Newly Synthesized Radical-Containing Nanoparticles Enhance Neuroprotection After Cerebral Ischemia-Reperfusion Injury
暂无分享,去创建一个
Akira Matsumura | Toru Yoshitomi | Yukio Nagasaki | K. Toh | Y. Nagasaki | A. Matsumura | Toru Yoshitomi | Aiki Marushima | H. Tsurushima | A. Marushima | Kensuke Suzuki | Aki Hirayama | Kazuko Toh | Kensuke Suzuki | Hideo Tsurushima | A. Hirayama
[1] James B. Mitchell,et al. The chemistry and biology of nitroxide compounds. , 2007, Free radical biology & medicine.
[2] H. Matsui,et al. pH-sensitive radical-containing-nanoparticle (RNP) for the L-band-EPR imaging of low pH circumstances. , 2009, Bioconjugate chemistry.
[3] James B. Mitchell,et al. Neuroprotection by the stable nitroxide Tempol during reperfusion in a rat model of transient focal ischemia. , 2000, Journal of neurosurgery.
[4] Koroshetz Wj,et al. Tissue plasminogen activator for acute ischemic stroke. , 1996, The New England journal of medicine.
[5] S. Hahn,et al. Hemodynamic effect of the nitroxide superoxide dismutase mimics. , 1999, Free radical biology & medicine.
[6] C. Segebarth,et al. Blood–brain barrier permeability to manganese and to Gd‐DOTA in a rat model of transient cerebral ischaemia , 2008, NMR in biomedicine.
[7] H. Ovadia,et al. The Nitroxide Antioxidant Tempol Is Cerebroprotective against Focal Cerebral Ischemia in Spontaneously Hypertensive Rats , 2002, Experimental Neurology.
[8] J. Zweier,et al. Polynitroxyl-albumin (PNA) enhances myocardial infarction therapeutic effect of tempol in rat hearts subjected to regional ischemia-reperfusion. , 2002, Free radical biology & medicine.
[9] S. Kuroda,et al. Neuroprotective effects of the free radical scavenger Edaravone (MCI-186) in mice permanent focal brain ischemia , 2004, Brain Research.
[10] D. Hermann,et al. Tissue plasminogen activator-induced reperfusion injury after stroke revisited. , 2007, Circulation.
[11] R. Busto,et al. Quantitative evaluation of blood-brain barrier permeability following middle cerebral artery occlusion in rats , 1996, Brain Research.
[12] Scott Hamilton,et al. Association of outcome with early stroke treatment: pooled analysis of ATLANTIS, ECASS, and NINDS rt-PA stroke trials , 2004, The Lancet.
[13] L. Toledo-Pereyra,et al. Reactive oxygen species and molecular biology of ischemia/reperfusion. , 2003, Annals of transplantation.
[14] K. Homma,et al. Stable nitroxide Tempol ameliorates brain injury by inhibiting lipid peroxidation in a rat model of transient focal cerebral ischemia , 2003, Brain Research.
[15] V. Labhasetwar,et al. Nanoparticle‐mediated delivery of superoxide dismutase to the brain: an effective strategy to reduce ischemia‐reperfusion injury , 2009, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[16] B. Siesjö,et al. N-tert-butyl-alpha-phenylnitrone improves recovery of brain energy state in rats following transient focal ischemia. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[17] E. Mazzon,et al. Effects of tempol, a membrane-permeable radical scavenger, in a gerbil model of brain injury , 2000, Brain Research.
[18] L. Hopwood,et al. Cytotoxicity of commonly used nitroxide radical spin probes. , 1987, Life sciences.
[19] J. Zweier,et al. Electron paramagnetic resonance imaging of rat heart with nitroxide and polynitroxyl-albumin. , 1996, Biochemistry.
[20] Y. Nagasaki,et al. Design of core--shell-type nanoparticles carrying stable radicals in the core. , 2009, Biomacromolecules.
[21] S. Hahn,et al. In vivo radioprotection and effects on blood pressure of the stable free radical nitroxides. , 1998, International journal of radiation oncology, biology, physics.
[22] M. Tada,et al. Importance of renal mitochondria in the reduction of TEMPOL, a nitroxide radical , 2003, Molecular and Cellular Biochemistry.
[23] Joseph P. Broderick,et al. Tissue plasminogen activator for acute ischemic stroke. The National Institute of Neurological Disorders and Stroke rt-PA Stroke Study Group. , 1995 .