Kinetic Evaluation of Spin Trapping Rate Constants of New CYPMPO-type Spin Traps for Superoxide and Other Free Radicals

Author:

Sueishi Yoshimi1,Kamogawa Erisa1,Nakamura Hideo2,Ukai Mitsuko2,Kunieda Michio3,Okada Taiichi3,Shimmei Masashi4,Kotake Yashige4

Affiliation:

1. Department of Chemistry, Faculty of Science, Okayama University, Kita-ku, Okayama 700-8530 Japan

2. Department of Humanities and Regional Science, Hokkaido University of Education, Hakodate, Hokkaido 040-8567 Japan

3. Mikuni Pharmaceutical Industrial Co., Ltd. Toyonaka, Osaka 561-0823 Japan

4. Radical Research Inc., Hino, Tokyo, 191-0061, Japan

Abstract

Abstract CYPMPO (5-(2,2-dimethyl-1,3-propoxyl cyclophosphoryl)-5-methyl-1-pyrroline N-oxide) is a phosphorus containing spin trap that has been useful in aqueous media. Using a kinetic ESR spin trapping technique, we evaluated free radical trapping rate constants of two newly synthesized CYPMPO-type spin traps, including 2,2-dibutyl-substituted CYPMPO (DBCYP) and 5-phenyl-substituted CYPMPO (PhCYP). We investigated the spin trapping of five free radical species, i. e., superoxide, hydroxyl radical, alkoxyl radical, alkyl peroxyl radical and methyl radical. Other than superoxide, spin trapping rate constants of DBCYP and PhCYP are comparable to CYPMPO, ranging from 43.9% to 101% of CYPMPO's corresponding rate constants. However, PhCYP's spin-trapping rate constant against superoxide was 44% higher than that of CYPMPO. The results indicate that DBCYP and PhCYP may be the spin traps as useful as CYPMPO either in aqueous or non-aqueous medium.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

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