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Analytical measurement of discrete hydrogen sulfide pools in biological specimens

Authors :
Shen, Xinggui
Peter, Elvis A.
Bir, Shyamal
Wang, Rui
Kevil, Christopher G.
Source :
Free Radical Biology & Medicine. Jun2012, Vol. 52 Issue 11/12, p2276-2283. 8p.
Publication Year :
2012

Abstract

Abstract: Hydrogen sulfide (H2S) is a ubiquitous gaseous signaling molecule that plays a vital role in numerous cellular functions and has become the focus of many research endeavors, including pharmacotherapeutic manipulation. Among the challenges facing the field is the accurate measurement of biologically active H2S. We have recently reported that the typically used methylene blue method and its associated results are invalid and do not measure bona fide H2S. The complexity of analytical H2S measurement reflects the fact that hydrogen sulfide is a volatile gas and exists in the body in various forms, including a free form, an acid-labile pool, and bound as sulfane sulfur. Here we describe a new protocol to discretely measure specific H2S pools using the monobromobimane method coupled with RP-HPLC. This new protocol involves selective liberation, trapping, and derivatization of H2S. Acid-labile H2S is released by incubating the sample in an acidic solution (pH 2.6) of 100mM phosphate buffer with 0.1mM diethylenetriaminepentaacetic acid (DTPA), in an enclosed system to contain volatilized H2S. Volatilized H2S is then trapped in 100mM Tris–HCl (pH 9.5, 0.1mM DTPA) and then reacted with excess monobromobimane. In a separate aliquot, the contribution of the bound sulfane sulfur pool was measured by incubating the sample with 1mM TCEP (tris(2-carboxyethyl)phosphine hydrochloride), a reducing agent, to reduce disulfide bonds, in 100mM phosphate buffer (pH 2.6, 0.1mM DTPA), and H2S measurement was performed in a manner analogous to the one described above. The acid-labile pool was determined by subtracting the free hydrogen sulfide value from the value obtained by the acid-liberation protocol. The bound sulfane sulfur pool was determined by subtracting the H2S measurement from the acid-liberation protocol alone compared to that of TCEP plus acidic conditions. In summary, our new method allows very sensitive and accurate measurement of the three primary biological pools of H2S, including free, acid-labile, and bound sulfane sulfur, in various biological specimens. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
08915849
Volume :
52
Issue :
11/12
Database :
Academic Search Index
Journal :
Free Radical Biology & Medicine
Publication Type :
Academic Journal
Accession number :
76616377
Full Text :
https://doi.org/10.1016/j.freeradbiomed.2012.04.007