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Dive into the research topics where Shankar Manyem is active.

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Featured researches published by Shankar Manyem.


Chemical Biology & Drug Design | 2008

Binding of Matrix Metalloproteinase Inhibitors to Extracellular Matrix: 3D-QSAR Analysis

Yufen Zhang; Viera Lukacova; Vladimir Bartus; Xiaoping Nie; Guorong Sun; Ethirajan Manivannan; Sandeep R. Ghorpade; Xiaomin Jin; Shankar Manyem; Mukund P. Sibi; Gregory R. Cook; Stefan Balaz

Binding to the extracellular matrix, one of the most abundant human protein complexes, significantly affects drug disposition. Specifically, the interactions with extracellular matrix determine the free concentrations of small molecules acting in tissues, including signaling peptides, inhibitors of tissue remodeling enzymes such as matrix metalloproteinases, and other drug candidates. The nature of extracellular matrix binding was elucidated for 63 matrix metalloproteinase inhibitors, for which the association constants to an extracellular matrix mimic were reported here. The data did not correlate with lipophilicity as a common determinant of structure‐nonspecific, orientation‐averaged binding. A hypothetical structure of the binding site of the solidified extracellular matrix surrogate was analyzed using the Comparative Molecular Field Analysis, which needed to be applied in our multi‐mode variant. This fact indicates that the compounds bind to extracellular matrix in multiple modes, which cannot be considered as completely orientation‐averaged and exhibit structural dependence. The novel comparative molecular field analysis models, exhibiting satisfactory descriptive and predictive abilities, are suitable for prediction of the extracellular matrix binding for the untested chemicals, which are within applicability domains. The results contribute to a better prediction of the pharmacokinetic parameters such as the distribution volume and the tissue‐blood partition coefficients, in addition to a more imminent benefit for the development of more effective matrix metalloproteinase inhibitors.


Tetrahedron | 2000

Enantioselective Conjugate Additions

Mukund P. Sibi; Shankar Manyem


Chemical Reviews | 2003

Enantioselective radical processes.

Mukund P. Sibi; Shankar Manyem; Jake R. Zimmerman


Journal of the American Chemical Society | 2006

Fluxional additives: a second generation control in enantioselective catalysis.

Mukund P. Sibi; Shankar Manyem; Hector Palencia


Organic Letters | 2002

Lanthanide Lewis acid-mediated enantioselective conjugate radical additions.

Mukund P. Sibi; Shankar Manyem


Journal of the American Chemical Society | 2003

A new class of modular chiral ligands with fluxional groups.

Mukund P. Sibi; Ruzhou Zhang; Shankar Manyem


ACS Combinatorial Science | 2007

Solution-Phase Parallel Synthesis of a Library of Δ2-Pyrazolines

Shankar Manyem; Mukund P. Sibi; Gerald H. Lushington; Benjamin Neuenswander; Frank J. Schoenen; Jeffrey Aubé


Tetrahedron | 2003

Enantioselective radical allylation reactions using chiral lanthanide Lewis acids

Mukund P. Sibi; Shankar Manyem; Rajesh Subramaniam


Archive | 2008

Solution-Phase Parallel Synthesis of a Library of Δ 2 -Pyrazolines

Shankar Manyem; Mukund P. Sibi; Gerald H. Lushington; Benjamin Neuenswander; Frank Schoenen; Jeffrey Aubé


Arkivoc | 2006

Cyclization of a carbon-centered radical derived from oxaziridine cleavage

Yoshinosuke Usuki; Xin Peng; Belgin Gülgeze; Shankar Manyem; Jeffrey Aubé

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Mukund P. Sibi

North Dakota State University

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Jeffrey Aubé

University of North Carolina at Chapel Hill

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Ethirajan Manivannan

North Dakota State University

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Frank Schoenen

California Institute of Technology

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Gregory R. Cook

North Dakota State University

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