Porous Cu-MOF nanostructures with anticancer properties prepared by a controllable ultrasound-assisted reverse micelle synthesis of Cu-MOF

被引:27
作者
Akhavan-Sigari, Reza [1 ]
Zeraati, Malihe [2 ]
Moghaddam-Manesh, Mohammadreza [3 ]
Kazemzadeh, Parya [4 ]
Hosseinzadegan, Sara [5 ]
Chauhan, Narendra Pal Singh [6 ]
Sargazi, Ghasem [7 ]
机构
[1] Univ Nebraska Med Ctr, Dept Neurosurg, Tubingen, Germany
[2] Shahid Bahonar Univ Kerman, Dept Mat Engn, Kerman 761694111, Iran
[3] Stand Res Inst, Chem & Petrochem Res Ctr, Petrochem & Polymer Res Grp, Tehran, Iran
[4] Lorestan Univ, Dept Chem, Khorramabad, Iran
[5] Univ Sistan & Baluchestan, Fac Sci, Dept Chem, Zahedan, Iran
[6] Bhupal NoblesUniv, Fac Sci, Dept Chem, Udaipur, Rajasthan, India
[7] Bam Univ Med Sci, Noncommunicable Dis Res Ctr, Bam, Iran
关键词
Cu-MOF; Characterization; Cell viability; Anticancer; DRUG-DELIVERY; HYBRID; BLUE;
D O I
10.1186/s13065-022-00804-2
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The ultrasonic assisted reverse micelle method (UARM) was used to synthesize Cu-MOF from Cu(NO3)(2)center dot 3H(2)O and 2,6-pyridine dicarboxylic acid in a 1:1 molar proportion. It has been characterized using FT-IR, XRD, nitrogen adsorption analysis, SEM and TEM-EDX. The morphology of Cu-MOFs was spherical, with an average particle size distribution of less than 100 nm. Using BET analysis, the surface area of Cu-MOF was found to be 284.94 m(2)/g. The porous morphology of Cu-MOF was also suggested by SEM and TEM analyses. It has anticancer properties against MCF-7 breast cancer cells. Cytotoxicity testing was performed on MCF-7 breast cancer cells using the MTT cell viability assay, and cell proliferation and viability were found to be approximately 24% higher than the control.
引用
收藏
页数:7
相关论文
共 38 条
[1]   A novel synthesis of new antibacterial nanostructures based on Zn-MOF compound: design, characterization and a high performance application [J].
Akbarzadeh, Fatemeh ;
Motaghi, Mehdi ;
Chauhan, Narendra Pal Singh ;
Sargazi, Ghasem .
HELIYON, 2020, 6 (01)
[2]   Ultrasonically assisted hydrothermal synthesis of activated carbon-HKUST-1-MOF hybrid for efficient simultaneous ultrasound-assisted removal of ternary organic dyes and antibacterial investigation: Taguchi optimization [J].
Azad, F. Nasiri ;
Ghaedi, M. ;
Dashtian, K. ;
Hajati, S. ;
Pezeshkpour, V. .
ULTRASONICS SONOCHEMISTRY, 2016, 31 :383-393
[3]   An efficient ultrasonic assisted reverse micelle synthesis route for Fe3O4@Cu-MOF/core-shell nanostructures and its antibacterial activities [J].
Azizabadi, Omolbanin ;
Akbarzadeh, Fatemeh ;
Danshina, Svetlana ;
Chauhan, Narendra Pal Singh ;
Sargazi, Ghasem .
JOURNAL OF SOLID STATE CHEMISTRY, 2021, 294
[4]   Pristine Cu-MOF Induces Mitotic Catastrophe and Alterations of Gene Expression and Cytoskeleton in Ovarian Cancer Cells [J].
Chen, Daomei ;
Li, Bin ;
Jiang, Liang ;
Li, Yizhou ;
Yang, Yepeng ;
Luo, Zhifang ;
Wang, Jiaqiang .
ACS APPLIED BIO MATERIALS, 2020, 3 (07) :4081-4094
[5]   The properties of MOF-Zn2(EBNB)2(BPY)2.2H2O and its basic study of loading methadone [J].
Deng Linxin ;
Li Song ;
Sun Xuehua .
BMC CHEMISTRY, 2020, 14 (01)
[6]   Metal-organic frameworks-based nanozymes for combined cancer therapy [J].
Ding, Shuai-shuai ;
He, Ling ;
Bian, Xiu-wu ;
Tian, Gan .
NANO TODAY, 2020, 35
[7]   The Chemistry and Applications of Metal-Organic Frameworks [J].
Furukawa, Hiroyasu ;
Cordova, Kyle E. ;
O'Keeffe, Michael ;
Yaghi, Omar M. .
SCIENCE, 2013, 341 (6149) :974-+
[8]  
Gu LH, 2017, RSC ADV, V7, P9412, DOI [10.1039/C6RA24764D, 10.1039/c6ra24764d]
[9]   Novel Metal-Organic Framework-Based Photocrosslinked Hydrogel System for Efficient Antibacterial Applications [J].
Gwon, Kihak ;
Han, Ihn ;
Lee, Seonhwa ;
Kim, Youngmee ;
Lee, Do Nam .
ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (18) :20234-20242
[10]   RETRACTED: Construction of a Zn(II)-containing MOF for highly selective detection of picric acid and inhibition of human glioma cell growth (Retracted article. See vol. 1275, 2023) [J].
Hu, Yun-Jia ;
Li, Yu-Ming ;
Zheng, Kai ;
Zhang, Wei-Hao ;
Liu, Yu-Li ;
Yang, Hua .
JOURNAL OF MOLECULAR STRUCTURE, 2020, 1202