首页> 外文会议>Pacific Rim conference on ceramic and glass technology >INITIAL INVESTIGATIONS IN APPLYING A PILP-MINERALIZATION SYSTEM TO CALCIUM OXALATE FORMATION USING VAPOR DIFFUSION
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INITIAL INVESTIGATIONS IN APPLYING A PILP-MINERALIZATION SYSTEM TO CALCIUM OXALATE FORMATION USING VAPOR DIFFUSION

机译:在将矿物质成矿的柱状矿化系统中利用蒸气扩散进行初步研究

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In attempts to create an in vitro model system for studying the physiochemical mechanisms involved in the formation of kidney stones, the PILP mineralization process was employed. Here it is hypothesized that the acidic proteins present in urine and renal tissue play a central role in idiopathic nephrolithiasis, where non-classical crystallization may take place. In this two stage process, it has been proposed that calcium phosphate (CaP) is first deposited in the basement membrane of the renal tubules and then grows through the renal interstitium reaching the papillary surface to form sub-epithelial plaque called Randall's plaque (RP). The RP, once exposed to urine in the renal pelvis, becomes coated with calcium oxalate (CaOx) to form a stone. This work is the initial foray into determining the influence of a negatively charged polymer upon the formation of calcium oxalate.
机译:在尝试创建体外模型系统以研究参与肾结石形成的物理化学机制时,采用了PILP矿化过程。在此假设存在于尿液和肾脏组织中的酸性蛋白在特发性肾结石症中可能起非典型的结晶作用,起着重要作用。在这两个阶段的过程中,已经提出磷酸钙(CaP)首先沉积在肾小管的基底膜中,然后通过肾间质生长并到达乳头状表面,形成称为Randall斑块(RP)的上皮下斑块。 。 RP一旦暴露于肾盂的尿液中,就会被草酸钙(CaOx)覆盖形成结石。这项工作是确定带负电荷的聚合物对草酸钙形成的影响的初步尝试。

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