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肾小管细胞膜抑制草酸钙一水合物晶体的生长,但促进其聚集。

Renal tubular cell membranes inhibit growth but promote aggregation of calcium oxalate monohydrate crystals.

机构信息

Mahidol University, Bangkok, Thailand.

出版信息

Chem Biol Interact. 2010 Dec 5;188(3):421-6. doi: 10.1016/j.cbi.2010.08.003. Epub 2010 Aug 24.

Abstract

Cell membranes have been proposed to serve as promoters for calcium oxalate monohydrate (COM) kidney stone formation. However, direct evidence to demonstrate the modulatory effects of renal tubular cell membranes on COM crystals does not currently exist. We thus examined the effects of intact MDCK cells and their fragmented membranes on COM crystal growth, aggregation and transformation. COM crystals were generated in the absence (control) or presence of intact MDCK cells or their membrane fragments. Intact MDCK cells and their membrane fragments significantly inhibited COM crystal growth (22.6% and 25.2% decreases in size, respectively) and significantly reduced COM total crystal mass (23.1% and 25.6% decreases, respectively). In contrast, both of them markedly promoted crystal aggregation (1.9-fold and 3.2-fold increases, respectively). Moreover, both intact cells and membrane fragments could transform COM to calcium oxalate dihydrate (COD) crystals. Finally, COM crystal growth inhibitory activities of both membrane forms were successfully confirmed by a spectrophotometric oxalate-depletion assay. Our data provide the first direct evidence to demonstrate the dual modulatory effects of MDCK membranes on COM crystals. Although growth of individual COM crystals was inhibited, their aggregation was promoted. These findings provide additional insights into the mechanisms of COM kidney stone formation.

摘要

细胞膜被认为是促进一水合草酸钙 (COM) 肾结石形成的启动子。然而,目前尚无直接证据表明肾小管细胞膜对 COM 晶体具有调节作用。因此,我们研究了完整的 MDCK 细胞及其碎片膜对 COM 晶体生长、聚集和转化的影响。在不存在(对照)或存在完整的 MDCK 细胞或其膜碎片的情况下生成 COM 晶体。完整的 MDCK 细胞及其膜碎片显著抑制 COM 晶体生长(分别减少 22.6%和 25.2%的大小),并显著降低 COM 总晶体质量(分别减少 23.1%和 25.6%)。相比之下,它们都显著促进了晶体聚集(分别增加 1.9 倍和 3.2 倍)。此外,两者都可以将 COM 转化为二水草酸钙 (COD) 晶体。最后,通过分光光度法草酸耗竭试验成功证实了两种膜形式对 COM 晶体生长的抑制活性。我们的数据首次提供了直接证据,证明了 MDCK 膜对 COM 晶体的双重调节作用。虽然单个 COM 晶体的生长受到抑制,但它们的聚集得到了促进。这些发现为 COM 肾结石形成的机制提供了更多的见解。

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