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      The molecular mechanism underlining the preventive effect of vitamin D against hepatic and renal acute toxicity through the NrF2/ BACH1/ HO-1 pathway

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      Life Sciences
      Elsevier BV

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          Drug-induced hepatotoxicity.

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            Method for the measurement of antioxidant activity in human fluids.

            To develop a new, simple, and cheap method for estimating antioxidant activity in human fluids. The assay measured the capacity of the biological fluids to inhibit the production of thiobarbituric acid reactive substances (TBARS) from sodium benzoate under the influence of the free oxygen radicals derived from Fenton's reaction. A solution of 1 mmol/litre uric acid was used as standard. The following mean (SD) antioxidative activities were found (as uric acid) in the various biological fluids: serum, 2.04 (0.20) mmol/litre; urine, 176.5 (25.6) micromol/litre; cerebrospinal fluid, 95.0 (26.9) micromol/litre; aqueous humour oculi, 61.25 (9.9) micromol/litre; saliva, 838.5 (48.2) micromol/litre; tears, 247.0 (17.0) micromol/litre; ascites fluid, 270.0 (63.3) micromol/litre; kidney cyst fluid, 387.1 (28.1) micromol/litre. Small samples of the biological material were needed for the analyses: 10 microl of serum and 50-100 microl of other body fluids. In the sera of 48 healthy individuals there was a significant positive correlation between values obtained with the Randox method (as a reference method) and the new method proposed here (correlation coefficient, 0.8728; mean difference between methods, <0.4%). This method is easy, rapid, reliable, and practical for the routine measurement of total antioxidant activity in serum and other human body fluids. Small samples of biological material are needed for the analyses and the results are comparable with the reference (Randox) method.
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              Albumin standards and the measurement of serum albumin with bromcresol green

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                Author and article information

                Journal
                Life Sciences
                Life Sciences
                Elsevier BV
                00243205
                March 2020
                March 2020
                : 244
                : 117331
                Article
                10.1016/j.lfs.2020.117331
                31972209
                70747563-b79d-4519-ae77-51596c974f6a
                © 2020

                https://www.elsevier.com/tdm/userlicense/1.0/

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