Thiols and in particular glutathione (GSH) play a central role in human metabolism, including the detoxification of xenobiotics, cell homeostasis, radioprotection, and antioxidant defence. Here, a new method is provided for the measurement of reduced and total forms of thiols in red blood cells. In order to minimize oxidation of reduced thiols, a water erythrocyte lysis (15 min at 4&DEG; C) was performed followed by a protein precipitation step with acetonitrile. The supernatant was rapidly derivatized with 5-iodoacetoamidefluorescein that trapped thiol groups, thus minimizing auto-oxidation. Derivatized samples were separated in a 57 cm x 75 μ m ID capillary by using 5 mmol/L sodium phosphate, 4 mmol/L boric acid as electrolyte solution with 75 mmol/L N-methyl-D-glucamine at pH 11.0. Under these conditions, cysteinylglycine (CysGly), cysteine (Cys), glutathione, and γ-glutamylcysteine (GluCys) were baseline-resolved in &SIM; 4 min. Precision tests showed a good repeatability of our method both for migration times (coefficient of variation CV < 0.8%) and areas (CV < 3.3%). Furthermore, a good reproducibility of intrassay and interassay tests was obtained (CV < 5% and CV < 8%, respectively). The method was employed to investigate the effect of acidic precipitation on intracellular thiol concentration. Our data suggest that sample acidification causes a modification of the measured redox thiol status due to the development of a pro-oxidant environment; moreover, the thiol redox status of red blood cells was evaluated in 22 healthy volunteers.

Thiol redox status evaluation in red blood cells by capillary electrophoresis laser induced fluorescence detection / Zinellu, A; Sotgia, S; Usai, Mf; Chessa, R; Deiana, L; Carru, C. - In: ELECTROPHORESIS. - ISSN 0173-0835. - 26:10(2005), pp. 1963-1968. [10.1002/elps.200400042]

Thiol redox status evaluation in red blood cells by capillary electrophoresis laser induced fluorescence detection

ZINELLU A;SOTGIA S;CARRU C
2005-01-01

Abstract

Thiols and in particular glutathione (GSH) play a central role in human metabolism, including the detoxification of xenobiotics, cell homeostasis, radioprotection, and antioxidant defence. Here, a new method is provided for the measurement of reduced and total forms of thiols in red blood cells. In order to minimize oxidation of reduced thiols, a water erythrocyte lysis (15 min at 4&DEG; C) was performed followed by a protein precipitation step with acetonitrile. The supernatant was rapidly derivatized with 5-iodoacetoamidefluorescein that trapped thiol groups, thus minimizing auto-oxidation. Derivatized samples were separated in a 57 cm x 75 μ m ID capillary by using 5 mmol/L sodium phosphate, 4 mmol/L boric acid as electrolyte solution with 75 mmol/L N-methyl-D-glucamine at pH 11.0. Under these conditions, cysteinylglycine (CysGly), cysteine (Cys), glutathione, and γ-glutamylcysteine (GluCys) were baseline-resolved in &SIM; 4 min. Precision tests showed a good repeatability of our method both for migration times (coefficient of variation CV < 0.8%) and areas (CV < 3.3%). Furthermore, a good reproducibility of intrassay and interassay tests was obtained (CV < 5% and CV < 8%, respectively). The method was employed to investigate the effect of acidic precipitation on intracellular thiol concentration. Our data suggest that sample acidification causes a modification of the measured redox thiol status due to the development of a pro-oxidant environment; moreover, the thiol redox status of red blood cells was evaluated in 22 healthy volunteers.
2005
Thiol redox status evaluation in red blood cells by capillary electrophoresis laser induced fluorescence detection / Zinellu, A; Sotgia, S; Usai, Mf; Chessa, R; Deiana, L; Carru, C. - In: ELECTROPHORESIS. - ISSN 0173-0835. - 26:10(2005), pp. 1963-1968. [10.1002/elps.200400042]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/140158
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