Toxicogenetic profile of the monoterpene alpha-terpineol on normal and tumor eukaryotic cells

松油醇 微核试验 盐卤虫 化学 彗星试验 细胞毒性T细胞 溶血 遗传毒性 细胞毒性 微核 DNA损伤 生物化学 生物 传统医学 药理学 毒性 体外 色谱法 DNA 医学 免疫学 有机化学
作者
Helber Alves Negreiros,Sabryna Brena Cunha Fontele,Felipe Alves Batista,Marlene Gomes de Farias,Felipe Cavalcanti Carneiro da Silva,Maria Luísa Lima Barreto do Nascimento,Kariely Gonçalves de Moura,Layde de Sousa Corrêa,Ana Rafaela Silva Pereira,Luana de Oliveira Lopes,Paulo Michel Pinheiro Ferreira,Anderson Nogueira Mendes,Juan Carlos Ramos Gonçalves,Ana Amélia de Carvalho Melo‐Cavalcante,João Marcelo de Castro e Sousa
出处
期刊:Drug and Chemical Toxicology [Informa]
卷期号:: 1-9
标识
DOI:10.1080/01480545.2023.2188440
摘要

Alpha-terpineol is a monoterpene alcohol found in essential oils from medicinal plants with some well-known pharmacological activities and widely used in cosmetics. However, the toxicological effects and additional pharmacological activities need to be clarified. Thus, the study evaluated the toxic, cytotoxic, genotoxic, hemolytic, and oxidative potential of alpha-terpineol in non-clinical bioassays. Different concentrations of alpha-terpineol were used in bioassays, including MTT (50, 100, 200, and 400 μg/mL), Artemia salina (6.25-400 μg/mL), Allium cepa (10, 50, and 100 μg/mL), comet assay (100, 200, and 500 μg/mL), cytokinesis-block micronucleus (100, 250, and 500 μg/mL), confocal microscopy for apoptosis quantification (100 and 500 μg/mL), hemolysis and Saccharomyces cerevisiae central disk test (10, 35, and 75 μg/mL). For the MTT test, alpha-terpineol was more cytotoxic on melanoma murine B16-F10 cells rather than macrophages. For A. salina test, alpha-terpineol showed LC50 of 68.29 and 76.36 μg/mL for 24 h and 48 h of exposure time, respectively. Meanwhile, alpha-terpineol was also cytotoxic to meristematic cells, which revealed inhibition of cellular division and mutagenic action by formation of bridges and delayed anaphases. The compound increased damage index and frequency of damage corroborated by the presence of micronuclei, bridges and nuclear buds at 500 μg/mL, but it caused neither hemolysis, oxidative damage on the S. cerevisiae nor cell death in normal fibroblasts. The findings indicate alpha-terpineol has cytotoxic potential by cytogenetic and molecular mechanisms associated with apoptosis and probable target effects against melanoma cells.
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