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  1. 原著論文

EPR signal reduction kinetic of several nitroxyl derivatives in blood in vitro and in vivo

https://repo.qst.go.jp/records/45756
https://repo.qst.go.jp/records/45756
ca53da9f-153b-4a36-a803-14778ba4538b
Item type 学術雑誌論文 / Journal Article(1)
公開日 2009-06-22
タイトル
タイトル EPR signal reduction kinetic of several nitroxyl derivatives in blood in vitro and in vivo
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Zhelev, Zhivko

× Zhelev, Zhivko

WEKO 1024664

Zhelev, Zhivko

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Matsumoto, Kenichiro

× Matsumoto, Kenichiro

WEKO 1024665

Matsumoto, Kenichiro

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Veselina, Gadjeva

× Veselina, Gadjeva

WEKO 1024666

Veselina, Gadjeva

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Rumiana, Bakalova-Zheleva

× Rumiana, Bakalova-Zheleva

WEKO 1024667

Rumiana, Bakalova-Zheleva

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Aoki, Ichio

× Aoki, Ichio

WEKO 1024668

Aoki, Ichio

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Zheleva, Antoaneta

× Zheleva, Antoaneta

WEKO 1024669

Zheleva, Antoaneta

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Anzai, Kazunori

× Anzai, Kazunori

WEKO 1024670

Anzai, Kazunori

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Zhelev, Zhivko

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WEKO 1024671

en Zhelev, Zhivko

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Kenichiro, Matsumoto

× Kenichiro, Matsumoto

WEKO 1024672

en Kenichiro, Matsumoto

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Bakalova, Rumiana

× Bakalova, Rumiana

WEKO 1024673

en Bakalova, Rumiana

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Ichio, Aoki

× Ichio, Aoki

WEKO 1024674

en Ichio, Aoki

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Kazunori, Anzai

× Kazunori, Anzai

WEKO 1024675

en Kazunori, Anzai

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抄録
内容記述タイプ Abstract
内容記述 The present study is focused on the mechanism(s) of electron-paramagnetic resonance (EPR) signal reduction kinetic of several nitroxyl radicals and nitroxyl-labeled anticancer drugs in physiological solutions in the context of their application for evaluation of oxidation/reduction status of blood and tissues – an important step in biomedical diagnostics and planning of therapy of many diseases. The nitroxyl derivatives were characterized with different size and water-solubility. Some of them are originally synthesized. In buffer, in the absence of reducing and oxidizing equivalents, the EPR signal intensity of all nitroxyls was constant with the time. In serum and cell cultured medium, in an absence of cells and in a negligible amount of reducing and oxidizing equivalents, there was no significant EPR signal reduction, too. In vitro (in freshly isolated blood samples), the EPR signal intensity was characterized with slow decrease within 30 min, presumably as a result of interaction between the nitroxyl derivative and blood cells. The EPR spectrum of hydrophobic nitroxyls showed a slight anisotropy in cell-containing solutions and it did not changed in non-cell physiological solutions. This suggests for a limited motion of more hydrophobic nitroxyls through their preferable location in cell membranes. In vivo (in the bloodstream of mice under anesthesia), the EPR signal reduction kinetic was characterized by two phases: i) a rapid enhancement within 30 s as a result of increasing of nitroxyl concentration in the bloodstream after its intravenous injection, followed by ii) a rapid decrease (~80–100%) within 2–5 min, presumably as a result of transportation of nitroxyl in the tissues. The hydrophobic nitroxyls were characterized with stronger and faster decrease in EPR signal intensity in the blood in vivo, as a result of their higher cell permeability, rapid clearance from the bloodstream and/or transportation in the surrounding tissues. The hydrophilic nitroxyls persist in the bloodstream (in their radical form) for a comparatively long time.
The data suggest that the hydrophobic cell-permeable nitroxyl derivatives are most appropriate for evaluation of cell and tissue oxidation/reduction status, while the hydrophilic nitroxyls (impermeable for cell membranes or with very slow cell permeability) are most appropriate for evaluation of oxidation/reduction status of blood using EPR imaging.
書誌情報 General Physiology and Biophysics

巻 28, 号 4, p. 356-362, 発行日 2009-12
ISSN
収録物識別子タイプ ISSN
収録物識別子 0231-5882
PubMed番号
識別子タイプ PMID
関連識別子 20097958
DOI
識別子タイプ DOI
関連識別子 10.4149/gpb_2009_04_356
関連サイト
識別子タイプ DOI
関連識別子 https://doi.org/10.4149/gpb_2009_04_356
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