2014Progress in Veterinary MedicineRequires access

Effect of Different Concentrations of Hydrogen Peroxide on Hemoglobin Release of Erythrocytes

Wei Chun-hu

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Abstract

In order to study the effect of hydrogen peroxide(H2O2)on the hemoglobin release of normal human red blood cell(RBC),The malondialdehyde contents and relative solubility of RBC and hemoglobin release test(HRT)were used to study the hemoglobin release of normal RBCs treated with different concentration(8%,4%,2%,1%,0.5%,0.25%and 0.125%)of H2O2.The results show that the hemoglobin release was increased with increased concentration of H2O2.However,high concentration of H2O2could decrease the released Hb.So different concentrations of H2O2has different effect on the hemoglobin release of RBC.

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What this paper is about

In order to study the effect of hydrogen peroxide(H2O2)on the hemoglobin release of normal human red blood cell(RBC),The malondialdehyde contents and relative solubility of RBC and hemoglobin release test(HRT)were used to study the hemoglobin release of normal RBCs treated with different concentration(8%,4%,2%,1%,0.5%,0.25%and 0.125%)of H2O2.The results show that the hemoglobin release was increased with increased concentration of H2O2.However,high concentration of H2O2could decrease the released Hb.So different concentrations of H2O2has different effect on the hemoglobin release of RBC.

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Available abstract

In order to study the effect of hydrogen peroxide(H2O2)on the hemoglobin release of normal human red blood cell(RBC),The malondialdehyde contents and relative solubility of RBC and hemoglobin release test(HRT)were used to study the hemoglobin release of normal RBCs treated with different concentration(8%,4%,2%,1%,0.5%,0.25%and 0.125%)of H2O2.The results show that the hemoglobin release was increased with increased concentration of H2O2.However,high concentration of H2O2could decrease the released Hb.So different concentrations of H2O2has different effect on the hemoglobin release of RBC.

Key concepts: Hemoglobin, Hydrogen peroxide, Chemistry, Malondialdehyde, Red blood cell, Solubility, Biochemistry, Oxidative stress

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