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Ghie

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Discussions about HPLC, CE, TLC, SFC, and other "liquid phase" separation techniques.
What is you mobile phase? You need to add some organic solvent to your diluent.I'm doing method modification of Cefuroxime in Human Plasma. Just wanna make sure of its stability in stock solution. I dissolved the compound in Phosphate buffer 0.01 M, pH 6.5 because I've read from literature that it is stable from pH 4.5-7.3. Would this be practical or will i just use deionized water? I observed that any change in pH in the solution also affected it's RT, the reason why i used buffered diluent. though a lot of methods only used deionized water or MilliQ water as diluent. Would it prolong the stability of cefuroxime as well? Haven't conducted any stability test yet as of the moment. Any feedback would be appreciated. Thanks!
Ghie
According to above, the degrdation is specific acid-base catalysed rather than general acid-base catalyzed.A. Acetate, phosphate, and borate buffers did not catalyze degradation.
B. Maximum stability was observed in the pH-independent region from pH 4 to 7, where the time during which cefuroxime concentration exceeded 90% of its initial concentration at 25 degrees C was 1.2 days.
3. Stability of cefuroxime sodium in some aqueous buffered solutions and intravenous admixtures.Buffer catalysis was observed in acetate and phosphate buffers.
No significant kinetic effect was observed for ionic strength in the range mu = 0.1-1.0.
..........exhibiting maximal stability in the pH range 3.5 to 5.5.
1. Since ionic strength have no effect, deionized water does nt have advantage. Buffered solution is advocated to maintain the pH (in maximum stability range, based on two studies pH range can be narrowed to 4-5.5). Buffer of species reported to not catalyzing the degradation.Both buffered and unbuffered solutions followed first-order decomposition. In 5% dextrose and 0.9% sodium chloride injections, cefuroxime was stable for 1 day (more than 90% potent) at 25 degrees C and for at least 30 days at 5 degrees C. At -10 degrees C, there was negligible decomposition after 30 days. The pH values of the solutions stored at 5 degrees C and -10 degrees C remained in the maximum stability range and the solutions were clear even after 30 days of storage.
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