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Interaction of Dihydrocitrinone with Native and Chemically Modified Cyclodextrins

机译:二氢胞苷酮与天然和化学修饰的环糊精的相互作用

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摘要

Citrinin (CIT) is a nephrotoxic mycotoxin produced by Aspergillus, Penicillium, and Monascus genera. It appears as a contaminant in grains, fruits, and spices. After oral exposure to CIT, its major urinary metabolite, dihydrocitrinone (DHC) is formed, which can be detected in human urine and blood samples. Cyclodextrins (CDs) are ring-shaped molecules built up from glucose units. CDs can form host-guest type complexes with several compounds, including mycotoxins. In this study, the complex formation of DHC with native and chemically modified beta- and gamma-cyclodextrins was tested at a wide pH range, employing steady-state fluorescence spectroscopic and modeling studies. The weakly acidic environment favors the formation of DHC-CD complexes. Among the CDs tested, the quaternary-ammonium-γ-cyclodextrin (QAGCD) formed the most stable complexes with DHC. However, the quaternary-ammonium-β-cyclodextrin (QABCD) induced the strongest enhancement in the fluorescence signal of DHC. Our results show that some of the chemically modified CDs are able to form stable complexes with DHC (logK = 3.2–3.4) and the complex formation can produce even a 20-fold increase in the fluorescence signal of DHC. Considering the above-listed observations, CD technology may be a promising tool to increase the sensitivity of the fluorescence detection of DHC.
机译:Citrinin(CIT)是由曲霉属,青霉属和红曲霉属产生的一种肾毒性霉菌毒素。它似乎是谷物,水果和香料中的污染物。口服CIT后,会形成其主要的尿代谢产物二氢西可酮(DHC),可在人尿液和血液样本中检测到。环糊精(CDs)是由葡萄糖单元组成的环状分子。 CD可以与几种化合物(包括霉菌毒素)形成客体型复合物。在这项研究中,采用稳态荧光光谱和模型研究,在较宽的pH范围内测试了DHC与天然和化学修饰的β-和γ-环糊精的复杂形成。弱酸性环境有利于DHC-CD复合物的形成。在测试的CD中,季铵-γ-环糊精(QAGCD)与DHC形成最稳定的配合物。然而,季铵-β-环糊精(QABCD)诱导DHC荧光信号最强的增强。我们的结果表明,某些经过化学修饰的CD能够与DHC形成稳定的复合物(logK = 3.2–3.4),并且复合物的形成甚至可以使DHC的荧光信号增加20倍。考虑到上面列出的观察结果,CD技术可能是增加DHC荧光检测灵敏度的有前途的工具。

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