Jean-Luc G. MONTCHAMP
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FUNDING: we gratefully acknowledge the following for the financial support of our research: The Robert A. Welch Foundation |
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Our group's research interests are in the areas of organophosphorus chemistry, and bioorganic/medicinal chemistry. The core of our program in chemical biology focuses on the mechanism-based design, synthesis and evaluation of biologically active molecules such as enzyme inhibitors, and the development of novel antisense oligonucleotides with emphasis on the application of automated synthesis and combinatorial techniques whenever possible. Unnatural compounds are synthesized to probe various biological processes. Applications of this research range from the elucidation of enzyme mechanisms to the preparation of molecules with potential medicinal use (anticancer, antiparasite, immuno suppressant, antisense, GABA analogues). One such medicinally oriented goal is the preparation and evaluation of new hydrolytically stable antisense oligonucleotides for sequence specific complexation to RNA and DNA targets. Finally, current investigations aiming at the modulation of GABA receptors with phosphinic analogues are relevant to the treatment of various central nervous system (CNS) disorders. A collaborative project with Professor Coffer has also been initiated to prepare the recognition component of biocompatible calcified nanoporous silicon sensor arrays. Another collaborative project with Professor Anne F. Richards deals with the synthesis of phosphorus-containing building blocks for the preparation of metal-organic frameworks (MOFs). Our
second research interest concerns organophosphorus chemistry and is driven
by two main objectives: firstly, the development of P-chiral ligands to
be ultimately used in catalytic asymmetric transformations, including
transition metal-catalyzed reactions, and secondly, the building of a
methodology based on phosphorus compounds for organic synthesis as well
as for the preparation of compounds possessing potential biological activity. PUBLICATIONS Recent Developments in the Addition of Phosphinylidene-Containing Compounds to Unactivated Unsaturated Hydrocarbons: Phosphorus-Carbon Bond-Formation via Hydrophosphinylation and Related Processes Coudray, L.; Montchamp, J.-L. Eur. J. Org. Chem. 2008, XX, accepted. Synthesis of Homo and Hetero Metal-Phosphonate Frameworks from Bi-Functional Aminomethylphosphonic acid Samanamu, C. R.; Zamora, E. N.; Montchamp, J.-L.; Richards, A. F. J. Solid State Chem. 2008, XX, ASAP Allylic Phosphinates via Palladium-Catalyzed Allylation of H-Phosphinic Acids with Allylic Alcohols Coudray, L.; Bravo-Altamirano, K.; Montchamp, J.-L.. Org. Lett. 2008, 10, 1123Mild Synthesis of Organophosphorus Compounds: Reaction of Phosphorus-Containing Carbenoids with Organoboranes Antczak, M. I.; Montchamp, J.-L. . Org. Lett. 2008, 10, 977. Palladium-Catalyzed Reactions of Hypophosphorous Compounds with Allenes, Dienes and Allylic Electrophiles: Methodology for the Synthesis of Allylic-H-Phosphinates Bravo-Altamirano, K.; Abrunhosa-Thomas, I.; Montchamp, J.-L. J. Org. Chem. 2008, 73, 2292 Convenient Synthesis of Aluminum and Gallium Phosphonate Cages Samanamu, C. R.; Olmstead, M. M.; Montchamp, J.-L.; Richards, A. F. Inorg. Chem. 2008, 47, 3879 Palladium-Catalyzed Dehydrative Allylation of Hypophosphorous Acid with Allylic Alcohols. Preparation of Cinnamyl-H-Phosphinic Acid Bravo-Altamirano, K.; Montchamp, J.-L. Org. Synth. 2008, 85, 96 A Mild Synthetic Route to Zinc, Cadmium, and Silver Polymers with 2-Pyridyl Phosphonic Acid: Synthesis and Analysis Fry, J. A.; Samanamu, C. R.; Montchamp, J.-L.; Richards, A. F. Eur. J. Inorg. Chem. 2008, 463 New Access to H-Phosphonates via Metal-Catalyzed Phosphorus-Oxygen Bond Formation Coudray, L.; Abrunhosa-Thomas, I.; Montchamp, J.-L. Tetrahedron Lett. 2007, 48, 6505 A Novel Approach to Phosphonic Acids from Hypophosphorous acid Bravo-Altamirano, K., Montchamp, J.-L. Tetrahedron Lett. 2007, 48, 5755. Palladium-Catalyzed Alkylation of H-Phosphinate Esters under Basic Conditions Abrunhosa-Thomas, I.; Sellers, C. E., Montchamp, J.-L. J. Org. Chem. 2007, 72, 2851. AIBN-initiated Radical Reactions of Ethyl Phosphinate Antczak, M. I.; Montchamp, J.-L. Synthesis 2006, 3080. Palladium-Catalyzed Dehydrative Allylation of Hypophosphorous Acid with Allylic Alcohols Bravo-Altamirano, K.; Montchamp, J.-L. Org. Lett. 2006, 8, 4169. Advances in the Synthesis of H-Phosphinic Acids and Esters Montchamp, J.-L. Specialty Chemicals Magazine 2006, 26, 44. "Direct
Monoalkylation of Alkyl Phosphinates to Access H-Phosphinic Acid Esters Radical
Reaction of Sodium Hypophosphite with Terminal Alkynes: Synthesis of 1,1-bis-H-Phosphinates Palladium-Catalyzed
Phosphorus-Carbon Bond Formation: Cross-Coupling Reactions of Alkyl Phosphinates
with Aryl, Heteroaryl, Alkenyl, Benzylic, and Allylic Halides and Triflates
"Recent
Advances in Phosphorus-Carbon Bond Formation: Synthesis of H-Phosphinic
Acid Derivatives from Hypophosphorous Compounds", Montchamp, J.-L.
J. Organomet. Chem., 2005, 690, 2388
"Environmentally Benign Synthesis of H-Phosphinic Acids Using a Water-Tolerant,
Recyclable Polymer-Supported Catalyst", Deprèle, S.; Montchamp,
J.-L.
Org. Lett. 2004, 6, 3805.
"Direct Synthesis of H-Aryl and H-Heteroarylphosphinic Esters via
Palladium-Catalyzed Cross-Coupling of Alkylphosphinates", Huang,
Z.; Bravo-Altamirano, K.; Montchamp, J.-L. Comptes Rendus Chimie 2004, 7/8-9, 763.
"Routes to Calcified Porous Silicon: Implications for Drug Delivery
and Biosensing", Coffer, J. L.; Montchamp, J.-L.; Aimone, J. B.;
Weis, R. P. Physica Status Solidi (a) 2003, 197, 336.
"Calcified Nanostructured Silicon Wafer Surfaces for Biosensing:
Effects of Surface Modification on Bioactivity", Weis, R. P.; Montchamp,
J.-L.; Coffer, J. L.; Desai, T. A.; Atthia, D. G. Disease Markers
2002, 18, 159.
"Palladium-Catalyzed Hydrophosphinylation of Alkenes and Alkynes",
Deprèle, S.; Montchamp, J.-L.
J. Am. Chem. Soc. 2002, 124, 9386.
"Palladium-Catalyzed Cross-Coupling Reaction of Anilinium Hypophosphite
With Alkenyl Bromides and Triflates: Application to the Synthesis of GABA
Analogs", Dumond, Y. R.; Montchamp, J.-L.
J. Organomet. Chem. 2002, 653, 252.
"A Novel and Convenient Preparation of Hypophosphite Esters",
Deprèle, S.; Montchamp, J.-L.
J. Organomet. Chem. 2002, 643-644, 154.
"Triethylborane-Initiated Room Temperature Radical Addition of Hypophosphites
to Olefins: Synthesis of Monosubstituted Phosphinic Acids and Esters",
Deprèle, S.; Montchamp, J.-L. J.
Org. Chem. 2001, 66, 6745.
"Synthesis of Monosubstituted Phosphinic Acids: Palladium-Catalyzed
Cross-Coupling Reactions of Anilinium Hypophosphite", Montchamp,
J.-L.; Dumond, Y. R.
J. Am. Chem. Soc. 2001, 123, 510. "Orthosilicate-Mediated Esterification of Monosubstituted Phosphinic Acids", Dumond, Y. R.; Baker, R. L.; Montchamp, J.-L. Org. Lett. 2000, 2, 3341.
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