Fabrication of Curcumin Diethyl γ-Aminobutyrate-Loaded Chitosan-Coated Magnetic Nanocarriers for Improvement of Cytotoxicity against Breast Cancer Cells

被引:10
作者
Hansapaiboon, Supakarn [1 ,2 ]
Bulatao, Bryan Paul [3 ]
Sorasitthiyanukarn, Feuangthit Niyamissara [1 ,4 ]
Jantaratana, Pongsakorn [5 ]
Nalinratana, Nonthaneth [1 ,6 ]
Vajragupta, Opa [1 ,7 ]
Rojsitthisak, Pranee [1 ,4 ]
Rojsitthisak, Pornchai [1 ,8 ]
机构
[1] Chulalongkorn Univ, Ctr Excellence Nat Prod Ageing & Chron Dis, Bangkok 10330, Thailand
[2] Chulalongkorn Univ, Fac Pharmaceut Sci, Pharmaceut Sci & Technol Program, Bangkok 10330, Thailand
[3] Univ Philippines Manila, Coll Pharm, Dept Ind Pharm, Manila 1000, Philippines
[4] Chulalongkorn Univ, Met & Mat Sci Res Inst, Bangkok 10330, Thailand
[5] Kasetsart Univ, Fac Sci, Dept Phys, Bangkok 10900, Thailand
[6] Chulalongkorn Univ, Fac Pharmaceut Sci, Dept Pharmacol & Physiol, Bangkok 10330, Thailand
[7] Chulalongkorn Univ, Fac Pharmaceut Sci, Mol Probes Imaging Res Network, Bangkok 10330, Thailand
[8] Chulalongkorn Univ, Fac Pharmaceut Sci, Dept Food & Pharmaceut Chem, Bangkok 10330, Thailand
关键词
iron oxide nanoparticles; magnetic targeting delivery; prodrug; Box-Behnken design; cytotoxicity; IRON-OXIDE NANOPARTICLES; DRUG-DELIVERY; IN-VITRO; POLYELECTROLYTE COMPLEX; ALGINATE; ACID; VIVO; STABILITY; RELEASE;
D O I
10.3390/polym14245563
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This study shows the effectiveness of magnetic-guide targeting in the delivery of curcumin diethyl gamma-aminobutyrate (CUR-2GE), a prodrug of curcumin (CUR) previously synthesized to overcome unfavorable physicochemical properties of CUR. In this study, chitosan (Ch)-coated iron oxide nanoparticles (Ch-IONPs) were fabricated and optimized using Box-Behnken design-based response surface methodology for delivery of CUR-2GE. Ch was used as a coating material on the nanoparticle surface to avoid aggregation. The optimized condition for preparing Ch-IONPs consisted of using 4 mg Ch fabricated at pH 11 under a reaction temperature of 85 degrees C. The optimized Ch-IONPs were successfully loaded with CUR-2GE with sufficient loading capacity (1.72 +/- 0.01%) and encapsulation efficiency (94.9 +/- 0.8%). The obtained CUR-2GE-loaded Ch-IONPs (CUR-2GE-Ch-IONPs) exhibited desirable characteristics including a particle size of less than 50 nm based on TEM images, superparamagnetic property, highly crystalline IONP core, sufficient stability, and sustained-release profile. In the presence of permanent magnets, CUR-2GE-Ch-IONPs significantly increased cellular uptake and cytotoxicity toward MDA-MB-231 with a 12-fold increase in potency compared to free CUR-2GE, indicating the potential of magnetic-field assisted delivery of CUR-2GE-Ch-IONPs for the treatment of triple-negative breast cancer.
引用
收藏
页数:24
相关论文
共 75 条
[1]   Towards better modeling of chitosan nanoparticles production: Screening different factors and comparing two experimental designs [J].
Abdel-Hafez, Salma M. ;
Hathout, Rania M. ;
Sammour, Omaima A. .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2014, 64 :334-340
[2]   Shape controlled iron oxide nanoparticles: inducing branching and controlling particle crystallinity [J].
AbuTalib, Nur Hanisah ;
LaGrow, Alec P. ;
Besenhard, Maximilian O. ;
Bondarchuk, Oleksandr ;
Sergides, Andreas ;
Famiani, Simone ;
Ferreira, Liliana P. ;
Margarida Cruz, M. ;
Gavriilidis, Asterios ;
Nguyen Thi Kim Thanh .
CRYSTENGCOMM, 2021, 23 (03) :550-561
[3]   Magnetic Drug Targeting: Preclinical in Vivo Studies, Mathematical Modeling, and Extrapolation to Humans [J].
Al-Jamal, Khuloud T. ;
Bai, Jie ;
Wang, Julie Tzu-Wen ;
Protti, Andrea ;
Southern, Paul ;
Bogart, Lara ;
Heidari, Hamed ;
Li, Xinjia ;
Cakebread, Andrew ;
Asker, Dan ;
Al-Jamal, Wafa T. ;
Shah, Ajay ;
Bals, Sara ;
Sosabowski, Jane ;
Pankhurst, Quentin A. .
NANO LETTERS, 2016, 16 (09) :5652-5660
[4]   In vitro and in vivo investigations of targeted chemotherapy with magnetic nanoparticles [J].
Alexiou, C ;
Jurgons, R ;
Schmid, R ;
Hilpert, A ;
Bergemann, C ;
Parak, F ;
Iro, H .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2005, 293 (01) :389-393
[5]   Preparation, characterization, and in vitro-in silico biological activities of Jatropha pelargoniifolia extract loaded chitosan nanoparticles [J].
Alqahtani, Mohammed S. ;
Al-Yousef, Hanan M. ;
Alqahtani, Ali S. ;
Rehman, Md Tabish ;
AlAjmi, Mohamed F. ;
Almarfidi, Omar ;
Amina, Musarat ;
Alshememry, Abdullah ;
Syed, Rabbani .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2021, 606
[6]  
Altunatmaz SS, 2016, VET MED-CZECH, V61, P256, DOI 10.17221/8880-VETMED
[7]  
[Anonymous], 2020, ENCY ANAL CHEM
[8]   Biosynthesis of chitosan-coated iron oxide (Fe3O4) hybrid nanocomposites from leaf extracts of Brassica oleracea L. and study on their antibacterial potentials [J].
Appu, Manikandan ;
Lian, Zhifeng ;
Zhao, Dengqi ;
Huang, Jianying .
3 BIOTECH, 2021, 11 (06)
[9]   In vivo delivery, pharmacokinetics, biodistribution and toxicity of iron oxide nanoparticles [J].
Arami, Hamed ;
Khandhar, Amit ;
Liggitt, Denny ;
Krishnan, Kannan M. .
CHEMICAL SOCIETY REVIEWS, 2015, 44 (23) :8576-8607
[10]   Iron Oxide Nanoparticles for Biomedical Applications: A Perspective on Synthesis, Drugs, Antimicrobial Activity, and Toxicity [J].
Arias, Lais Salomao ;
Pessan, Juliano Pelim ;
Miranda Vieira, Ana Paula ;
Toito de Lima, Taynara Maria ;
Botazzo Delbem, Alberto Carlos ;
Monteiro, Douglas Roberto .
ANTIBIOTICS-BASEL, 2018, 7 (02)