1. Academic Validation
  2. Selective inhibition of HDAC6 by N-acylhydrazone derivative reduces the proliferation and induces senescence in carcinoma hepatocellular cells

Selective inhibition of HDAC6 by N-acylhydrazone derivative reduces the proliferation and induces senescence in carcinoma hepatocellular cells

  • Toxicol In Vitro. 2024 Aug:99:105884. doi: 10.1016/j.tiv.2024.105884.
Guilherme Álvaro Ferreira-Silva 1 Daniel Alencar Rodrigues 2 Carolina Girotto Pressete 1 Ester Siqueira Caixeta 1 Angel Mauricio Castro Gamero 3 Marta Miyazawa 4 João Adolfo Costa Hanemann 4 Carlos Alberto Manssour Fraga 2 Alexandre Ferro Aissa 5 Marisa Ionta 6
Affiliations

Affiliations

  • 1 Institute of Biomedical Sciences, Federal University of Alfenas, MG 37130-001, Brazil.
  • 2 Laboratory of Evaluation and Synthesis of Bioactive Substances (LASSBio), Institute of Biomedical Sciences, Federal University of Rio de Janeiro, CCS, Rio de Janeiro, RJ, Brazil.
  • 3 Human Genetics Laboratory, Institute of Natural Science, Federal University of Alfenas, zip-code 37130-001, Alfenas, MG, Brazil.
  • 4 School of Dentistry, Federal University of Alfenas, 37130-001 MG, Brazil.
  • 5 Institute of Biomedical Sciences, Federal University of Alfenas, MG 37130-001, Brazil. Electronic address: aissa@unifesp.br.
  • 6 Institute of Biomedical Sciences, Federal University of Alfenas, MG 37130-001, Brazil. Electronic address: marisa.ionta@unifal-mg.edu.br.
Abstract

Hepatocellular carcinoma (HCC) is a significant contributor to cancer-related deaths globally. Systemic therapy is the only treatment option for HCC at an advanced stage, with limited therapeutic response. In this study, we evaluated the antitumor potential of four N-acylhydrazone (NAH) derivatives, namely LASSBio-1909, 1911, 1935, and 1936, on HCC cell lines. We have previously demonstrated that the aforementioned NAH derivatives selectively inhibit histone deacetylase 6 (HDAC6) in lung Cancer cells, but their effects on HCC cells have not been explored. Thus, the present study aimed to evaluate the effects of NAH derivatives on the proliferative behavior of HCC cells. LASSBio-1911 was the most cytotoxic compound against HCC cells, however its effects were minimal on normal cells. Our results showed that LASSBio-1911 inhibited HDAC6 in HCC cells leading to cell cycle arrest and decreased cell proliferation. There was also an increase in the frequency of cells in mitosis onset, which was associated with disturbing mitotic spindle formation. These events were accompanied by elevated levels of CDKN1A mRNA, accumulation of CCNB1 protein, and sustained ERK1 phosphorylation. Furthermore, LASSBio-1911 induced DNA damage, resulting in senescence and/or Apoptosis. Our findings indicate that selective inhibition of HDAC6 may provide an effective therapeutic strategy for the treatment of advanced HCC, including tumor subtypes with integrated viral genome. Further, in vivo studies are required to validate the antitumor effect of LASSBio-1911 on liver Cancer.

Keywords

Apoptosis; Cancer; Cell cycle arrest; Epigenetic regulation; HDAC inhibitor.

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