Extracellular matrix coated three-dimensional-printed polycaprolactone scaffolds containing curcumin for cartilage tissue engineering applications

被引:5
作者
Aslani, Reza [1 ]
Mirzadeh, Motahareh [2 ]
Poursamar, Seyed Ali [2 ]
Rabiei, Abbas Ali [1 ]
Setayeshmehr, Mohsen [1 ]
机构
[1] Isfahan Univ Med Sci, Sch Med, Dept Anat Sci, Azadi Sq, Esfahan 8174673461, Iran
[2] Isfahan Univ Med Sci, Sch Adv Technol Med, Dept Biomat Nanotechnol & Tissue Engn, Esfahan, Iran
关键词
Three-dimensional-printing; polycaprolactone; extracellular matrix; genipin; curcumin; MESENCHYMAL STEM-CELLS; ARTICULAR-CARTILAGE; STROMAL CELLS; CHONDROGENIC DIFFERENTIATION; MECHANICAL-PROPERTIES; MICROSPHERES; CHONDROCYTES; POLYMER; PCL; CYTOCOMPATIBILITY;
D O I
10.1177/08839115241260060
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Extracellular matrix (ECM) is widely used for clinical purposes in tissue engineering (TE). Since ECM does not have favorable mechanical properties, its use has been limited. Therefore, it is helpful to use synthetic polymers such as polycaprolactone (PCL) to improve the mechanical properties of ECM-based scaffolds. PCL scaffolds were prepared via the three-dimensional (3D) printing method. Cartilaginous ECM was obtained from bovine femur, and then it was decellularized and solubilized. PCL scaffolds were functionalized using 1,6-hexanediamine; consequently, the scaffolds were coated with solubilized decellularized ECM (SDECM) using two types of crosslinkers; namely, N-(3-dimethylaminopropyl)-N-ethylcarbodiimide hydrochloride/N-hydroxysuccinimide (EDC/NHS) and genipin. Genipin-crosslinked SDECM-coated (PCL/ECM-Gen) scaffolds and EDC/NHS-crosslinked SDECM-coated (PCL/ECM-EN) scaffolds were characterized by different tests. Following loading the curcumin (Cur) on the scaffolds, the Cur release rate was investigated. Finally, human chondrocyte cells were cultured on the scaffolds to explore cell viability, cell attachment, and histological studies. Following functionalization via amine groups, 5% SDECM was used to coat the scaffolds, and this increased the wettability and cell viability of the PCL. Genipin crosslinked and coated the SDECM more efficiently compared to the EDC/NHS and led to lower porosity, water absorption capacity, degradation rate, higher cell proliferation, and cell attachment. Genipin-crosslinked Cur-loaded (PCL/ECM-Gen + Cur) scaffolds showed higher cell viability but lower antibacterial activity compared to EDC/NHS-crosslinked Cur-loaded (PCL/ECM-EN + Cur) scaffolds, which may indicate EDC/NHS-induced cytotoxicity. This study elucidates the value of PCL/ECM-Gen + Cur scaffolds as highly biocompatible scaffolds that can be considered a promising tool for cartilage TE applications.
引用
收藏
页码:389 / 413
页数:25
相关论文
共 80 条
[1]   Comparative study of keratin extraction from human hair [J].
Agarwal, Vipul ;
Panicker, Arpana Gopi ;
Indrakumar, Sushma ;
Chatterjee, Kaushik .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 133 :382-390
[2]   Novel electrospun nanofibers of modified gelatin-tyrosine in cartilage tissue engineering [J].
Agheb, Maria ;
Dinari, Mohammad ;
Rafienia, Mohammad ;
Salehi, Hossein .
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2017, 71 :240-251
[3]   Fibrin hydrogels functionalized with cartilage extracellular matrix and incorporating freshly isolated stromal cells as an injectable for cartilage regeneration [J].
Almeida, H. V. ;
Eswaramoorthy, R. ;
Cunniffe, G. M. ;
Buckley, C. T. ;
O'Brien, F. J. ;
Kelly, Dj. .
ACTA BIOMATERIALIA, 2016, 36 :55-62
[4]  
Ansar Malek Masoud, 2012, Adv Biomed Res, V1, P24, DOI 10.4103/2277-9175.98145
[5]   Dual functional construct containing kartogenin releasing microtissues and curcumin for cartilage regeneration [J].
Asgari, Negin ;
Bagheri, Fatemeh ;
Eslaminejad, Mohamadreza Baghaban ;
Ghanian, Mohammad Hossein ;
Sayahpour, Forogh Azam ;
Ghafari, Amir Mohammad .
STEM CELL RESEARCH & THERAPY, 2020, 11 (01)
[6]   Magnetic nanoparticles decorated with PEGylated curcumin as dual targeted drug delivery: Synthesis, toxicity and biocompatibility study [J].
Ayubi, Morteza ;
Karimi, Mohammad ;
Abdpour, Shahin ;
Rostamizadeh, Kobra ;
Parsa, Maliheh ;
Zamani, Mostafa ;
Saedi, Arezo .
MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2019, 104
[7]   Approaching the compressive modulus of articular cartilage with a decellularized cartilage-based hydrogel [J].
Beck, Emily C. ;
Barragan, Marilyn ;
Tadros, Madeleine H. ;
Gehrke, Stevin H. ;
Detamore, Michael S. .
ACTA BIOMATERIALIA, 2016, 38 :94-105
[8]   Extracellular matrix scaffolds for cartilage and bone regeneration [J].
Benders, Kim E. M. ;
van Weeren, P. Rene ;
Badylak, Stephen F. ;
Saris, Daniel B. F. ;
Dhert, Wouter J. A. ;
Malda, Jos .
TRENDS IN BIOTECHNOLOGY, 2013, 31 (03) :169-176
[9]   Hydrogel screening approaches for bone and cartilage tissue regeneration [J].
Benmassaoud, Mohammed M. ;
Gultian, Kirstene A. ;
DiCerbo, Matthew ;
Vega, Sebastian L. .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 2020, 1460 (01) :25-42
[10]   Artificial decellularized extracellular matrix improves the regenerative capacity of adipose tissue derived stem cells on 3D printed polycaprolactone scaffolds [J].
Blum, Jana C. ;
Schenck, Thilo L. ;
Birt, Alexandra ;
Giunta, Riccardo E. ;
Wiggenhauser, Paul S. .
JOURNAL OF TISSUE ENGINEERING, 2021, 12