{"id":1857,"date":"2016-01-18T21:07:12","date_gmt":"2016-01-18T12:07:12","guid":{"rendered":"http:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/?page_id=1857"},"modified":"2016-05-07T17:55:26","modified_gmt":"2016-05-07T08:55:26","slug":"1857-2","status":"publish","type":"page","link":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/1857-2\/","title":{"rendered":"2011"},"content":{"rendered":"<h2 id=\"el6\">2011 (\u8ad6\u6587)<\/h2>\n<ol>\n<li>Sano K, Temma T, Azuma T, Nakai R, Narazaki M, Kuge Y, Saji H.<br \/>\nA pre-targeting strategy for MR imaging of functional molecules using dendritic Gd-based contrast agents<br \/>\n<em>Mol. Imaging Biol.<\/em>\u00a0<strong>13<\/strong>(6) 1196-1203 (2011)<\/li>\n<li>Arimitsu K, Kajimoto T, Kimura H, Ono M, Ozeki M, Node M, Ohmomo Y, Saji H, Yamashita M.<br \/>\nAlternative synthesis of radioiodinated trisaccharide derivatives, 2-(4-\u00a0<sup>125<\/sup>iodophenyl)ethyl 2-acetamido-2-deoxy-\u03b2-d-glucopyranosyl- (1\u21922)-\u03b1-d-mannopyranosyl-( 1\u21926)-\u03b2-d-glucopyranoside, and preparation of its analogs having different lengths of alkyl chains instead of ethyl group: Acceptor substrates of n-acetylglucosaminyltransferase v for in vivo imaging<br \/>\n<em>Heterocycles<\/em>\u00a0<strong>83<\/strong>(12) 2779-2802 (2011)<\/li>\n<li>Harada N, Kimura H, Ono M, Mori D, Ohmomo Y, Kajimoto T, Kawashima H, Saji H.<br \/>\nEffective synthesis of\u00a0<sup>99m<\/sup>Tc tricarbonyl complexes by microwave heating<br \/>\n<em>J. Organomet. Chem.<\/em>\u00a0<strong>696<\/strong>(23) 3745-3749 (2011)<\/li>\n<li>Watanabe H, Ono M, Kimura H, Kagawa S, Nishii R, Fuchigami T, Haratake M, Nakayama M, Saji H.<br \/>\nA dual fluorinated and iodinated radiotracer for PET and SPECT imaging of \u03b2-amyloid plaques in the brain<br \/>\n<em>Bioorg. Med. Chem. Lett.<\/em>\u00a0<strong>21<\/strong>(21) 6519-6522 (2011)<\/li>\n<li>Ueda M, Kudo T, Mutou Y, Umeda I.O, Miyano A, Ogawa K, Ono M, Fujii H, Kizaka-Kondoh S, Hiraoka M, Saji H.<br \/>\nEvaluation of [<sup>125<\/sup>I]IPOS as a molecular imaging probe for hypoxia-inducible factor-1-active regions in a tumor: Comparison among single-photon emission computed tomography\/X-ray computed tomography imaging, autoradiography, and immunohistochemistry<br \/>\n<em>Cancer Sci.<\/em>\u00a0<strong>102<\/strong>(11) 2090-2096 (2011)<\/li>\n<li>Shimizu Y, Temma T, Sano K, Ono M, Saji H.<br \/>\nDevelopment of membrane type-1 matrix metalloproteinase-specific activatable fluorescent probe for malignant tumor detection<br \/>\n<em>Cancer Sci.<\/em>\u00a0<strong>102<\/strong>(10) 1897-1903 (2011)<\/li>\n<li>Makino A, Harada H, Okada T, Kimura H, Amano H, Saji H, Hiraoka M, Kimura S.<br \/>\nEffective encapsulation of a new cationic gadolinium chelate into apoferritin and its evaluation as an MRI contrast agent<br \/>\n<em>Nanomedicine: NBM<\/em>\u00a0<strong>7<\/strong>(5) 638-646 (2011)<\/li>\n<li>Kudo T, Ueda M, Konishi H, Kawashima H, Kuge Y, Mukai T, Miyano A, Tanaka S, Kizaka-Kondoh S, Hiraoka M, Saji H.<br \/>\nPET imaging of hypoxia-inducible factor-1-active tumor cells with pretargeted oxygen-dependent degradable streptavidin and a novel\u00a0<sup>18<\/sup>F-labeled biotin derivative<br \/>\n<em>Mol. Imaging Biol.<\/em>\u00a0<strong>13<\/strong>(5) 1003-1010 (2011)<\/li>\n<li>Hagimori M, Mizuyama N, Yokota K, Morinaga O, Yamaguchi Y, Saji H, Tominaga Y.<br \/>\nSynthesis of fluorescent pyrrolo[3,4-b]quinolizine derivatives and evaluation as a protein-labeling probe<br \/>\n<em>Heterocycles<\/em>\u00a0<strong>83<\/strong>(9) 1983-1988 (2011)<\/li>\n<li>Mukai T, Hagimori M, Arimitsu K, Katoh T, Ukon M, Kajimoto T, Kimura H, Magata Y, Miyoshi E, Taniguchi N, Node M, Saji H.<br \/>\nSynthesis and evaluation of a radioiodinated trisaccharide derivative as a synthetic substrate for a sensitive N-acetylglucosaminyltransferase v radioassay<br \/>\n<em>Bioorg. Med. Chem.<\/em>\u00a0<strong>19<\/strong>(14) 4312-4321 (2011)<\/li>\n<li>Cui M, Ono M, Kimura H, Liu B, Saji H.<br \/>\nNovel quinoxaline derivatives for in vivo imaging of \u03b2-amyloid plaques in the brain<br \/>\n<em>Bioorg. Med. Chem. Lett.<\/em>\u00a0<strong>21<\/strong>(14) 4193-4196 (2011)<\/li>\n<li>Cui M, Ono M, Kimura H, Liu B, Saji H.<br \/>\nSynthesis and evaluation of benzofuran-2-yl(phenyl)methanone derivatives as ligands for \u03b2-amyloid plaques<br \/>\n<em>Bioorg. Med. Chem.<\/em>\u00a0<strong>19<\/strong>(13) 4148-4153 (2011)<\/li>\n<li>Matsumura K, Ono M, Hayashi S, Kimura H, Okamoto Y, Ihara M, Takahashi R, Mori H, Saji H.<br \/>\nPhenyldiazenyl benzothiazole derivatives as probes for in vivo imaging of neurofibrillary tangles in Alzheimer\u2019s disease brains<br \/>\n<em>Med. Chem. Commun.<\/em>\u00a0<strong>2<\/strong>(7) 596-600 (2011)<\/li>\n<li>Hirata K, Kuge Y, Yokota C, Harada A, Kokame K, Inoue H, Kawashima H, Hanzawa H, Shono Y, Saji H, Minematsu K, Tamaki N.<br \/>\nGene and protein analysis of brain derived neurotrophic factor expression in relation to neurological recovery induced by an enriched environment in a rat stroke model<br \/>\n<em>Neurosci. Lett.<\/em>\u00a0<strong>495<\/strong>(3) 210-215 (2011)<\/li>\n<li>Ono M, Hayashi S, Matsumura K,\u00a0Kimura H, Okamoto Y, Ihara M, Takahashi R, Mori H, Saji H.<br \/>\nRhodanine and thiohydantoin derivatives for detecting tau pathology in Alzheimer\u2019s brains<br \/>\n<em>ACS Chem. Neurosci.<\/em>\u00a0<strong>2<\/strong>(5) 269-275 (2011)<\/li>\n<li>Masuda R, Oishi S, Ohno H, Kimura H, Saji H, Fujii N.<br \/>\nConcise site-specific synthesis of DTPA-peptide conjugates: Application to imaging probes for the chemokine receptor CXCR4<br \/>\n<em>Bioorg. Med. Chem.<\/em>\u00a0<strong>19<\/strong>(10) 3216-3220 (2011)<\/li>\n<li>Ono M, Saji H.<br \/>\nSPECT Imaging Agents for Detecting Cerebral beta-Amyloid Plaques.<br \/>\n<em>Int. J. Mol. Imaging<\/em>\u00a0<strong>2011\u00a0<\/strong>543267 (2011)\u00a0<em>Review.<\/em><\/li>\n<li>Ono M, Cheng Y, Kimura H, Cui M, Kagawa S, Nishii R, Saji H.<br \/>\nNovel\u00a0<sup>18<\/sup>F-labeled benzofuran derivatives with improved properties for positron emission tomography (PET) imaging of \u03b2-amyloid plaques in Alzheimer\u2019s brains<br \/>\n<em>J. Med. Chem.<\/em>\u00a0<strong>54<\/strong>(8) 2971-2979 (2011)<\/li>\n<li>Cui M, Ono M, Kimura H, Liu B, Saji H.<br \/>\nSynthesis and structure-affinity relationships of novel dibenzylideneacetone derivatives as probes for \u00df-Amyloid Plaques<br \/>\n<em>J. Med. Chem.<\/em>\u00a0<strong>54<\/strong>(7) 2225-2240 (2011)<\/li>\n<li>Cui M, Ono M, Kimura H, Kawashima H, Liu B.L, Saji H.<br \/>\nRadioiodinated benzimidazole derivatives as single photon emission computed tomography probes for imaging of \u03b2-amyloid plaques in Alzheimer\u2019s disease<br \/>\n<em>Nucl. Med. Biol.<\/em>\u00a0<strong>38<\/strong>(3) 313-320 (2011)<\/li>\n<li>Shimizu S, Atsumi R, Nakazawa T, Izumi T, Sudo K, Okazaki O, Saji H.<br \/>\nTiclopidine-induced hepatotoxicity in a GSH-depleted rat model<br \/>\n<em>Arch. Toxicol.<\/em>\u00a0<strong>85<\/strong>(4) 347-353 (2011)<\/li>\n<li>Shono Y, Yokota C, Kuge Y, Kido S, Harada A, Kokame K, Inoue H, Hotta M, Hirata K, Saji H, Tamaki N, Minematsu K.<br \/>\nGene expression associated with an enriched environment after transient focal ischemia<br \/>\n<em>Brain Res.<\/em>\u00a0<strong>1376<\/strong>\u00a060-65 (2011)<\/li>\n<li>Hagimori M, Mizuyama N, Yamaguchi Y, Saji H, Tominaga Y.<br \/>\nA novel small molecule fluorescent sensor for Zn<sup>2+<\/sup>\u00a0based on pyridine-pyridone scaffold<br \/>\n<em>Talanta<\/em>,\u00a0<strong>83<\/strong>(5) 1730-1735 (2011)<\/li>\n<li>Cui M, Ono M, Kimura H, Liu B.L., Saji H.<br \/>\nSynthesis and biological evaluation of indole-chalcone derivatives as \u03b2-amyloid imaging probe<br \/>\n<em>Bioorg. Med. Chem. Lett.<\/em>\u00a0<strong>21<\/strong>(3) 980-982 (2011)<\/li>\n<li>Ueda M, Iida Y, Yoneyama T, Kawai T, Ogawa M, Magata Y, Saji H.<br \/>\nIn vivo relationship between thalamic nicotinic acetylcholine receptor occupancy rates and antiallodynic effects in a rat model of neuropathic pain: Persistent agonist binding inhibits the expression of antiallodynic effects<br \/>\n<em>Synapse<\/em>,\u00a0<strong>65<\/strong>(1) 77-83 (2011)<\/li>\n<li>Ono M, Watanabe H, Watanabe R, Haratake M, Nakayama M, Saji H.<br \/>\nDiphenylpropynone derivatives as probes for imaging \u03b2-amyloid plaques in Alzheimer\u2019s brains<br \/>\n<em>Bioorg. Med. Chem. Lett.<\/em>\u00a0<strong>21<\/strong>(1) 117-120 (2011)<\/li>\n<\/ol>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>2011 (\u8ad6\u6587) Sano K, Temma T, Azuma T, Nakai R, Narazaki M, Kuge Y, Saji H. A pre-targeting strategy for MR imagi [&hellip;]<\/p>\n","protected":false},"author":14,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-1857","page","type-page","status-publish","hentry"],"acf":[],"_links":{"self":[{"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/pages\/1857","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/users\/14"}],"replies":[{"embeddable":true,"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/comments?post=1857"}],"version-history":[{"count":5,"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/pages\/1857\/revisions"}],"predecessor-version":[{"id":1909,"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/pages\/1857\/revisions\/1909"}],"wp:attachment":[{"href":"https:\/\/www.pharm.kyoto-u.ac.jp\/byotai\/wp-json\/wp\/v2\/media?parent=1857"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}