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首页> 外文期刊>International Journal of Nanomedicine >Changes in urinary nanocrystallites in calcium oxalate stone formers before and after potassium citrate intake
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Changes in urinary nanocrystallites in calcium oxalate stone formers before and after potassium citrate intake

机译:在柠檬酸钾摄入前后草原石斛制液中泌尿纳米晶体的变化

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Abstract: The property changes of urinary nanocrystallites in 13 patients with calcium oxalate (CaOx) stones were studied before and after ingestion of potassium citrate (K3cit), a therapeutic drug for stones. The analytical techniques included nanoparticle size analysis, transmission electron microscopy, X-ray diffraction, and Fourier-transform infrared spectroscopy. The studied properties included the components, morphologies, zeta potentials, particle size distributions, light intensity autocorrelation curves, and polydispersity indices (PDIs) of the nanocrystallites. The main components of the urinary nanocrystallites before K3cit intake included uric acid, β-calcium phosphate, and calcium oxalate monohydrate. After K3cit intake, the quantities, species, and percentages of aggregated crystals decreased, whereas the percentages of monosodium urate and calcium oxalate dehydrate increased, and some crystallites became blunt. Moreover, the urinary pH increased from 5.96 ± 0.43 to 6.46 ± 0.50, the crystallite size decreased from 524 ± 320 nm to 354 ± 173 nm, and the zeta potential decreased from ?4.85 ± 2.87 mV to ?8.77 ± 3.03 mV. The autocorrelation curves became smooth, the decay time decreased from 11.4 ± 3.2 ms to 4.3 ± 1.7 ms, and the PDI decreased from 0.67 ± 0.14 to 0.53 ± 0.19. These changes helped inhibit CaOx calculus formation.
机译:摘要:在摄入柠檬酸钾(K3cit)的柠檬酸钾(K3cit)之前和之后,研究了13例草酸钙患者尿纳米晶体的性质变化,用于柠檬酸钾(K3cit),是石英的治疗药物。分析技术包括纳米粒子尺寸分析,透射电子显微镜,X射线衍射和傅里叶变换红外光谱。研究包括纳米晶体的组分,形态,Zeta电位,粒度分布,光强度自相关曲线和多分散性指数(PDIS)。 K3Cit摄入前的尿纳米晶体的主要成分包括尿酸,β-磷酸钙和草酸钙一水合物。在K3Cit摄入后,占聚集晶体的量,物种和百分比减少,而单钠尿酸盐和草酸钙脱水的百分比增加,并且一些微晶变得钝。此外,尿pH从5.96±0.43增加到6.46±0.50,微晶尺寸从524±320nm降低到354±173nm,Zeta电位从α才能降低到4.85±2.87 mV到α.8.77±3.03 mV。自相关曲线变得光滑,衰减时间从11.4±3.2 ms降低到4.3±1.7ms,PDI从0.67±0.14降至0.53±0.19。这些变化有助于抑制Caox Charulus的形成。

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