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Design and Synthesis of N‐Acylated Aza‐Goniothalamin Derivatives and Evaluation of Their in vitro and in vivo Antitumor Activity
Authors:Dr. Rosimeire Coura Barcelos  Dr. Julio Cezar Pastre  Dr. Débora Barbosa Vendramini‐Costa  Vanessa Caixeta  Giovanna Barbarini Longato  Paula Araújo Monteiro  Prof. João Ernesto de Carvalho  Prof. Ronaldo Aloise Pilli
Affiliation:1. Departamento de Química Organica, Instituto de Química, Universidade Estadual de Campinas, CP 6154, 13083‐970, Campinas, SP (Brazil);2. Divis?o de Farmacologia e Toxicologia, Centro Pluridisciplinar de Pesquisas Químicas, Biológicas e Agrícolas (CPQBA), UNICAMP, CP 6171, 13083‐970, Campinas, SP (Brazil);3. Programa de Pós‐gradua??o em Biologia Celular e Estrutural, Instituto de Biologia, UNICAMP, CP 6109, 13083‐970, Campinas, SP (Brazil)
Abstract:Herein we describe the synthesis of a focused library of compounds based on the structure of goniothalamin ( 1 ) and the evaluation of the potential antitumor activity of the compounds. N‐Acylation of aza‐goniothalamin ( 2 ) restored the in vitro antiproliferative activity of this family of compounds. 1‐(E)‐But‐2‐enoyl‐6‐styryl‐5,6‐dihydropyridin‐2(1H)‐one ( 18 ) displayed enhanced antiproliferative activity. Both goniothalamin ( 1 ) and derivative 18 led to reactive oxygen species generation in PC‐3 cells, which was probably a signal for caspase‐dependent apoptosis. Treatment with derivative 18 promoted Annexin V/7‐aminoactinomycin D double staining, which indicated apoptosis, and also led to G2/M cell‐cycle arrest. In vivo studies in Ehrlich ascitic and solid tumor models confirmed the antitumor activity of goniothalamin ( 1 ), without signs of toxicity. However, derivative 18 exhibited an unexpectedly lower in vivo antitumor activity, despite the treatments being administered at the same site of inoculation. Contrary to its in vitro profile, aza‐goniothalamin ( 2 ) inhibited Ehrlich tumor growth, both on the ascitic and solid forms. Our findings highlight the importance of in vivo studies in the search for new candidates for cancer treatment.
Keywords:acylation  antitumor agents  aza compounds  cytotoxicity  goniothalamin
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