;3:17. doi: 10.1186/1471-2091-3-17.

Abstract

BACKGROUND

Aqueous pKa values of unconjugated bilirubin are important determinants of its solubility and transport. Published pKa data on an analog, mesobilirubin-XIIIalpha, studied by 13C-NMR in buffered solutions containing 27 and 64 vol% (C2H3)2SO because of low aqueous solubility of mesobilirubin, were extrapolated to obtain pKa values in water of 4.2 and 4.9. Previous chloroform-water partition data on bilirubin diacid led to higher estimates of its pKa, 8.12 and 8.44, and its aqueous solubility. A thermodynamic analysis, using this solubility and a published solubility in DMSO, suggested that the systems used to measure 13C-NMR shifts were highly supersaturated. This expectation was assessed by measuring the residual concentrations of bilirubin in the supernatants of comparable DMSO-buffer systems, after mild centrifugation to remove microprecipitates.

RESULTS

Extensive sedimentation was observed from numerous systems, many of which appeared optically clear. The very low supernatant concentrations at the lowest pH values (4.1-5.9) were compatible with the above thermodynamic analysis. Extensive sedimentation and low supernatant concentrations occurred also at pH as high as 7.2.

CONCLUSIONS

The present study strongly supports the validity of the aqueous solubility of bilirubin diacid derived from partition data, and, therefore, the corresponding high pKa values. Many of the mesobilirubin systems in the 13C-NMR studies were probably supersaturated, contained microsuspensions, and were not true solutions. This, and previously documented errors in pH determinations that caused serious errors in pKa values of the many soluble reference acids and mesobilirubin, raise doubts regarding the low pKa estimates for mesobilirubin from the 13C-NMR studies.

摘要

背景

未结合胆红素的水相pKa值是其溶解度和转运的重要决定因素。由于中胆红素溶解度低,通过在含有27%和64%(体积分数)二甲基亚砜的缓冲溶液中用13C-NMR研究的类似物中胆红素-XIIIα的已发表pKa数据,被外推以获得水中的pKa值分别为4.2和4.9。先前关于胆红素二酸的氯仿-水分配数据导致对其pKa值(8.12和8.44)及其水溶解度的更高估计。使用该溶解度和已发表的在二甲基亚砜中的溶解度进行的热力学分析表明,用于测量13C-NMR位移的系统高度过饱和。通过在轻度离心以去除微沉淀物后测量可比的二甲基亚砜-缓冲系统上清液中胆红素的残留浓度来评估这一预期。

结果

在许多系统中观察到大量沉淀,其中许多看起来光学上是澄清的。最低pH值(4.1 - 5.9)下极低的上清液浓度与上述热力学分析一致。在高达7.2的pH值下也出现了大量沉淀和低上清液浓度。

结论

本研究有力地支持了从分配数据得出的胆红素二酸水溶解度的有效性,因此也支持了相应的高pKa值。13C-NMR研究中的许多中胆红素系统可能是过饱和的,含有微悬浮液,并非真正的溶液。这一点,以及先前记录的pH测定误差导致许多可溶性参考酸和中胆红素的pKa值出现严重误差,引发了对13C-NMR研究中中胆红素低pKa估计值的质疑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c43e/116679/bfd466cf8e19/1471-2091-3-17-1.jpg

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