Codelivery of HIF-1α siRNA and Dinaciclib by Carboxylated Graphene Oxide-Trimethyl Chitosan-Hyaluronate Nanoparticles Significantly Suppresses Cancer Cell Progression.
Sepideh IzadiAsma MoslehiHadiseh KheiryFariba Karoon KianiArmin AhmadiAli MasjediSepideh GhaniBehnam RafieeVahid KarpishehFarnaz HajizadehFatemeh AtyabiAkram AssaliFarnaz Sadat Mirzazadeh TekieAfshin NamdarGhasem GhalamfarsaMozhdeh SojoodiFarhad Jadidi-NiaraghPublished in: Pharmaceutical research (2020)
These results indicate the ability of CGO-TMC-HA NPs for dual drug/gene delivery in cancer treatment. Furthermore, the simultaneous inhibition of CDKs/HIF-1α can be considered as a novel anti-cancer treatment strategy; however, further research is needed to confirm this treatment in vivo. Graphical Abstract The suppression of HIF-1α and CDKs inhibits cancer growth. HIF-1α is overexpressed by the cells present in the tumor microenvironment. The hypoxic environment elevates mitochondrial ROS production and increases p38 MAP kinase, JAK/STAT, ERK, JNK, and Akt/PI3K signaling, resulting in cyclin accumulation and aberrant cell cycle progression. Furthermore, the overexpression of HIF-1α/CDK results in increased expression of genes such as BCL2, Bcl-xl, Ki-67, TGFβ, VEGF, FGF, MMP2, MMP9, and, HIF-1α and consequently raise the survival, proliferation, angiogenesis, metastasis, and invasion of tumor cells. In conclusion, HIF-1α-siRNA/Dinaciclib-loaded CGO-TMC-HA NPs can inhibit the tumor expansion by blockage of CDKs and HIF-1α (JAK: Janus kinase, STAT: Signal transducer and activator of transcription, MAPK: mitogen-activated protein kinase, ERK: extracellular signal-regulated kinase, JNK: c-Jun N-terminal kinase, PI3K: phosphatidylinositol 3-kinase).
Keyphrases
- signaling pathway
- cell cycle
- endothelial cells
- cell proliferation
- protein kinase
- induced apoptosis
- tyrosine kinase
- pi k akt
- cell death
- drug delivery
- oxidative stress
- transcription factor
- cancer therapy
- cell migration
- epithelial mesenchymal transition
- poor prognosis
- gene expression
- vascular endothelial growth factor
- genome wide
- dna damage
- immune response
- squamous cell carcinoma
- dna methylation
- binding protein
- hyaluronic acid
- transforming growth factor
- long non coding rna