Exploring the Therapeutic Potential of Fe3O4@Glu-Oleuropein Nanoparticles in Targeting KRAS Pathway-Regulating lncRNAs in Colorectal Cancer Cells

被引:0
作者
Zahra Mahdavi Niyaki
Ali Salehzadeh
Maryam Peymani
Mohammad Zaefizadeh
机构
[1] Islamic Azad University,Department of Biology, Rasht Branch
[2] Islamic Azad University,Department of Biology, Faculty of Basic Sciences, Shahrekord Branch
[3] Islamic Azad University,Department of Biology, Ardabil Branch
来源
Biological Trace Element Research | 2024年 / 202卷
关键词
Colorectal cancer; Oleuropein; KRAS; LncRNA;
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学科分类号
摘要
Cancer, the leading cause of death worldwide, has witnessed significant advancements in treatment through targeted therapies. Among the proto-oncogenes prevalent in human cancers, KRAS stands out, and recent research has focused on long noncoding RNAs (lncRNAs) as regulators of miRNAs targeting the KRAS oncogene. This study specifically explores lncRNAs involved in the KRAS pathway in colorectal cancer (CRC). To investigate this, researchers employed iron oxide nanoparticles coated with glucose and conjugated with Oleuropein (Fe3O4@Glu-Oleuropein NPs) to evaluate their impact on candidate lncRNAs associated with KRAS pathway deregulation. The study utilized TCGA data to identify genes affected by KRAS mutation and lncRNAs linked to KRAS in CRC. Enrichr and MsigDB databases helped identify relevant pathways. Genes with a correlation coefficient above 0.5 and a P-value less than 0.01 with candidate lncRNAs were selected. MTT and flow cytometry assays determined the anti-proliferative and apoptotic effects of Fe3O4@Glu-Oleuropein NPs on CRC cells (SW480) and normal cells (HEK293). The findings showed that increased expression of FEZF1-AS1, GAS6-AS1, and LINC00920 correlated with mutated KRAS, and co-expressed genes were significantly involved in hypoxia, KRAS signaling, DNA repair, and IL-2/STAT5 signaling pathways. Fe3O4@Glu-Oleuropein NPs exhibited higher toxicity toward cancer cells, with IC50 values of 92 μg/ml for SW480 and 281 μg/ml for HEK293. Flow cytometry analysis revealed a substantial increase in necrotic and apoptotic cells when treated with Fe3O4@Glu-Oleuropein, along with down-regulation of GAS6-AS1, LINC00920, and FEZF1-AS1 lncRNAs in treated cells. In conclusion, this study highlights the therapeutic potential of Fe3O4@Glu-Oleuropein on colon cancer cells in vitro. The identification of lncRNAs involved in the KRAS pathway provides insights into the underlying mechanisms and offers avenues for further research in targeted cancer therapies.
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页码:3073 / 3085
页数:12
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共 162 条
[1]  
Sung H(2021)Global cancer statistics 2020: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries CA Cancer J Clin 71 209-249
[2]  
Ferlay J(2013)Prospective of colon cancer treatments and scope for combinatorial approach to enhanced cancer cell apoptosis Crit Rev Oncol Hematol 86 232-250
[3]  
Siegel RL(2021)Nanoparticles for cancer therapy: current progress and challenges Nanoscale Res Lett 16 173-83
[4]  
Laversanne M(2020)Cancer therapy with iron oxide nanoparticles: agents of thermal and immune therapies Adv Drug Deliv Rev 163 65-528
[5]  
Soerjomataram I(2017)Anticancer effects of oleuropein Biofactors 43 517-989
[6]  
Jemal A(2016)Oleuropein prevents azoxymethane-induced colon crypt dysplasia and leukocytes DNA damage in a/J mice J Med Food 19 983-255
[7]  
Bray F(2016)Chemopreventive effect of oleuropein in colitis-associated colorectal cancer in c57bl/6 mice Mol Nutr Food Res 60 242-12
[8]  
Mishra J(2015)Mutant KRAS as a critical determinant of the therapeutic response of colorectal cancer Genes & diseases 2 4-275
[9]  
Drummond J(2021)Recent advances in lung cancer genomics: application in targeted therapy. Advances in Genetics, 108, 201-275. Pathak, N., Chitikela, S. and Malik, P.S., 2021. Recent advances in lung cancer genomics: application in targeted therapy Adv Genet 108 201-22
[10]  
Quazi SH(2020)Novel pyridinecarboxaldehyde thiosemicarbazone conjugated magnetite nanoparticulates (MNPs) promote apoptosis in human lung cancer A549 cells JBIC Journal of Biological Inorganic Chemistry 25 13-37