The large scale industrial manufacture of the nasal decongestant pseudoephedrine is typically carried out by the reductive amination of l-phenylacetylcarbinol (l-PAC), which in turn is produced via the biotransformation of benzaldehyde using yeast. In recent years there has been increasing legislative control of the supply of pseudoephedrine due to it being diverted for the clandestine production of methylamphetamine and there is some evidence that a number of clandestine drug laboratory chemists have considered the application of the l-PAC process to manufacture their own pseudoephedrine. This work examined the use of a number of substituted benzaldehydes for the manufacture of the corresponding substituted l-PAC analogue followed by reductive amination to the corresponding substituted pseudoephedrine/ephedrine analogues. These substituted pseudoephedrine/ephedrine analogues were either reduced or oxidised to determine the feasibility of producing the corresponding methylamphetamine or methcathinone analogues. As a result, the l-PAC process was identified as a viable route for synthesis of substituted methylamphetamines and methcathinones.
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http://dx.doi.org/10.1016/j.forsciint.2013.11.017 | DOI Listing |
Curr Org Synth
January 2025
Department of Chemistry, Constituent Govt. College, (MJP. Rohilkhand University Bareilly) Hasanpur, (UP), 244241, India.
Introduction: Quinazoline holds significant importance in pharmaceutical chemistry, which is included in a range of drugs, clinical contenders, and bioactive compounds. N-contain-ing heterocyclic compounds of quinazoline have a wide and distinct range of biopharmaceutical activities.
Methods: A series of newly synthesized heterocyclic compounds, namely, N-(4-substituted ben-zylidene)-2-(2-aminothiazol-4-yl)-6-methylquinazolin-3(4H)-amines (3a'-3e') and N-(4-substi-tuted benzylidene)-2-(2-aminooxazol-4-yl)-6-methylquinazolin-3(4H)-amines (3a-3e), were synthesized starting from 6-methylquinazolin-3(4H)-amine and 4-substituted benzaldehyde and their antibacterial and antifungal properties were evaluated.
Sci Rep
January 2025
Department of Chemistry, Yasouj University, Yasouj, 75918-74831, Iran.
Herein, a novel amine-functionalized magnetic resorcinol-formaldehyde with a core-shell structure (FeO@RF/Pr-NH) is prepared through the chemical immobilization of (3-aminopropyl)trimethoxysilane over FeO@RF composite. Characterization through FT-IR, EDX, PXRD, and TGA confirmed successful surface modification while preserving the crystalline structure of FeO. The VSM analysis demonstrated excellent superparamagnetic properties, and SEM and TEM images revealed spherical particles for the designed nanocatalyst.
View Article and Find Full Text PDFMolecules
December 2024
Institut für Pharmazeutische und Medizinische Chemie, Universität Münster, Corrensstraße 48, D-48149 Münster, Germany.
The serine/threonine kinase CK2 (formerly known as casein kinase II) plays a crucial role in various CNS disorders and is highly expressed in various types of cancer. Therefore, inhibiting this key kinase could be promising for the treatment of these diseases. The CK2 holoenzyme is formed by the recruitment of two catalytically active CK2α and/or CK2α' subunits by a regulatory CK2β dimer.
View Article and Find Full Text PDFInorg Chem
January 2025
Department of Chemistry, University of Richmond, Richmond, Virginia 23173, United States.
Copper(I) complexes of isobutyl- () and isopropyl-substituted () proazaphosphatranes have been synthesized. Structural and computational studies of a series of monomeric complexes CuX (X = Cl, Br, I) and dimeric [CuCl] provide insight into the transannulation within and steric properties of the proazaphosphatrane ligand. These halide complexes are competent precatalysts in a model borylation reaction, and the silylamido complex CuN(TMS) catalyzes hydrosilylation of benzaldehyde under mild conditions.
View Article and Find Full Text PDFSpectrochim Acta A Mol Biomol Spectrosc
December 2024
Department of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu 620015, India. Electronic address:
R - C(S) - NH - N = CH - R [R = o-OCHCH & R = CHN (2-EBP), R = o-OCHCH & R = CHNO (2-EBM), R = p-OCHCH & R = CHN (4-EBP), and R = p-OCHCH & R = CHNO (4-EBM)] have been synthesized. The ligands have been verified via various spectroscopic methods such as IR, NMR, etc. Single-crystal X-ray diffraction methods were applied to identify the structure of 4-EBP.
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