Radiofluorinated N-Octanoyl Dopamine ([18F]F-NOD) as a Tool To Study Tissue Distribution and Elimination of NOD in Vitro and in Vivo
摘要:
To mitigate pretransplantation injury in organs of potential donors, N-octanoyl dopamine (NOD) treatment might be considered as it does not affect hemodynamic parameters in braindead (BD) donors. To better assess optimal NOD concentrations for donor treatment, we report on the fast and facile radiofluorination of the NOD-derivative [F-18]F-NOD [F-18]5 for in vivo assessment of NOD's elimination kinetics by means of PET imaging. [F-18]5 was synthesized in reproducibly high radiochemical yields and purity (>98%) as well as high specific activities (>20 GBq/mu mol). Stability tests showed no decomposition of [F-18]5 over a period of 120 min in rat plasma. In-vitro, low cell association was found for [F-18]5, indicating no active transport mechanism into cells. In vivo, [F-18]5 exhibited a fast blood clearance and a predominant hepatobiliary elimination. As these data suggest that also NOD might be cleared fast, further pharmacokinetic evaluation is warranted.
[EN] METAL NANOPARTICLE SURFACE LIGAND REPLACEMENT METHOD<br/>[FR] PROCÉDÉ DE REMPLACEMENT DE LIGAND DE SURFACE DE NANOPARTICULE MÉTALLIQUE
申请人:UNIV WIEN BODENKULTUR
公开号:WO2018091666A1
公开(公告)日:2018-05-24
The invention relates to a method of producing inorganic nanoparticles with a polar surface, a) providing an inorganic nanoparticle with a coordinated organic ligand to the nanoparticles surface, b) providing a replacement salt comprising a replacement ion and a counterion, c) treating the inorganic nanoparticle with the coordinated organic ligand with the replacement salt in the presence of a chelating agent that complexes the counterion, thereby increasing the replacements ion's reactivity and replacing the organic ligand on the nanoparticle surface by the replacement ion which results in an inorganic nanoparticle with a polar surface; and a kit.
Multifunctional microparticles with uniform magnetic coatings and tunable surface chemistry
作者:Tobias P. Niebel、Florian J. Heiligtag、Jessica Kind、Michele Zanini、Alessandro Lauria、Markus Niederberger、André R. Studart
DOI:10.1039/c4ra09698c
日期:——
Microplatelets and fibers that can be manipulated using external magnetic fields find potential applications as miniaturized probes, micromirrors in optical switches, remotely actuated micromixers and tunable reinforcements in composite materials. Controlling the surface chemistry of such microparticles is often crucial to enable full exploitation of their mechanical, optical and sensorial functions. Here, we report a simple and versatile procedure to directly magnetize and chemically modify the surface of inorganic microplatelets and polymer fibers of inherently non-magnetic compositions. As opposed to other magnetization approaches, the proposed non-aqueous sol–gel route enables the formation of a dense and homogeneous coating of superparamagnetic iron oxide nanoparticles (SPIONs) on the surface of the microparticles. Such coating provides a suitable platform for the direct chemical functionalization of the microparticles using catechol-based ligands displaying high affinity towards iron oxide surfaces. By adsorbing for example nitrodopamine palmitate (ND-PA) on the surface of hydrophilic magnetite-coated alumina platelets (Fe3O4@Al2O3) we can render them sufficiently surface active to generate magnetically responsive Pickering emulsions. We also show that microplatelets and fibers coated with a uniform iron oxide layer can be easily manipulated using low magnetic fields despite their intrinsic non-magnetic nature. These examples illustrate the potential of the proposed approach in generating functional, magnetically responsive microprobes and building blocks for several emerging applications.
Synthesis and Characterization of Bifunctional Compounds: Templates for Metal Crown Ether Assemblies
作者:D. Luke Nelsen、Peter S. White、Michel R. Gagné
DOI:10.1021/om050639h
日期:2005.10.1
(dppe)Pd-salicylimine cations and (dppe)Pd-catecholate complexes with dangling primary ammonium ions are excellent donors for 18-crown-6 (18-c-6) and benzo-18-c-6 receptors. The self-assembly of these host−guest complexes from their constituent components is efficient, and two X-ray-generated structures showing atom connectivity are reported. A discussion of N-imine isomers of the Schiff base-derived
Catechol reactivity: Synthesis of dopamine derivatives substituted at the 6-position
作者:Jennifer C. Rote、Sarah N. Malkowski、C. Skyler Cochrane、Gabrielle E. Bailey、Noah S. Brown、Mauricio Cafiero、Larryn W. Peterson
DOI:10.1080/00397911.2016.1269350
日期:2017.3.4
catechol core can modulate its stereoelectronic properties, the acidity of its phenolic hydroxyl groups, and the overall hydrophobicity of the molecule. Herein, we report the synthesis of a series of four novel dopamine analogues substituted at the 6-position of catechol core. The 1H NMR chemical shift of the aromatic proton meta to the substituent correlated strongly with the Hammett σm constant, confirming
Nitration of catecholamines with nitrogen oxides in mild conditions: a hypothesis for the reactivity of NO in physiological systems
作者:Marie-Laure de la Bretèche、Claudine Servy、Maryse Lenfant、Claire Ducrocq
DOI:10.1016/0040-4039(94)85368-1
日期:1994.9
Dopamine, norepinephrine and epinephrine react at room temperature, in acetate buffer (36) with sodium nitrite or in non-deaerated phosphate buffer (pH 7.4) with NO. The corresponding 6-nitro derivatives are formed.