Distributed Drug Discovery: Advancing Chemical Education through Contextualized Combinatorial Solid-Phase Organic Laboratories

Author:

Scott William L.,Denton Ryan E.,Marrs Kathleen A.,Durrant Jacob D.1,Samaritoni J. Geno,Abraham Milata M.,Brown Stephen P.,Carnahan Jon M.,Fischer Lindsey G.,Glos Courtney E.,Sempsrott Peter J.,O’Donnell Martin J.

Affiliation:

1. Department of Chemistry and Biochemistry, University of California, San Diego, California 92093, United States

Funder

International Development Fund, Indiana University-Purdue University Indianapolis

Division of Undergraduate Education

NIH Office of the Director

National Institute of General Medical Sciences

Eli Lilly and Company

Publisher

American Chemical Society (ACS)

Subject

Education,General Chemistry

Reference39 articles.

1. Distributed Drug Discovery, Part 1: Linking Academia and Combinatorial Chemistry to Find Drug Leads for Developing World Diseases

2. Distributed Drug Discovery, Part 2: Global Rehearsal of Alkylating Agents for the Synthesis of Resin-Bound Unnatural Amino Acids and Virtual D3 Catalog Construction

3. Distributed Drug Discovery, Part 3: Using D3 Methodology to Synthesize Analogs of an Anti-Melanoma Compound

4. The Enantioselective Synthesis of α-Amino Acids by Phase-Transfer Catalysis with Achiral Schiff Base Esters

5. Scott, W. L.; Anderson, G. G.; Denton, R. E.; Harper, R. W.; Marrs, K. A.; Samaritoni, J. G.; O’Donnell, M. J.Distributed Drug Discovery (D3): Advancing Chemical Education through Contextualized Organic Laboratories. 246th ACS National Meeting; Indianapolis, IN, September 10, 2013, Invited Oral in “NSF Catalyzed Innovations in the Undergraduate Curriculum”, CHED 344.

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