Design and synthesis of berberine loaded nano-hydroxyapatite/gelatin scaffold for bone cancer treatment

被引:2
|
作者
Khajavi, Sajjad [1 ]
Bahraminasab, Marjan [2 ,3 ]
Arab, Samaneh [3 ]
Talebi, Athar [2 ]
Kokhaei, Parviz [4 ,5 ]
Abdoos, Hassan [6 ]
机构
[1] Semnan Univ Med Sci, Student Res Comm, Semnan, Iran
[2] Semnan Univ Med Sci, Nervous Syst Stem Cells Res Ctr, Semnan 3514799442, Iran
[3] Semnan Univ Med Sci, Sch Med, Dept Tissue Engn & Appl Cell Sci, Semnan 351799442, Iran
[4] Karolinska Univ Hosp Solna, Dept Oncol Pathol, BioClinicum, Stockholm, Sweden
[5] Arak Univ Med Sci, Dept Immunol, Arak, Iran
[6] Semnan Univ, Fac New Sci & Technol, Dept Nanotechnol, Semnan 3513119111, Iran
关键词
IN-VIVO EVALUATION; GELATIN; COLLAGEN; OSTEOSARCOMA; BIOMATERIALS; VITRO;
D O I
10.1039/d3nj04951e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The treatment of osteosarcoma, as the most destructive bone cancer, is allied with many challenges. One of the new tissue engineering approaches is the use of a local drug delivery system implanted after surgery. This system can be a scaffold mimicking the natural tissue extracellular matrix, loaded with drugs. Therefore, the purpose of this study was to construct different berberine-loaded nano-hydroxyapatite/gelatin scaffolds, and to investigate their effects on osteosarcoma cancer cells. The scaffolds after fabrication were analyzed for physicochemical properties using XRD, EDS, FTIR, and FE-SEM. The drug loading and release, and the biocompatibility (MTT and LDH) were also evaluated. Moreover, apoptosis, viability, colony formation, and scratch tests were conducted on cancer cells. The scaffolds exhibited a porosity of 66.64% with pore sizes of 10-70 micrometers. The results showed that the released berberine had a cytotoxic effect on cancer cells (cell death of similar to 38-80% based on LDH, and cell proliferation <56% and <21% in terms of early and late exposure based on MTT). The apoptosis results revealed a remarkable increase in the percentage of apoptotic MG63 cells after treatment with berberine-loaded scaffolds in a dose-dependent manner. All scaffolds with berberine were able to significantly prevent colony formation and cell migration (only 9.7-15.7% closure).
引用
收藏
页码:6977 / 6996
页数:20
相关论文
共 50 条
  • [31] Fabrication and Characterization of Nanocomposite Hydrogel Based on Alginate/Nano-Hydroxyapatite Loaded with Linum usitatissimum Extract as a Bone Tissue Engineering Scaffold
    Mohammadpour, Mahnaz
    Samadian, Hadi
    Moradi, Nader
    Izadi, Zhila
    Eftekhari, Mahdieh
    Hamidi, Masoud
    Shavandi, Amin
    Quero, Anthony
    Petit, Emmanuel
    Delattre, Cedric
    Elboutachfaiti, Redouan
    MARINE DRUGS, 2022, 20 (01)
  • [32] Biomimetic gelatin/chitosan/polyvinyl alcohol/nano-hydroxyapatite scaffolds for bone tissue engineering
    Ma, Pengfei
    Wu, Wenjing
    Wei, Yu
    Ren, Le
    Lin, Shuxian
    Wu, Junhua
    MATERIALS & DESIGN, 2021, 207
  • [33] Nano-hydroxyapatite/polymer composite porous scaffold materials
    Key Laboratory of Polymer Materials, College of Chemistry and Materials Science, Fujian Normal University, Fuzhou 350007, China
    Fuhe Cailiao Xuebao, 2008, 6 (39-46):
  • [34] Preparation and properties of biodegradable polymer/nano-hydroxyapatite bioceramic scaffold for spongy bone regeneration
    Rahman, Mohammed Mizanur
    Shahruzzaman, Md
    Islam, Md Sazedul
    Khan, M. Nuruzzaman
    Haque, Papia
    JOURNAL OF POLYMER ENGINEERING, 2019, 39 (02) : 134 - 142
  • [35] Degradation and biocompatibility of porous nano-hydroxyapatite/polyurethane composite scaffold for bone tissue engineering
    Dong, Zhihong
    Li, Yubao
    Zou, Qin
    APPLIED SURFACE SCIENCE, 2009, 255 (12) : 6087 - 6091
  • [36] The Impact of Nano-Hydroxyapatite Scaffold Enrichment on Bone Regeneration In Vivo-A Systematic Review
    Mitic, Dijana
    Carkic, Jelena
    Jacimovic, Jelena
    Lazarevic, Milos
    Karisik, Milica Jaksic
    Toljic, Bosko
    Milasin, Jelena
    BIOMIMETICS, 2024, 9 (07)
  • [37] 3D printed PLGA scaffold with nano-hydroxyapatite carrying linezolid for treatment of infected bone defects
    Keremu, Alimu
    Liang, Zhilin
    Chen, Linlin
    Tuxun, Aikebaier
    Abulikemu, Maimaitiaili
    Wu, Yuanquan
    BIOMEDICINE & PHARMACOTHERAPY, 2024, 172
  • [38] The effect of collector type on the physical, chemical, and biological properties of polycaprolactone/gelatin/nano-hydroxyapatite electrospun scaffold
    Sattary, Mansoureh
    Rafienia, Mohammad
    Khorasani, Mohammad Taghi
    Salehi, Hossein
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2019, 107 (04) : 933 - 950
  • [39] Enhanced mechanical strength and biocompatibility of electrospun polycaprolactone-gelatin scaffold with surface deposited nano-hydroxyapatite
    Jaiswal, A. K.
    Chhabra, H.
    Soni, V. P.
    Bellare, J. R.
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2013, 33 (04): : 2376 - 2385
  • [40] Nano-Hydroxyapatite Composite Scaffolds Loaded with Bioactive Factors and Drugs for Bone Tissue Engineering
    Mo, Xiaojing
    Zhang, Dianjian
    Liu, Keda
    Zhao, Xiaoxi
    Li, Xiaoming
    Wang, Wei
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (02)