A novel proof-of-concept is reported to modify the water solubility and potential biological effects of a bis(diphenylphosphino)alkylamine (PNP) ligand and the corresponding metal complex, by introducing an amine group on the outer periphery of the pendant ligand arm. Thus, a tertiary butoxycarbonyl protected '-Boc-ethylenediamine-,-bis(diphenylphosphino) ('-Boc-PNP) ligand (1) was synthesized by reacting the protected ethylenediamine and chlorodiphenylphosphine in a 1 : 2 molar ratio. The corresponding -[Re(CO)('-Boc-PNP)Br] (1A) complex was then obtained by reacting '-Boc-PNP (1) with (EtN)-[Re(CO)Br] in equimolar amounts in DCM at 50 °C. De-protection of the '-Boc pendant amine group in 1A with TFA leads to -[Re(NH-PNP)(CO)Br]·CFCOO (1B) which is soluble in DO (>0.05 M). Treating 1B with saturated aqueous NaHCO yields -[Re(NH-PNP)(CO)Br]·MeOH (1C) in near quantitative yield. Although both 1A and 1C are not soluble in DO, addition of TFA easily generates 1B (P NMR), confirming the formation of the protonated amine. Isolation of -[Tc(CO)(-Boc-PNP)(Cl)] (1D) confirmed that the rhenium and technetium (Tc) can be easily interchanged in this process. Reported are hence the unique rhenium series of compounds 1A, 1B and 1C and the corresponding technetium complex 1D, unequivocally characterized by single crystal XRD, as well as IR and H NMR spectroscopy. Preliminary antimicrobial evaluation indicates that ligand 1 and its respective rhenium complexes (1A-1C) were not active against selected fungi () and bacteria (, , , and ). These types of ligands and complexes therefore present themselves as excellent radio models for further evaluation using Re, Re and Tc to potentially study the toxicity of appropriately designed complexes.
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http://dx.doi.org/10.1039/d1dt03234h | DOI Listing |
Chem Sci
January 2025
Department of Chemistry, University of York York YO10 5DD UK
C-N atropisomeric amides are important compounds in medicinal chemistry and agrochemistry. Atropselective methods for their synthesis are therefore important. In this study, a novel strategy to make C-N atropisomeric amides based on intramolecular acyl transfer a tethered Lewis basic pyridine or tertiary amine group is reported.
View Article and Find Full Text PDFBiochem Biophys Rep
March 2025
Department of Chemistry, University of Nebraska at Kearney, USA.
Human citrate synthase (hCS) was kinetically characterized through full progress curve kinetic modelling using kinetic simulation, global fitting of the direct AcCoA to CoA transition, and a coupled thiol probe reaction to better determine the kinetics with low substrate concentration. Our analysis provides one of the most rigorous kinetic analyses of any citrate synthase ruling out the need to invoke complex cooperative mechanisms to explain progress curve data. Furthermore, we collected and modeled stopped-flow pH-dependent kinetic data with CoA and popular thiol probes such as Ellman's reagent (DTNB) and 4,4'-Dithiodipyridine (DPS), providing the opportunity for detailed kinetic simulations using these thiol probes with CoA producing enzymes.
View Article and Find Full Text PDFHeliyon
January 2025
Food Toxicology and Contaminants Department, National Research Centre, Egypt.
is a severe danger to worldwide maize () cultivation, due to its extreme toxicity of aflatoxins produced by the fungi, and its ability to cause economic losses while also posing a health concern to humans and animals. Among the measures that may be considered for control, applying coatings based on natural ingredients appears to be the most promising. The current work examines the antagonistic ability of bioactive metabolites added to chitosan nanoparticles against on maize kernels.
View Article and Find Full Text PDFOrg Lett
January 2025
School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, China.
An electrochemically driven Ugi-azide reaction was established via C(sp)-H bond activation of tertiary amines to prepare α-aminomethyl tetrazoles within 2.5 h under mild conditions with remarkable tolerance of various functional groups. Besides, this electrochemical strategy not only obviated the needs of iodine, metal, and exogenous oxidant but possessed potential applicability of convenient large-scale synthesis.
View Article and Find Full Text PDFOrg Lett
January 2025
Anorganisch-Chemisches Institut, Universität Heidelberg, 69120 Heidelberg, Germany.
Fully -aminated octaazaperopyrenedioxide (OAPPDO) derivatives have been accessible via Buchwald-Hartwig amination of the -chlorinated starting material. They were isolated as semiquinoidal species with a bent polycyclic core and characterized as nonfluorescent charge-transfer dyes. The corresponding secondary amines were synthesized by reduction and displayed typical absorption and emission behavior for perylene derivatives.
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