dc.creator | Jara Sandoval, José Antonio | |
dc.creator | Rojas Rivera, Diego | |
dc.creator | Castro Castillo, Vicente | |
dc.creator | Fuentes Retamal, Sebastián | |
dc.creator | Sandoval Acuña, Cristian | |
dc.creator | Parra, Eduardo | |
dc.creator | Pavani, Mario | |
dc.creator | Maya Arango, Juan Diego | |
dc.creator | Ferreira Parker, Jorge | |
dc.creator | Catalán Díaz, Mabel | |
dc.date.accessioned | 2020-05-26T23:33:57Z | |
dc.date.available | 2020-05-26T23:33:57Z | |
dc.date.created | 2020-05-26T23:33:57Z | |
dc.date.issued | 2020 | |
dc.identifier | Toxicology in Vitro 65: (2020): 104814 | |
dc.identifier | 10.1016/j.tiv.2020.104814 | |
dc.identifier | https://repositorio.uchile.cl/handle/2250/174977 | |
dc.description.abstract | Introduction: Colorectal cancer (CRC) is a critical health issue worldwide. The high rate of liver and lung metastasis associated with CRC creates a significant barrier to effective and efficient therapy. Tumour cells, including CRC cells, have metabolic alterations, such as high levels of glycolytic activity, increased cell proliferation and invasiveness, and chemo- and radio-resistance. However, the abnormally elevated mitochondrial transmembrane potential of these cells also provides an opportunity to develop drugs that selectively target the mitochondrial functions of tumour cells.
Methods: In this work, we used a new batch of benzoic acid esters with cytotoxic activities attached to the triphenylphosphonium group as a vehicle to target tumour mitochondria and improve their activity. We evaluated the cytotoxicity, selectivity, and mechanism of action of these derivatives, including the effects on energy stress-induced apoptosis and metabolic behaviour in the human CRC cell lines HCT-15 and COLO-205.
Results: The benzoic acid derivatives selectively targeted the tumour cells with high potency and efficacy. The derivatives induced the uncoupling of the oxidative phosphorylation system, decreased the transmembrane potential, and reduced ATP levels while increasing AMPK activation, thereby triggering tumour cell apoptosis in both tumour cell lines tested.
Conclusion: The benzoic acid derivatives studied here are promising candidates for assessing in vivo models of CRC, despite the diverse metabolic characteristics of these tumour cells. | |
dc.language | en | |
dc.publisher | Elsevier | |
dc.rights | http://creativecommons.org/licenses/by-nc-nd/3.0/cl/ | |
dc.rights | Attribution-NonCommercial-NoDerivs 3.0 Chile | |
dc.source | Toxicology in Vitro | |
dc.subject | Targeting mitochondria | |
dc.subject | Benzoic acid derivatives | |
dc.subject | Uncoupling agents | |
dc.subject | Metabolism stress | |
dc.subject | Triphenylphosphonium moiety | |
dc.subject | Colorectal cancer | |
dc.subject | Antitumour-mitochondrial agents | |
dc.title | Novel benzoate-lipophilic cations selectively induce cell death in human colorectal cancer cell lines | |
dc.type | Artículo de revista | |