Abstract
This paper describes the synthetic studies conducted on a marine natural product, cyclodepsipeptide apratoxin A. Total synthesis of the oxazoline analogue of apratoxin A was achieved. The conversion of oxazoline to thioamide, as well as thioamide formation from a serine-derived compound, were both unsuccessful. However, thiazoline formation from a cysteine-derived compound led to the total synthesis of apratoxin A. An in vivo study on synthetic apratoxin A revealed that it has potent antitumor activity, but with significant toxicity. Solid-phase synthesis of apratoxin A was accomplished using a preformed thiazoline derivative as a coupling unit. This method was used to synthesize several azido-containing analogues as precursors of molecular probes, and these analogues exhibited potent biological activity.
Author supplied keywords
Cite
CITATION STYLE
Doi, T. (2014, August 1). Synthesis of the biologically active natural product cyclodepsipeptides apratoxin A and its analogues. Chemical and Pharmaceutical Bulletin. Pharmaceutical Society of Japan. https://doi.org/10.1248/cpb.c14-00268
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.