[EN] CALMANGAFODIPIR, A NEW CHEMICAL ENTITY, AND OTHER MIXED METAL COMPLEXES, METHODS OF PREPARATION, COMPOSITIONS, AND METHODS OF TREATMENT [FR] CALMANGAFODIPIR, NOUVELLE ENTITÉ CHIMIQUE, ET AUTRES COMPLEXES MÉTALLIQUES MIXTES, PROCÉDÉS DE PRÉPARATION, COMPOSITIONS ET PROCÉDÉS DE TRAITEMENT
Palladium-Catalyzed Preparation of Vinylallenes from 2-Bromo-1,3,5-trienes via an Alkylidene-π-allylpalladium-Mediated Formal SN2‘ ‘ Pathway
摘要:
[GRAPHICS]A novel Pd-catalyzed reaction to prepare conjugated vinylallenes from 2-bromo-1,3,5-triene and a soft nucleophile via a formal S(N)2" pathway was developed. The reaction proceeds via alkylidene-d-allylpalladium and allenyl-d-allylpalladium intermediates, and a dynamic process involving the two palladium intermediates played important roles in determining the selectivity of the Pd-catalyzed reaction. The reaction was extended to an asymmetric counterpart, and an axially chiral vinylallene was obtained with up to 81% ee.
[EN] MANGANESE-BASED MAGNETIC RESONANCE CONTRAST AGENTS<br/>[FR] AGENTS DE CONTRASTE POUR RÉSONANCE MAGNÉTIQUE À BASE DE MANGANÈSE
申请人:GEN HOSPITAL CORP
公开号:WO2014107722A1
公开(公告)日:2014-07-10
Manganese coordination complexes with utility as magnetic resonance probes and as biological reductant sensors are disclosed. In one embodiment, ligands can stabilize both the Mn2+ and Mn3+ oxidation states. In the presence of a reductant such as glutathione, low relaxivity MnIII-HBET is rapidly converted to high relaxivity MnII-HBET with a 3-fold increase in relaxivity, and concomitant increase in magnetic resonance signal. In another embodiment, ligands were designed to chelate Mn(ll) in a thermodynamically stable and kinetically inert fashion while allowing for direct interaction of Mn(ll) with water. In yet another embodiment, high molecular weight multimers containing six Mn(ll) chelators were prepared. The high molecular weight results in slower tumbling of the molecules in solution and can strongly enhance the Mn(ll) relaxivity.
[EN] NOVEL MANGANESE COMPRISING NANOSTRUCTURES<br/>[FR] NOUVELLES NANOSTRUCTURES COMPORTANT DU MANGANÈSE
申请人:SPAGO IMAGING AB
公开号:WO2013041623A1
公开(公告)日:2013-03-28
Disclosed herein are nanostructures comprising a polymeric framework comprising at least five geminal bisphosphonate groups, wherein the geminal bisphosphonate groups independently of each other are incorporated as - R3R4C(P=O(OR1)(OR2))2, wherein R1 and R2 are independently selected from the group consisting of a negative charge, H, alkyl and aryl, and wherein at least one of R3 and R4 is a group connected to the polymeric framework with the proviso that when only one of R3 and R4 is such a connected group, the other of R3 and R4 is either a group being able to connect to the polymeric framework, or the residue of such a group, or selected from the group consisting of H, OH, OR5 and R5, wherein R5 is a lower alkyl. The polymeric framework may comprise manganese ions. Disclosed are also methods for producing such manganese containing nanostructures, compositions comprising such manganese containing nanostructures and use of such manganese con¬ taining nanostructures, i.a. as MRI contrasting agents.
Disclosed herein are nanostructures comprising manganese ions incorporated in a polymeric framework comprising at least five geminal bisphosphonate groups, wherein the geminal bisphosphonate groups independently of each other are incorporated as -R3R4C(P=O(OR2)(OR2))2, wherein R1 and R2 are independently selected from the group consisting of a negative charge, H, alkyl and aryl, and wherein at least one of R3 and R4 is a group connected to the polymeric framework with the proviso that when only one of R3 and R4 is such a connected group, the other of R3 and R4 is either a group being able to connect to the polymeric framework, or the residue of such a group, or selected from the group consisting of H, OH, OR5 and R5, wherein R5 is a lower alkyl. Disclosed are also methods for producing such nanostructures, compositions comprising such nanostructures and use of such nanostructures, i.a. as MRI contrasting agents.
METHODS AND COMPOUNDS FOR ENHANCING CONTRAST IN MAGNETIC RESONANCE IMAGING (MRI)
申请人:Brock University
公开号:US20160362434A1
公开(公告)日:2016-12-15
The present application relates to methods and compounds for enhancing contrast in magnetic resonance imaging. The methods comprise administering compounds of Formula I(a) or I(b) to a subject and obtaining a magnetic resonance image of the subject. The present application also relates to methods of preparing compounds of the Formula I(a) as well as intermediate compounds used in such a method of preparation.
Disclosed herein are nanostructures comprising a polymeric framework comprising at least five geminal bisphosphonate groups, wherein the geminal bisphosphonate groups independently of each other are incorporated as —R
3
R
4
C(P═O(OR
1
)(OR
2
))
2
, wherein R
1
and R
2
are independently selected from the group consisting of a negative charge, H, alkyl and aryl, and wherein at least one of R
3
and R
4
is a group connected to the polymeric framework with the proviso that when only one of R
3
and R
4
is such a connected group, the other of R
3
and R
4
is either a group being able to connect to the polymeric framework, or the residue of such a group, or selected from the group consisting of H, OH, OR
5
and R
5
, wherein R
5
is a lower alkyl. The polymeric framework may comprise manganese ions. Disclosed are also methods for producing such manganese containing nanostructures, compositions comprising such manganese containing nanostructures and use of such manganese containing nanostructures, i.a. as MRI contrasting agents.