Literature DB >> 7871629

Madin-Darby canine kidney cells are injured by exposure to oxalate and to calcium oxalate crystals.

R L Hackett, P N Shevock, S R Khan.   

Abstract

The reaction of Madin-Darby canine kidney cells (MDCK) to potassium oxalate (KOx), calcium oxalate monohydrate (COM) crystals, or a combination of the two was studied. The most noticeable effect of exposure of the cells to either KOx or COM crystals was loss of cells from the monolayer ranging from 20% to 30%, depending upon the particular treatment. Cellular enzyme values in the media were elevated significantly by 12 h of exposure, although in specific instances, elevated levels occurred at earlier time periods. As regards the monolayer, trypan blue exclusion was decreased significantly, although amounting to only a 4-5% reduction. Specific tritiated release occurred at 4 and 12 h after exposure to KOx and at 12 h after exposure to crystals. Structurally, COM-cell interactions were complex and extensive endocytosis was noted. Cells were released from culture either as cell-crystal complexes or from the intercellular spaces after exocytosis. When treatments were combined the effects were only slightly additive, but the two treatments potentiated each other: all media enzyme levels (with one exception) were elevated at 2 h, tritiated adenine release was present at 4 h, and there was more extensive cell loss from the culture monolayer. These data suggest that both KOx and COM crystals damage MDCK cells when applied alone, and in concert they act synergistically.

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Year:  1994        PMID: 7871629     DOI: 10.1007/bf00541892

Source DB:  PubMed          Journal:  Urol Res        ISSN: 0300-5623


  23 in total

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Journal:  Clin Chim Acta       Date:  1976-12       Impact factor: 3.786

2.  Cell injury associated calcium oxalate crystalluria.

Authors:  R L Hackett; P N Shevock; S R Khan
Journal:  J Urol       Date:  1990-12       Impact factor: 7.450

3.  Membrane-associated crystallization of calcium oxalate in vitro.

Authors:  S R Khan; P N Shevock; R L Hackett
Journal:  Calcif Tissue Int       Date:  1990-02       Impact factor: 4.333

4.  Urinary enzymes and calcium oxalate urolithiasis.

Authors:  S R Khan; P N Shevock; R L Hackett
Journal:  J Urol       Date:  1989-09       Impact factor: 7.450

5.  Large scale isolation and characterization of calf thymocyte plasma membranes.

Authors:  R Kornfeld; C Siemers
Journal:  J Biol Chem       Date:  1974-02-25       Impact factor: 5.157

6.  A routine procedure for estimating serum gamma-glutamyltranspeptidase activity.

Authors:  L Naftalin; M Sexton; J F Whitaker; D Tracey
Journal:  Clin Chim Acta       Date:  1969-11       Impact factor: 3.786

7.  Calcium oxalate monohydrate crystals are endocytosed by renal epithelial cells and induce proliferation.

Authors:  J C Lieske; M M Walsh-Reitz; F G Toback
Journal:  Am J Physiol       Date:  1992-04

8.  Reactive oxygen molecule-mediated injury in endothelial and renal tubular epithelial cells in vitro.

Authors:  S P Andreoli; J A McAteer
Journal:  Kidney Int       Date:  1990-11       Impact factor: 10.612

Review 9.  Idiopathic calcium oxalate nephrolithiasis: a cellular disease.

Authors:  G Gambaro; B Baggio
Journal:  Scanning Microsc       Date:  1992-03

10.  In vitro detection of endothelial cell damage using 2-deoxy-D-3H-glucose: comparison with chromium 51, 3H-leucine, 3H-adenine, and lactate dehydrogenase.

Authors:  S P Andreoli; R L Baehner; J M Bergstein
Journal:  J Lab Clin Med       Date:  1985-09
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  35 in total

1.  The effect of intracrystalline and surface-bound osteopontin on the degradation and dissolution of calcium oxalate dihydrate crystals in MDCKII cells.

Authors:  Lauren A Thurgood; Esben S Sørensen; Rosemary L Ryall
Journal:  Urol Res       Date:  2011-09-20

2.  Effects of oxalate exposure on Madin-Darby canine kidney cells in culture: renal prothrombin fragment-1 mRNA expression.

Authors:  Manabu T Moryama; Chizue Domiki; Katsuhito Miyazawa; Tatsuro Tanaka; Koji Suzuki
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4.  Oxalate induced expression of monocyte chemoattractant protein-1 (MCP-1) in HK-2 cells involves reactive oxygen species.

Authors:  Pouran Habibzadegah-Tari; Karen Byer; Saeed R Khan
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Review 5.  Hyperoxaluria-induced oxidative stress and antioxidants for renal protection.

Authors:  Saeed R Khan
Journal:  Urol Res       Date:  2005-11-15

6.  Apoptosis induced by oxalate in human renal tubular epithelial HK-2 cells.

Authors:  Byong-Chang Jeong; Cheol Kwak; Kyu Seon Cho; Bong Sub Kim; Sung Kyu Hong; Jung-In Kim; Chongwook Lee; Hyeon Hoe Kim
Journal:  Urol Res       Date:  2005-03-10

7.  Limitation of apoptotic changes in renal tubular cell injury induced by hyperoxaluria.

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Journal:  Urol Res       Date:  2004-07-13

8.  Cynodon dactylon extract as a preventive and curative agent in experimentally induced nephrolithiasis.

Authors:  F Atmani; C Sadki; M Aziz; M Mimouni; B Hacht
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9.  Role of TNF-associated cytokines in renal tubular cell apoptosis induced by hyperoxaluria.

Authors:  Rahim Horuz; Cemal Göktaş; Cihangir A Çetinel; Oktay Akça; Hasan Aydın; Işın D Ekici; Selami Albayrak; Kemal Sarıca
Journal:  Urolithiasis       Date:  2013-04-18       Impact factor: 3.436

10.  Analysis of HK-2 cells exposed to oxalate and calcium oxalate crystals: proteomic insights into the molecular mechanisms of renal injury and stone formation.

Authors:  Shushang Chen; Xiaofeng Gao; Yinghao Sun; Chuanliang Xu; Linhui Wang; Tie Zhou
Journal:  Urol Res       Date:  2009-10-28
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