Formulation of polymeric nanoparticles loaded sorafenib; evaluation of cytotoxicity, molecular evaluation, and gene expression studies in lung and breast cancer cell lines

Author:

Abdellatif Ahmed A. H.12,Ali Asmaa T.3,Bouazzaoui Abdellatif456,Alsharidah Mansour7,Al Rugaie Osamah8,Tolba Nahla Sameh9

Affiliation:

1. Department of Pharmaceutics, College of Pharmacy, Qassim University , Qassim 51452 , Saudi Arabia

2. Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy, Al-Azhar University , Assiut 71524 , Egypt

3. Department of Biochemistry, Faculty of Pharmacy, Nahda University , Beni-Suef , Egypt

4. Department of Medical Genetics, Faculty of Medicine, Umm Al-Qura University , Makkah 21955 , Saudi Arabia

5. Science and Technology Unit, Umm Al-Qura University , Makkah 21955 , Saudi Arabia

6. Department of Internal Medicine III (Hematology/Oncology), University Hospital Regensburg , Franz-Josef-Strauß-Allee 11 , 93053 Regensburg , Germany

7. Department of Physiology, College of Medicine, Qassim University , Buraydah 51452 , Saudi Arabia

8. Department of Basic Medical Sciences, College of Medicine and Medical Sciences, Qassim University , Unaizah, P.O. Box 991 , Al Qassim 51911 , Saudi Arabia

9. Department of Pharmaceutics, Faculty of Pharmacy, University of Sadat City , Sadat City 32897 , Egypt

Abstract

Abstract Sorafenib (SFB) is an anticancer drug with sparingly water solubility and reduced bioavailability. Nanoformulation of SFB can increase its dissolution rate and solubility. The current study aimed to formulate SFB in nanoparticles to improve their solubility. The sorafenib nanoparticles (SFB-PNs) were synthesized using the solvent evaporation method, then evaluated for their particle size, polydispersity index (PDI), zeta-potential, morphological structure, and entrapment efficiency (EE%). Further, the anticancer efficacy in A549 and Michigan Cancer Foundation-7 (MCF-7) cancer cell lines was evaluated. The SFB-NPs were uniform in size, which have 389.7 ± 16.49 nm, PDI of 0.703 ± 0.12, and zeta-potential of −13.5 ± 12.1 mV, whereas transmission electron microscopy showed a well-identified spherical particle. The EE% was found to be 73.7 ± 0.8%. SFB-NPs inhibited the cell growth by 50% after 48 h incubation, with IC50 of 2.26 and 1.28 µg/mL in A549 and MCF-7, respectively. Additionally, SFB-NPs showed a significant decrease (P < 0.05) in p21, and stathmin-1 gene expression levels in both cell lines. Moreover, SFB-NPs showed a significant increase in DNA damage of 25.50 and 26.75% in A549 and MCF-7, respectively. The results indicate that SFB-NPs are a potential candidate with an effective anticancer agent compared with free drugs.

Publisher

Walter de Gruyter GmbH

Subject

Surfaces, Coatings and Films,Process Chemistry and Technology,Energy Engineering and Power Technology,Biomaterials,Medicine (miscellaneous),Biotechnology

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