Literature DB >> 33498201

Cell Proliferation Is Strongly Associated with the Treatment Conditions of an ER Stress Inducer New Anti-Melanoma Drug in Melanoma Cell Lines.

István Szász1,2, Viktória Koroknai1,2, Vikas Patel2, Tibor Hajdú3, Tímea Kiss4, Róza Ádány1,4, Margit Balázs1,4.   

Abstract

HA15 is a new anti-melanoma drug that triggers endoplasmic reticulum (ER) stress and causes deleterious effects on melanoma cell viability due to autophagy and apoptosis, regardless of driver mutations or drug resistance. In this study, we investigated the effect of HA15 on the viability/proliferation of BRAFV600E-mutant melanoma cells using different culture conditions. In contrast to the published data, we did not detect significant melanoma cell death under normal culture conditions using HA15 treatment. Indeed, only cells that were cultured under long-term starvation conditions were sensitive to the drug. Quantitative measurements of ER stress and autophagy markers showed that the compound HA15 does not trigger stress alone but synergistically enhances ER stress under starvation conditions. Importantly, we observed that the viability of normal melanocytes decreased significantly with treatment, even at low HA15 concentrations. Finally yet importantly, we were able to generate HA15-resistant cell lines, which failed by Cerezo et al. In summary, HA15 only influences the viability of cells that are starved for several hours before and during treatment. However, this in vitro setting is far from the in vivo conditions. In addition, our data clearly show that melanoma cells can acquire HA15 resistance. Further studies are needed to prove that HA15 is an effective anti-cancer agent.

Entities:  

Keywords:  ER stress; HA15 anti-melanoma drug; RNA-Seq; apoptosis; autophagy; resistant cell lines

Year:  2021        PMID: 33498201     DOI: 10.3390/biomedicines9020096

Source DB:  PubMed          Journal:  Biomedicines        ISSN: 2227-9059


  1 in total

1.  Canine osteosarcoma cells exhibit basal accumulation of multiple chaperone proteins and are sensitive to small molecule inhibitors of GRP78 and heat shock protein function.

Authors:  Daphne R Mattos; Marcus A Weinman; Xuemei Wan; Cheri P Goodall; Jeffrey D Serrill; Kerry L McPhail; Milan Milovancev; Shay Bracha; Jane E Ishmael
Journal:  Cell Stress Chaperones       Date:  2022-03-04       Impact factor: 3.827

  1 in total

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