Fabrication of bovine serum albumin-polyethylene glycol nanoparticle conjugated-folic acid loaded-naringenin as an efficient carrier biomacromolecule for suppression of cancer cells

被引:6
作者
Firouzabadi, Kimia [1 ]
Karimi, Ehsan [1 ]
Tabrizi, Masoud Homayouni [1 ]
机构
[1] Islamic Azad Univ, Dept Biol, Mashhad Branch, Mashhad, Razavi Khorasan, Iran
关键词
biomacromolecule; bovine serum albumin; naringenin; polyethylene glycol; folic acid; POLYMER NANOPARTICLES; DEATH; CYTOTOXICITY; APOPTOSIS; DELIVERY; MAPK;
D O I
10.1002/bab.2399
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Flavonoid compounds play an effective role in cancer suppression and today nanocarriers play an important role in improving the physicochemical properties and transmission of these compounds. In this study, polyethylene glycol-modified albumin nanoparticles were synthesized by desolvation method; after loading of naringenin (NRG), folic acid (FA) binding to the surface of nanoparticles was performed (BSA-PEG-FA-NG-NPs). The extent of NRG trapping and FA binding was assessed indirectly using UV absorption methods. The physicochemical properties of BSA-PEG-FA-NG-NPs were investigated by DLS, SEM electron microscopy, and FTIR methods, after which their effects were evaluated on the apoptosis mechanism via MTT, flow cytometry, and qPCR methods. The BSA-PEG-FA-NG-NPs with spherical morphology had dimensions of 205 nm with zeta-potential of 20.61 mV and dispersion index of 0.36. The NRG encapsulation was 84% and the FA binding was 75%. Anticancer effects of BSA-PEG-FA-NG-NPs were confirmed based on inhibiting breast cancer cells (IC50: 922 mu g/ml), cell cycle arrest (SubG1 phase), and induction of apoptosis (upregulation of Caspase 3, 8, and 9).
引用
收藏
页码:790 / 797
页数:8
相关论文
共 50 条
[1]   Naringenin inhibits proliferation, migration, and invasion as well as induces apoptosis of gastric cancer SGC7901 cell line by downregulation of AKT pathway [J].
Bao, Lei ;
Liu, Feng ;
Guo, Huai-bin ;
Li, Yong ;
Tan, Bi-bo ;
Zhang, Wan-xing ;
Peng, Yan-hui .
TUMOR BIOLOGY, 2016, 37 (08) :11365-11374
[2]   Naringenin Nano-Delivery Systems and Their Therapeutic Applications [J].
Bhia, Mohammed ;
Motallebi, Mahzad ;
Abadi, Banafshe ;
Zarepour, Atefeh ;
Pereira-Silva, Miguel ;
Saremnejad, Farinaz ;
Santos, Ana Claudia ;
Zarrabi, Ali ;
Melero, Ana ;
Jafari, Seid Mandi ;
Shakibaei, Mehdi .
PHARMACEUTICS, 2021, 13 (02) :1-29
[3]   Hesperetin and Naringenin sensitize HER2 positive cancer cells to death by serving as HER2 Tyrosine Kinase inhibitors [J].
Chandrika, Bhavya Balan ;
Steephan, Mathew ;
Kumar, T. R. Santhosh ;
Sabu, A. ;
Haridas, M. .
LIFE SCIENCES, 2016, 160 :47-56
[4]   Naringenin inhibits migration of lung cancer cells via the inhibition of matrix metalloproteinases-2 and-9 [J].
Chang, Huai-Lu ;
Chang, Yuh-Ming ;
Lai, Shih-Chan ;
Chen, Ke-Min ;
Wang, Kuan-Chu ;
Chiu, Tsu-Ting ;
Chang, Fu-Hsin ;
Hsu, Li-Sung .
EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2017, 13 (02) :739-744
[5]   Naringenin exerts anticancer effects by inducing tumor cell death and inhibiting angiogenesis in malignant melanoma [J].
Choi, Jawun ;
Lee, Dae-Hyo ;
Jang, Hyuk ;
Park, Sang-Youel ;
Seol, Jae-Won .
INTERNATIONAL JOURNAL OF MEDICAL SCIENCES, 2020, 17 (18) :3049-3057
[6]   Aqueous phase one-pot green synthesis of SnSe nanosheets in a protein matrix: negligible cytotoxicity and room temperature emission in the visible region [J].
Das, Laboni ;
Guleria, Apurav ;
Adhikari, Soumyakanti .
RSC ADVANCES, 2015, 5 (75) :61390-61397
[7]   Development, optimization, and evaluation of PEGylated brucine-loaded PLGA nanoparticles [J].
Elsewedy, Heba S. ;
Al Dhubiab, Bandar E. ;
Mahdy, Mahmoud A. ;
Elnahas, Hanan M. .
DRUG DELIVERY, 2020, 27 (01) :1134-1146
[8]   Anti-Cancerous Potential of Polyphenol-Loaded Polymeric Nanotherapeutics [J].
Ernest, Umeorah ;
Chen, Hai-Yan ;
Xu, Ming-Jun ;
Taghipour, Yasamin Davatgaran ;
Bin Asad, Muhammad Hassham Hassan ;
Rahimi, Roja ;
Murtaza, Ghulam .
MOLECULES, 2018, 23 (11)
[9]   Plant flavonoids in cancer chemoprevention: role in genome stability [J].
George, Vazhappilly Cijo ;
Dellaire, Graham ;
Rupasinghe, H. P. Vasantha .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2017, 45 :1-14
[10]   Folate-modified, indocyanine green-loaded lipid-polymer hybrid nanoparticles for targeted delivery of cisplatin [J].
Gu, Lianshuai ;
Shi, Tianyi ;
Sun, Yu ;
You, Chaoqun ;
Wang, Senlin ;
Wen, Gaoju ;
Chen, Lan ;
Zhang, Xiangyang ;
Zhu, Jin ;
Sun, Baiwang .
JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2017, 28 (07) :690-702