Publications by authors named "Keiji Uehara"

Article Synopsis
  • * Researchers successfully created chemically modified mannose-siRNA (CMM-siRNA) that selectively binds to CD206, allowing targeted delivery to macrophages and dendritic cells.
  • * The CMM-siRNA demonstrated effective gene silencing and protein reduction in these cells, suggesting significant potential for advancing siRNA-based therapies and targeting other cell types in the future.
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Article Synopsis
  • Researchers are exploring new ways to deliver oligonucleotides like siRNA and ASOs specifically to CD22-expressing B cells, which could enhance their effectiveness as medicines.* -
  • Current methods for targeting these cells include antibodies and nanoparticles, but this is the first report of successfully delivering siRNA specifically to CD22-targeted cells.* -
  • The study demonstrates that using a modified glycan ligand attached to siRNA can improve gene expression knockdown in B cells, potentially leading to new treatments for conditions like B cell lymphomas.*
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The preparation of large rylenes often needs the use of solubilizing groups along the rylene backbone, and all the substituents of the terrylenes and quaterrylenes were introduced before creating the rylene skeleton. In this work, we successfully synthesized 2,5,10,13-tetrakis(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)terrylene () by using an iridium-catalyzed direct borylation of C-H bonds in terrylene in 56% yield. The product is soluble in common organic solvents and could be purified without column chromatography.

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Background: Parkinson's disease (PD) patients often suffer from cardiac sympathetic denervation, a hallmark of which is orthostatic hypotension. Denervation supersensitivity to sympathomimetic drugs is also seen in such patients, and this phenomenon is important and can be sometimes dangerous.

Case Presentation: A 65-year-old male underwent gastrojejunostomy.

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Hydration of tetrolic acid ethyl ester as an alkyne-carboxylic acid ester catalyzed by an Ir-aqua complex [Ir(III)Cp*(bpy)(OH2)]2+ (1, Cp* = eta5-C5Me5, bpy = 2,2'-bipyridine) in water provides ethyl acetoacetate as a beta-keto acid ester. We report the successful isolation of both an Ir-enol tautomer intermediate [IrIIICp*(bpy){CH3C(OH)=CC(O)OC2H5}]+ (2) and an Ir-keto tautomer intermediate [Ir(III)Cp*(bpy){CH3C(O)CHC(O)OC2H5}]+ (3) in the catalytic hydration by optimizing the conditions of the isolation, such as pH of the solution, reaction time, and selection of counteranions. The structures of the enol and keto complexes with characteristic Ir-(sp2carbon) bond and Ir-(sp3 carbon) bond, respectively, were unequivocally determined by X-ray analysis, IR, electrospray ionization mass spectrometry (ESI-MS), and NMR studies including 1H, 13C, distortionless enhancement by polarization transfer (DEPT) and correlation spectroscopy (COSY) experiments.

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A 42-year-old woman with craniofacial fibrous dysplasia underwent osteoplasty of maxillary and mandibular bone. Preoperative CT images showed osteosclerosis and ground glass appearance of the right side of the skull including the orbit, temporal bone, paranasal sinus, and maxillary and mandibular bones, as well as hypertrophy of the nasal septum. Inhalation anesthesia was induced and 8.

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Models of the active site in [NiFe]hydrogenase enzymes have proven challenging to prepare. We isolated a paramagnetic dinuclear nickel-ruthenium complex with a bridging hydrido ligand from the heterolytic cleavage of H2 by a dinuclear NiRu aqua complex in water under ambient conditions (20 degrees C and 1 atmosphere pressure). The structure of the hexacoordinate Ni(mu-H)Ru complex was unequivocally determined by neutron diffraction analysis, and it comes closest to an effective analog for the core structure of the proposed active form of the enzyme.

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Chemoselective synthesis and isolation of alkynyl [Cp*Ir(III)(bpy)CCPh]+ (2, Cp* = eta5-C5Me5, bpy = 2,2'-bipyridine), acyl [Cp*Ir(III)(bpy)C(O)CH2Ph]+ (3), and ketonyl [Cp*Ir(III)(bpy)CH2C(O)Ph]+ (4) intermediates in anti-Markovnikov and Markovnikov hydration of phenylacetylene in water have been achieved by changing the pH of the solution of a water-soluble aqua complex [Cp*Ir(III)(bpy)(H2O)]2+ (1) used as the same starting complex. The alkynyl complex [2]2.SO4 was synthesized at pH 8 in the reaction of 1.

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An acid-stable hydride complex [Cp*IrIII(bpy)H]+ {1, Cp* = eta5-C5Me5, bpy = 2,2'-bipyridine} serves as the active catalyst for the highly chemoselective synthesis of alpha-amino acids by reductive amination of alpha-keto acids with aqueous NH3 and HCOO- in water at pH 5-8. pH-dependent catalytic 15N- and 2H-double-labeling has also been accomplished by using 15NH3 and DCOONa, which are ideal amine and hydride ion sources, respectively.

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