Comprehensive Study of Sansalvamide A Derivatives and their Structure–Activity Relationships against Drug-Resistant Colon Cancer Cell Lines

Journal of Medicinal Chemistry
2008.0

Abstract

We report an extensive structure-activity relationship (SAR) of 62 compounds active against two drug-resistant colon cancer cell lines. Our comprehensive evaluation of two generations of compounds utilizes SAR, NMR, and molecular modeling to evaluate the key 3D features of potent compounds. Of the seven most potent compounds reported here, five are second-generation, emphasizing our ability to incorporate potent features found in the first generation and utilize their structures to design potency into the second generation. These analogs share no structural homology to current colon cancer drugs, are cytotoxic at levels on par with existing drugs treating other cancers, and demonstrate selectivity for drug-resistant colon cancer cell lines over noncancerous cell lines. Thus, we have established sansalvamide A as an excellent lead for treating multiple drug-resistant colon cancers.

Knowledge Graph

Similar Paper

Comprehensive Study of Sansalvamide A Derivatives and their Structure–Activity Relationships against Drug-Resistant Colon Cancer Cell Lines
Journal of Medicinal Chemistry 2008.0
Scaffold Targeting Drug-Resistant Colon Cancers
Journal of Medicinal Chemistry 2007.0
A comprehensive study of Sansalvamide A derivatives: The structure–activity relationships of 78 derivatives in two pancreatic cancer cell lines
Bioorganic & Medicinal Chemistry 2009.0
Identification of Sansalvamide a analog potent against pancreatic cancer cell lines
Bioorganic & Medicinal Chemistry Letters 2007.0
Evaluation of Di-Sansalvamide A Derivatives: Synthesis, Structure−Activity Relationship, and Mechanism of Action
Journal of Medicinal Chemistry 2009.0
Effect of the 4′-substituted phenylalanine moiety of sansalvamide A peptide on antitumor activity
MedChemComm 2014.0
Design, structure-activity relationship study and biological evaluation of the thieno[3,2-c]isoquinoline scaffold as a potential anti-cancer agent
Bioorganic & Medicinal Chemistry Letters 2021.0
Sulfonamide derivatives as potential anti-cancer agents and their SARs elucidation
European Journal of Medicinal Chemistry 2021.0
Structure–Activity Relationship (SAR) Study of Ethyl 2-Amino-6-(3,5-dimethoxyphenyl)-4-(2-ethoxy-2-oxoethyl)-4H-chromene-3-carboxylate (CXL017) and the Potential of the Lead against Multidrug Resistance in Cancer Treatment
Journal of Medicinal Chemistry 2012.0
Design, synthesis, and quantitative structure–activity relationship of cytotoxic γ-carboline derivatives
Bioorganic & Medicinal Chemistry 2009.0