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Impact of various modifiers on calcium oxalate crystallization.

机译:各种改性剂对草酸钙结晶的影响。

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OBJECTIVE: This work focuses on the behavior of in vitro calcium oxalate crystallization. The effects of several compounds on the kinetics of calcium oxalate crystallization were examined. METHODS: Rates of nucleation and aggregation of calcium oxalate crystals were derived from 30-min time-course measurements of optic density at 620 nm after mixing solutions containing calcium chloride and sodium oxalate at 37 degrees C, pH 5.7. The maximum increase of optic density with time, termed S(N), mainly reflects maximum rate of formation of new particles and thus crystal nucleation. After equilibrium has been reached, optic density decreases. No new particles were formed due to crystal aggregation. S(A) (the maximum slope of decrease of optic density at 620 nm with time, representing crystal aggregation) is derived from the maximum decrease in optic density. RESULTS: Among the modifiers studied, citrate decreased both S(N) and S(A) (P < 0.001). Magnesium was also found to inhibit the rate of nucleation and crystal aggregation, but it appeared in a non-concentrated manner. Nucleation and aggregation inhibition ratios were related inversely to concentration of albumin (P < 0.001). CONCLUSION: The growth and agglomeration of calcium oxalate crystals are differently modulated by various compounds. The treatments aiming at inhibiting crystallization of calcium oxalate can be better defined by these findings. And new treatment modalities can be developed.
机译:目的:这项工作着眼于体外草酸钙结晶的行为。检查了几种化合物对草酸钙结晶动力学的影响。方法:草酸钙晶体的成核和聚集速率来自在37℃,pH 5.7的含氯化钙和草酸钠溶液混合后,在620 nm处30分钟的光程密度测量过程。光学密度随时间的最大增加,称为S(N),主要反映了新颗粒形成的最大速率以及晶体成核的速率。达到平衡后,光密度降低。由于晶体聚集,没有形成新的颗粒。 S(A)(620 nm处的光密度随时间降低的最大斜率,代表晶体聚集)是从光密度的最大降低得出的。结果:在所研究的改性剂中,柠檬酸盐降低了S(N)和S(A)(P <0.001)。还发现镁抑制成核和晶体聚集的速率,但它以未浓缩的方式出现。成核和聚集抑制率与白蛋白浓度成反比(P <0.001)。结论:各种化合物对草酸钙晶体的生长和结块具有不同的调节作用。这些发现可以更好地定义旨在抑制草酸钙结晶的治疗方法。并且可以开发新的治疗方式。

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