Literature DB >> 26652375

Adhesion and internalization differences of COM nanocrystals on Vero cells before and after cell damage.

Qiong-Zhi Gan1, Xin-Yuan Sun1, Jian-Ming Ouyang2.   

Abstract

The adhesion and internalization between African green monkey kidney epithelial (Vero) cells (before and after oxidative damage by hydrogen peroxide) and calcium oxalate monohydrate (COM) nanocrystals (97±35nm) were investigated so as to discuss the molecular and cellular mechanism of kidney stone formation. Scanning electron microscope (SEM) was used to observe the Vero-COM nanocrystal adhesion; the nanocrystal-cell adhesion was evaluated by measuring the content of malonaldehyde (MDA), the activity of superoxide dismutase (SOD), the expression level of cell surface osteopontin (OPN) and the change of Zeta potential. Confocal microscopy and flow cytometry were used for the observation and quantitative analysis of crystal internalization. In the process of adhesion, the cell viability and the SOD activity declined, the MDA content, Zeta potential, and the OPN expression level increased. The adhesive capacity of injured Vero was obviously stronger than normal cells; in addition the injured cells promoted the aggregation of COM nanocrystals. The capacity of normal cells to internalize crystals was obviously stronger than that of injured cells. Cell injury increased adhesive sites on cell surface, thereby facilitating the aggregation of COM nanocrystals and their attachment, which results in enhanced risk of calcium oxalate stone formation.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Calcium oxalate monohydrate; Crystal adhesion; Crystal internalization; Oxidative damage

Mesh:

Substances:

Year:  2015        PMID: 26652375     DOI: 10.1016/j.msec.2015.10.012

Source DB:  PubMed          Journal:  Mater Sci Eng C Mater Biol Appl        ISSN: 0928-4931            Impact factor:   7.328


  7 in total

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2.  Dietary Oxalate Induces Urinary Nanocrystals in Humans.

Authors:  Parveen Kumar; Mikita Patel; Vinoy Thomas; John Knight; Ross P Holmes; Tanecia Mitchell
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5.  Repair of Tea Polysaccharide Promotes the Endocytosis of Nanocalcium Oxalate Monohydrate by Damaged HK-2 Cells.

Authors:  Chuang-Ye Li; Li Liu; Yao-Wang Zhao; Qian-Long Peng; Xin-Yuan Sun; Da Guo; Jian-Ming Ouyang
Journal:  Oxid Med Cell Longev       Date:  2020-04-25       Impact factor: 6.543

6.  Preprotection of Tea Polysaccharides with Different Molecular Weights Can Reduce the Adhesion between Renal Epithelial Cells and Nano-Calcium Oxalate Crystals.

Authors:  Yao-Wang Zhao; Li Liu; Chuang-Ye Li; Hui Zhang; Xin-Yuan Sun; Jian-Ming Ouyang
Journal:  Oxid Med Cell Longev       Date:  2020-01-06       Impact factor: 6.543

7.  Shape-dependent toxicity and mineralization of hydroxyapatite nanoparticles in A7R5 aortic smooth muscle cells.

Authors:  Ling-Hong Huang; Xin-Yuan Sun; Jian-Ming Ouyang
Journal:  Sci Rep       Date:  2019-12-12       Impact factor: 4.379

  7 in total

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