Ravikumar H, Devaraju K S, Shetty K Taranath
Department of Neurochemistry, National Institute of Mental Health and Neuro Sciences, Bangalore, 560029 Karnataka India.
Indian J Clin Biochem. 2008 Apr;23(2):117-22. doi: 10.1007/s12291-008-0028-0. Epub 2008 Jun 11.
Currently available method(s) for assaying pyrroline-5-carboxylate (P5C), an important intermediate metabolite of ornithine, proline and glutamate metabolic pathways, are cumbersome or not sensitive enough for microanalysis. The present study involving the synthesis of P5C followed by purity check, molecular mass (amu =113.1) determination by mass spectrometry and spectral characterization of P5C-ninhydrin derivative (λ max: 510 nm) confirmed the authenticity of the preparation. Studies on the effect of pH on spectral characteristics of P5C ninhydrin derivative demonstrated a significant change with respect to λ max (620 nm) and several ∼ 12 fold increase in molar extinction coefficient (ε: 1.96 × 10(5)) in alkaline conditions (pH:7.0-8.0) as compared to the reported Molar ε of 1.65 × 10(4) at max λ 510 nm in ethanolic solution. The modified method, with the improved sensitivity, is adopted for the assay of ornithine amino transferase activity in WBC's/platelets lysate(s) from human blood.
目前用于检测吡咯啉 - 5 - 羧酸(P5C)的方法,P5C是鸟氨酸、脯氨酸和谷氨酸代谢途径中的一种重要中间代谢产物,对于微量分析来说既繁琐又不够灵敏。本研究涉及P5C的合成,随后进行纯度检查、通过质谱法测定分子量(原子质量单位 = 113.1)以及对P5C - 茚三酮衍生物进行光谱表征(最大吸收波长:510 nm),证实了该制剂的真实性。关于pH对P5C茚三酮衍生物光谱特性影响的研究表明,与在乙醇溶液中最大吸收波长510 nm处报道的摩尔消光系数1.65×10⁴相比,在碱性条件(pH:7.0 - 8.0)下,最大吸收波长(620 nm)有显著变化,摩尔消光系数增加了约12倍(ε:1.96×10⁵)。这种具有更高灵敏度的改良方法被用于检测人血白细胞/血小板裂解液中的鸟氨酸氨基转移酶活性。