Folic Acid-Modified Ibrutinib-Loaded Silk Fibroin Nanoparticles for Cancer Cell Therapy with Over-Expressed Folate Receptor.
Marta G FusterMercedes G MontalbánImane MouleferaGloria VílloraDavid Lee KaplanPublished in: Pharmaceutics (2023)
The anticancer drug ibrutinib (IB), also known as PCI-32765, is a compound that irreversibly inhibits Bruton's tyrosine kinase (BTK) and was initially developed as a treatment option for B-cell lineage neoplasms. Its action is not limited to B-cells, as it is expressed in all hematopoietic lineages and plays a crucial role in the tumor microenvironment. However, clinical trials with the drug have resulted in conflicting outcomes against solid tumors. In this study, folic acid-conjugated silk nanoparticles were used for the targeted delivery of IB to the cancer cell lines HeLa, BT-474, and SKBR3 by exploiting the overexpression of folate receptors on their surfaces. The results were compared with those of control healthy cells (EA.hy926). Cellular uptake studies confirmed total internalization of the nanoparticles functionalized by this procedure in the cancer cells after 24 h, compared to nanoparticles not functionalized with folic acid, suggesting that cellular uptake was mediated by folate receptors overexpressed in the cancer cells. The results indicate that the developed nanocarrier can be used for drug targeting applications by enhancing IB uptake in cancer cells with folate receptor overexpression.
Keyphrases
- tyrosine kinase
- cell therapy
- papillary thyroid
- clinical trial
- drug delivery
- cell proliferation
- epidermal growth factor receptor
- cell cycle arrest
- quantum dots
- squamous cell
- wound healing
- adverse drug
- transcription factor
- cancer therapy
- percutaneous coronary intervention
- acute myocardial infarction
- randomized controlled trial
- acute coronary syndrome
- tissue engineering
- coronary artery disease
- squamous cell carcinoma
- oxidative stress
- mesenchymal stem cells
- stem cells
- type diabetes
- metabolic syndrome
- minimally invasive
- signaling pathway
- cell death
- bone marrow
- lymph node metastasis
- atrial fibrillation
- single cell
- coronary artery bypass grafting
- pseudomonas aeruginosa
- biofilm formation
- weight loss
- binding protein
- simultaneous determination
- st segment elevation myocardial infarction
- adipose tissue
- tandem mass spectrometry
- pi k akt
- coronary artery bypass