Abstract 79P
Background
Gefitinib has been employed as a first-line treatment for patients with NSCLC with EGFR mutation, but rapid drug resistance in tumors induces disease progression. Overactivation of PI3K/AKT is associated with gefitinib resistance (GR) in lung adenocarcinoma. Clinically, crizotinib inhibits AKT and extracellular regulated protein kinases (ERK) signal activation in various tumor cells.
Methods
Gefitinib and crizotinib were loaded into a hydrophobic core, which was formed by the amphiphilic block poly (ethylene glycol)–poly (hexyl ethylene phosphate) (GC@NP) through nano self-assembly method. And the anti-tumor effect and mechanism of GC@NP were verified in vivo and in vitro.
Results
According to particle characterization results, GC@NP had a homogeneous and stable nanoscale, which was 40.1±1.1 nm. Especially, GC@NP had a good drug loading efficiency, the values are 6.52 ± 0.21% and 7.09 ± 0.39% for gefitinib and crizotinib respectively. At the cellular level, GC@NP can be effectively ingested by PC9GR cells within 2 hours. When the concentration of gefitinib was set to 2 μM, the cell viability of the free gefitinib group was 90%, while GC@NP group was only about 50%. At the same time, GC@NP exhibited higher proliferative inhibition and apoptotic induction effects compared to free gefitinib group, the apoptosis rates were 25% and 5% respectively. At the animal level, GC@NP significantly inhibited the growth and metastasis of PC9GR tumors, and also inhibited the brain metastasis associated with GR. Meanwhile, we validated GC@NP has good biosafety in the transgenic zebrafish model. In the nude mouse tumor model, our results indicate that GC@NP can significantly inhibit the growth of PC9GR tumors, while the combination of free gefitinib and crizotinib didn't show significant therapeutic effects. Mechanistically and importantly, GC@NP synergism promoted the dephosphorylation of the overactivated AKT signal and inhibited the feedback activation of ERK signal, which inducing apoptosis in PC9GR cells.
Conclusions
The co-delivery nanoparticle GC@NP we have constructed provides a potential therapeutic approach for advanced lung adenocarcinoma patients with targeting-drug resistance and brain metastasis.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
Haiyu Zhou.
Funding
Has not received any funding.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
77P - Normative data on the sexual health questionnaires - QLQ-SHQ22, and the sexual domains of the QLQ-BR23/BR45 - for Norwegian general population with and without cancer
Presenter: Ragnhild Åsberg
Session: Poster session 09
78P - Peroxiredoxin-1 knockout negatively affects the viability of ph+ B-cell acute lymphoblastic leukemia cells and sensitizes them to tyrosine kinase inhibitors
Presenter: Jaromir Hunia
Session: Poster session 09
80P - Steroidal oximes: A new potential therapeutic approach for cancer treatment
Presenter: Mafalda Laranjo
Session: Poster session 09
81P - miR-23b and -133a role on TRAIL-induced apoptosis pathway components expression and TRAIL sensitization in lung adenocarcinoma cells
Presenter: Denise Leite
Session: Poster session 09
83P - Impact of VHL-associated tumor treatment on mental health: An international patient survey
Presenter: Othon Iliopoulos
Session: Poster session 09
84P - Microenvironment immune differences between sexes in multiple myeloma
Presenter: Maria de los Angeles Clavo
Session: Poster session 09
85P - In silico evaluation of the transcriptomic and immunologic profile of lung adenocarcinomas with deletions or disruptive mutations of SMARCA4
Presenter: Ester Garcia Lorenzo
Session: Poster session 09
86P - Effect of chemotherapy-induced autophagic secretome on natural killer cell activity
Presenter: Ayfer Karlitepe
Session: Poster session 09
87P - WIP1 phosphatase promotes etoposide induced autophagy in medulloblastoma and neuroblastoma
Presenter: Hatice Pilevneli
Session: Poster session 09
88P - PPM1D/WIP1 phosphatase mediates basal and genotoxic stress-induced autophagy via ULK-1 de-phosphorylation
Presenter: Ceylan Ak
Session: Poster session 09