Literature DB >> 21212532

Intracellular hypoxia of tumor tissue estimated by noninvasive electron paramagnetic resonance oximetry technique using paramagnetic probes.

Atsuko Matsumoto1, Ken-ichiro Matsumoto, Shingo Matsumoto, Fuminori Hyodo, Anastasia L Sowers, Janusz W Koscielniak, Nallathamby Devasahayam, Sankaran Subramanian, James B Mitchell, Murali C Krishna.   

Abstract

Electron paramagnetic resonance (EPR) oximetry at 700 MHz operating frequency employing a surface coil resonator is used to assess tissue partial pressure of oxygen (pO(2)) using paramagnetic media whose linewidth and decay constant are related to oxygen concentration. Differences in extracellular and intracellular pO(2) in squamous cell carcinoma (SCC) tumor tissue were tested using several types of water-soluble paramagnetic media, which localize extracellularly or permeate through the cell membrane. The nitroxide carboxy-PROXYL (CxP) can only be distributed in blood plasma and extracellular fluids whereas the nitroxides carbamoyl-PROXYL (CmP) and TEMPOL (TPL) can permeate cell membranes and localize intracellularly. EPR signal decay constant and the linewidth of the intravenously administered nitroxides in SCC tumor tissues implanted in mouse thigh and the contralateral normal muscle of healthy mice breathing gases with different pO(2) were compared. The pO(2) in the blood can depend on the oxygen content in the breathing gas while tissue pO(2) was not directly influenced by pO(2) in the breathing gas. The decay constants of CmP and TPL in tumor tissue were significantly larger than in the normal muscles, and lower linewidths of CmP and TPL in tumor tissue was observed. The SCC tumor showed intracellular hypoxia even though the extracellular pO(2) is similar to normal tissue in the peripheral region.

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Year:  2011        PMID: 21212532      PMCID: PMC7398585          DOI: 10.1248/bpb.34.142

Source DB:  PubMed          Journal:  Biol Pharm Bull        ISSN: 0918-6158            Impact factor:   2.233


  23 in total

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Authors:  M Minetti; G Scorza
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2.  Simultaneous molecular imaging of redox reactions monitored by Overhauser-enhanced MRI with 14N- and 15N-labeled nitroxyl radicals.

Authors:  Hideo Utsumi; Ken-ichi Yamada; Kazuhiro Ichikawa; Kiyoshi Sakai; Yuichi Kinoshita; Shingo Matsumoto; Mika Nagai
Journal:  Proc Natl Acad Sci U S A       Date:  2006-01-23       Impact factor: 11.205

3.  Use of nitroxides for assessing perfusion, oxygenation, and viability of tissues: in vivo EPR and MRI studies.

Authors:  B Gallez; G Bacic; F Goda; J Jiang; J A O'Hara; J F Dunn; H M Swartz
Journal:  Magn Reson Med       Date:  1996-01       Impact factor: 4.668

4.  Noninvasive imaging of tumor redox status and its modification by tissue glutathione levels.

Authors:  Periannan Kuppusamy; Haiquan Li; Govindasamy Ilangovan; Arturo J Cardounel; Jay L Zweier; Kenichi Yamada; Murali C Krishna; James B Mitchell
Journal:  Cancer Res       Date:  2002-01-01       Impact factor: 12.701

5.  Tumour oxygen dynamics measured simultaneously by near-infrared spectroscopy and 19F magnetic resonance imaging in rats.

Authors:  Mengna Xia; Vikram Kodibagkar; Hanli Liu; Ralph P Mason
Journal:  Phys Med Biol       Date:  2005-12-15       Impact factor: 3.609

6.  Estimation of free radical formation by beta-ray irradiation in rat liver.

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Authors:  L J Berliner; X M Wan
Journal:  Magn Reson Med       Date:  1989-03       Impact factor: 4.668

8.  Non-invasive analysis of reactive oxygen species generated in NH4OH-induced gastric lesions of rats using a 300 MHz in vivo ESR technique.

Authors:  Keiko Kasazaki; Keiji Yasukawa; Hiroaki Sano; Hideo Utsumi
Journal:  Free Radic Res       Date:  2003-07

9.  Lithium phthalocyanine: a probe for electron paramagnetic resonance oximetry in viable biological systems.

Authors:  K J Liu; P Gast; M Moussavi; S W Norby; N Vahidi; T Walczak; M Wu; H M Swartz
Journal:  Proc Natl Acad Sci U S A       Date:  1993-06-15       Impact factor: 11.205

10.  Feasibility and assessment of non-invasive in vivo redox status using electron paramagnetic resonance imaging.

Authors:  K-I Yamada; P Kuppusamy; S English; J Yoo; A Irie; S Subramanian; J B Mitchell; M C Krishna
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  7 in total

1.  Effects of oxygen challenging to tissue redox and pO2 status.

Authors:  Ken-Ichiro Matsumoto; James B Mitchell; Murali C Krishna
Journal:  Free Radic Biol Med       Date:  2018-11-02       Impact factor: 7.376

2.  Imaging of superoxide generation in the dopaminergic area of the brain in Parkinson's disease, using mito-TEMPO.

Authors:  Zhivko Zhelev; Rumiana Bakalova; Ichio Aoki; Dessislava Lazarova; Tsuneo Saga
Journal:  ACS Chem Neurosci       Date:  2013-09-16       Impact factor: 4.418

Review 3.  Pulsed Electron Paramagnetic Resonance Imaging: Applications in the Studies of Tumor Physiology.

Authors:  Shun Kishimoto; Ken-Ichiro Matsumoto; Keita Saito; Ayano Enomoto; Shingo Matsumoto; James B Mitchell; Nallathamby Devasahayam; Murali C Krishna
Journal:  Antioxid Redox Signal       Date:  2018-01-09       Impact factor: 8.401

Review 4.  Clinical EPR: unique opportunities and some challenges.

Authors:  Harold M Swartz; Benjamin B Williams; Bassem I Zaki; Alan C Hartford; Lesley A Jarvis; Eunice Y Chen; Richard J Comi; Marc S Ernstoff; Huagang Hou; Nadeem Khan; Steven G Swarts; Ann B Flood; Periannan Kuppusamy
Journal:  Acad Radiol       Date:  2014-02       Impact factor: 3.173

Review 5.  Redox- and hypoxia-responsive MRI contrast agents.

Authors:  Quyen N Do; James S Ratnakar; Zoltán Kovács; A Dean Sherry
Journal:  ChemMedChem       Date:  2014-05-13       Impact factor: 3.466

6.  Reactivity of redox sensitive paramagnetic nitroxyl contrast agents with reactive oxygen species.

Authors:  Minako Nyui; Ikuo Nakanishi; Kazunori Anzai; Toshihiko Ozawa; Ken-Ichiro Matsumoto
Journal:  J Clin Biochem Nutr       Date:  2018-09-15       Impact factor: 3.114

7.  Development of a novel molecular probe for the detection of liver mitochondrial redox metabolism.

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Journal:  Sci Rep       Date:  2020-10-05       Impact factor: 4.379

  7 in total

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