Evaluation of the effects of chitosan nanoparticles on polyhydroxy butyrate electrospun scaffolds for cartilage tissue engineering applications

被引:11
|
作者
Amnieh, Yasamin Alikhasi [1 ]
Ghadirian, Sepideh [2 ]
Mohammadi, Nayereh [2 ]
Shadkhast, Mohammad [3 ]
Karbasi, Saeed [2 ,4 ]
机构
[1] Shahrekord Univ, Sch Vet, Dept Vet Histol, Shahrekord, Iran
[2] Isfahan Univ Med Sci, Sch Adv Technol Med, Dept Biomat & Tissue Engn, Esfahan, Iran
[3] Shahrekord Univ, Basic Sci Vet Fac, Shahrekord, Iran
[4] Isfahan Univ Med Sci, Dent Res Inst, Dent Implants Res Ctr, Sch Dent, Esfahan, Iran
关键词
Polyhydroxy butyrate; Chitosan; Electrospinning; Cartilage; Tissue engineering; IN-VITRO; ANTIBACTERIAL ACTIVITY; MECHANICAL-PROPERTIES; CARBON NANOTUBES; FILMS; NANOFIBERS; CELLS; NANOCOMPOSITE; PROLIFERATION; DEGRADATION;
D O I
10.1016/j.ijbiomac.2023.126064
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
In this study, we synthesized and incorporated chitosan nanoparticles (Cs) into polyhydroxy butyrate (PHB) electrospun scaffolds for cartilage tissue engineering. The Cs nanoparticles were synthesized via an ionic gel interaction between Cs powder and tripolyphosphate (TPP). The mechanical properties, hydrophilicity, and fiber diameter of the PHB scaffolds with varying concentrations of Cs nanoparticles (1-5 wt%) were evaluated. The results of these evaluations showed that the scaffold containing 1 wt% Cs nanoparticles (P-1Cs) was the optimum scaffold, with increased ultimate strength from 2.6 to 5.2 MPa and elongation at break from 5.31 % to 12.6 %. Crystallinity, degradation, and cell compatibility were also evaluated. The addition of Cs nanoparticles decreased crystallinity and accelerated hydrolytic degradation. MTT assay results showed that the proliferation of chondrocytes on the scaffold containing 1 wt% Cs nanoparticles were significantly higher than that on pure PHB after 7 days of cultivation. These findings suggest that the electrospun P-1Cs scaffold has promising potential as a substrate for cartilage tissue engineering applications. This combination offers a promising approach for the fabrication of biomimetic scaffolds with enhanced mechanical properties, hydrophilicity, and cell compatibility for tissue engineering applications.
引用
收藏
页数:15
相关论文
共 50 条
  • [41] Physical, mechanical and biological evaluation of poly (3-hydroxybutyrate)chitosan/MWNTs as a novel electrospun scaffold for cartilage tissue engineering applications
    Mohammadalizadeh, Z.
    Karbasi, S.
    Arasteh, S.
    [J]. POLYMER-PLASTICS TECHNOLOGY AND MATERIALS, 2020, 59 (04): : 417 - 429
  • [42] Nanocomposite scaffolds of bioactive glass ceramic nanoparticles disseminated chitosan matrix for tissue engineering applications
    Peter, Mathew
    Binulal, N. S.
    Soumya, S.
    Nair, S. V.
    Furuike, T.
    Tamura, H.
    Jayakumar, R.
    [J]. CARBOHYDRATE POLYMERS, 2010, 79 (02) : 284 - 289
  • [43] Evaluation of bone matrix gelatin/fibrin glue and chitosan/gelatin composite scaffolds for cartilage tissue engineering
    Wang, Z. H.
    Zhang, J.
    Zhang, Q.
    Gao, Y.
    Yan, J.
    Zhao, X. Y.
    Yang, Y. Y.
    Kong, D. M.
    Zhao, J.
    Shi, Y. X.
    Li, X. L.
    [J]. GENETICS AND MOLECULAR RESEARCH, 2016, 15 (03)
  • [44] Chitosan Hydrogel as Tissue Engineering Scaffolds for Vascular Regeneration Applications
    Wang, Qiulin
    Wang, Xiaoyu
    Feng, Yakai
    [J]. GELS, 2023, 9 (05)
  • [45] Chitosan-Based Nanocomposite Scaffolds for Tissue Engineering Applications
    Sultana, Naznin
    Mokhtar, Masturah
    Hassan, Mohd Izzat
    Jin, Rashid Mad
    Roozbahani, Fatemeh
    Khan, Tareef Hayat
    [J]. MATERIALS AND MANUFACTURING PROCESSES, 2015, 30 (03) : 273 - 278
  • [46] Biological evaluation of the effects of Hyaluronic acid on Poly (3-hydroxybutyrate) based Electrospun Nanocomposite scaffolds for cartilage tissue engineering application
    Nikbakht, Mohammad
    Karbasi, Saeed
    Rezayat, Seyed Mahdi
    [J]. MATERIALS TECHNOLOGY, 2020, 35 (03) : 141 - 151
  • [47] Enzymatically biomineralized chitosan scaffolds for tissue-engineering applications
    Dash, Mamoni
    Samal, Sangram K.
    Douglas, Timothy E. L.
    Schaubroeck, David
    Leeuwenburgh, Sander C.
    Van der Voort, Pascal
    Declercq, Heidi A.
    Dubruel, Peter
    [J]. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2017, 11 (05) : 1500 - 1513
  • [48] Magnesium incorporated chitosan based scaffolds for tissue engineering applications
    Adhikari, Udhab
    Rijal, Nava P.
    Khanal, Shalil
    Pai, Devdas
    Sankar, Jagannathan
    Bhattarai, Narayan
    [J]. BIOACTIVE MATERIALS, 2016, 1 (02) : 132 - 139
  • [49] Effects of multi-wall carbon nanotubes on structural and mechanical properties of poly(3-hydroxybutyrate)/chitosan electrospun scaffolds for cartilage tissue engineering
    Karbasi, Saeed
    Alizadeh, Zahra Mohammad
    [J]. BULLETIN OF MATERIALS SCIENCE, 2017, 40 (06) : 1247 - 1253
  • [50] Effects of multi-wall carbon nanotubes on structural and mechanical properties of poly(3-hydroxybutyrate)/chitosan electrospun scaffolds for cartilage tissue engineering
    Saeed Karbasi
    Zahra Mohammad Alizadeh
    [J]. Bulletin of Materials Science, 2017, 40 : 1247 - 1253