Calcium oxalate kidney stones, where is the organic matter?: A synchrotron based infrared microspectroscopy study

被引:5
作者
H. Valido, Iris [1 ]
Resina-Gallego, Montserrat [1 ]
Yousef, Ibraheem [2 ]
Luque-Galvez, Maria Pilar [3 ]
Valiente, Manuel [1 ]
Lopez-Mesas, Montserrat [1 ]
机构
[1] Univ Autonoma Barcelona, Dept Quim, Ctr Grp Tecn Separacio Quim GTS, Bellaterra, Spain
[2] ALBA CELLS Synchrotron, MIRAS Beamline BL01, Cerdanyola Del Valles, Spain
[3] Hosp Clin Barcelona, Dept Urol, Barcelona, Spain
关键词
calcium oxalate stones; kidney stones; nephrolithiasis; organic matter; synchrotron FTIR microspectroscopy; URINARY STONES; SPECTROSCOPY; PROTEINS; DISEASE; LIPIDS; CLASSIFICATION; EPIDEMIOLOGY; OSTEOPONTIN; BINDING; CALCULI;
D O I
10.1002/jbio.202000303
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Kidney stones are collections of microcrystals formed inside the kidneys, which affect 6% to 12% of the population worldwide, with an increasing recurrence (50%-72%) after the first episode. The most abundant type is calcium oxalate (66%), described as monohydrated (COM) and dihydrated (COD). An issue in their chemistry is the transformation process of the metastable specie (COD) into the stable one, which is chemically, and in appearance, monohydrated. Since the origin of these species is different, it is important to differentiate between the transformation stage (and what stabilize COD) to understand the physiopathology and prevent the patients' recurrence. This work focuses on the organic matter distribution along these nephroliths by synchrotron radiation-based infrared microspectroscopy. Differences in the asymmetric stretching of the aliphatic hydrocarbons suggest that lipids may participate in the stabilization of COD and as inhibitors of COM formation/development; however, the presence of proteins in the nucleus could indicate a promoting role.
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页数:8
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