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1.
Int J Biochem Mol Biol ; 3(3): 282-9, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-23097744

RESUMO

Catalase is well known antioxidant enzyme which catalyses the dissociation of hydrogen peroxide directly into H(2)O and O(2). Mammalian catalase has been considered as 'a venerable enzyme with new mysteries'. Some aspects of its mechanism of action are mystifying and many of new findings are still unexplained. To fill up the gap we propose the 'Hydroxyl Radical Generation Theory (HRGT)' with possible mechanism. According to HRGT, mammalian catalase apart from its known catalytic reaction generates hydroxyl radicals (HRs). The HR generation mainly depends on concentration of specific substrate, hydrogen peroxide. The present theory is supported by previous experimental findings and has great deal of observational evidences. The proposed mechanism of generation of HRs answer several unexplained features of mammalian catalase, however, should be tested further.

2.
Protein Cell ; 1(10): 888-97, 2010 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-21204015

RESUMO

Catalases are well studied enzymes that play critical roles in protecting cells against the toxic effects of hydrogen peroxide. The ubiquity of the enzyme and the availability of substrates made heme catalases the focus of many biochemical and molecular biology studies over 100 years. In human, this has been implicated in various physiological and pathological conditions. Advancement in proteomics revealed many of novel and previously unknown features of this mysterious enzyme, but some functional aspects are yet to be explained. Along with discussion on future research area, this mini-review compile the information available on the structure, function and mechanism of action of human catalase.


Assuntos
Catalase/química , Peróxido de Hidrogênio/metabolismo , Catalase/metabolismo , Catalase/fisiologia , Heme/química , Humanos
3.
Indian J Clin Biochem ; 24(1): 36-41, 2009 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-23105804

RESUMO

Measurement of plasma hemoglobin is useful in variety of clinical conditions. In the present study we have developed a kinetic method to estimate plasma haemoglobin by using o-tolidine. This method is sensitive, rapid, economical, simple and less influenced by interfering substances. It measures plasma haemoglobin in the range of 6 to 400 mg/L (normal range < 50 mg/L) in less than two minutes and can be easily automated.

4.
Indian J Clin Biochem ; 24(4): 375-80, 2009 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-23105864

RESUMO

Oxidative stress has been proposed as a common underlying mechanism of cataractogenesis. Experimental and observational data suggest that micronutrients like vitamin C and vitamin E with antioxidant capabilities may retard the development of age-related cataract. Effect of these factors on lens epithelium cells, center of lens metabolic activities, is not completely elucidated. The aim of present study was to examine the effect of vitamin C and E on surgically removed lens epithelium cells of patients with cataract. Capsulorhexis samples were collected from 170 patients, admitted for cataract surgery. Catalase specific activity was estimated in lens epithelium cells with and without vitamin (C or E) treatment at different concentration for different time duration. Student's t-test was employed for data analysis. We observed that in ex-vivo condition, a) both vitamin C and E bring about a decrease in catalase activity in lens epithelial cells. b) vitamin C showed toxic effect at high concentration. c) 100µM was the optimum concentration at which both vitamins showed maximum antioxidant activity. It was concluded that both vitamin C and E has direct effect on lens epithelium cells. At optimum concentration, they can reduce oxidative stress in these cells thus can support to prevent or delay cataract development.

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