Literature DB >> 18799548

Low-vitamin E diet exacerbates calcium oxalate crystal formation via enhanced oxidative stress in rat hyperoxaluric kidney.

Ho-Shiang Huang1, Ming-Chieh Ma, Jun Chen.   

Abstract

Vitamin E was previously reported to reduce calcium oxalate (CaOx) crystal formation. This study explored whether vitamin E deficiency affects intrarenal oxidative stress and accelerates crystal deposition in hyperoxaluria. The control (C) group of rats received a standard diet and drinking water, while the experimental groups received 0.75% ethylene glycol (EG) in drinking water for 42 days. Of the latter, one group received a standard diet (EG group), one received a low-vitamin E (LE) diet (EG+LE group), and the last received an LE diet with vitamin E supplement (4 mg) (EG+LE+E group). The C+LE and C+LE+E groups were the specific controls for the last two experimental groups, respectively. In a separate experiment, EG and EG+LE rats were studied on days 3-42 to examine the temporal relationship between oxidative change and crystal formation. Urinary biochemistry and activity/levels of antioxidative and oxidative enzymes in glomeruli and tubulointerstitial specimens (TIS) were examined. In EG rats, CaOx crystal accumulation was associated with low antioxidative enzyme activity in TIS and with increased oxidative enzyme expression in glomeruli. In the EG+LE group, marked changes in antioxidative and oxidative enzyme levels were seen and correlated with massive CaOx deposition and tubular damage. The increased oxidative stress seen with EG+LE treatment was largely reversed by vitamin E supplementation. A temporal study showed that decrease in antioxidative defense and increased free radical formation in the EG+LE group occurred before crystal deposition. This study shows that low vitamin E disrupts the redox balance and causes cell death, thereby favoring crystal formation.

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Year:  2008        PMID: 18799548     DOI: 10.1152/ajprenal.90309.2008

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  15 in total

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2.  Antioxidant therapy prevents ethylene glycol-induced renal calcium oxalate crystal deposition in Wistar rats.

Authors:  Mohammad Reza Naghii; Eslam Eskandari; Mahmood Mofid; Mehdi Jafari; Mohammad Hossein Asadi
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3.  Role of TNF-associated cytokines in renal tubular cell apoptosis induced by hyperoxaluria.

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Journal:  Urolithiasis       Date:  2013-04-18       Impact factor: 3.436

4.  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
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5.  Sodium thiosulfate ameliorates oxidative stress and preserves renal function in hyperoxaluric rats.

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6.  Vorinostat protects against calcium oxalate-induced kidney injury in mice.

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7.  Blockade of the N-Methyl-D-Aspartate Glutamate Receptor Ameliorates Lipopolysaccharide-Induced Renal Insufficiency.

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8.  Perfusion index derived from a pulse oximeter can detect changes in peripheral microcirculation during uretero-renal-scopy stone manipulation (URS-SM).

Authors:  Ho-Shiang Huang; Chun-Lin Chu; Chia-Ti Tsai; Cho-Kai Wu; Ling-Ping Lai; Huei-Ming Yeh
Journal:  PLoS One       Date:  2014-12-26       Impact factor: 3.240

9.  Protective Effect of Dihydromyricetin Against Lipopolysaccharide-Induced Acute Kidney Injury in a Rat Model.

Authors:  Jun-Tao Wang; Peng Jiao; Yun Zhou; Qian Liu
Journal:  Med Sci Monit       Date:  2016-02-11

10.  High Sodium-Induced Oxidative Stress and Poor Anticrystallization Defense Aggravate Calcium Oxalate Crystal Formation in Rat Hyperoxaluric Kidneys.

Authors:  Ho-Shiang Huang; Ming-Chieh Ma
Journal:  PLoS One       Date:  2015-08-04       Impact factor: 3.240

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