Printed polylactic acid/akermanite composite scaffolds for bone tissue engineering; development and surface modification

被引:3
作者
Mostafa, Arab Eshagh Abadi [1 ]
Emadi, Rahmatollah [1 ]
Shirali, Danial [1 ]
Khodaei, Mohammad [2 ]
Emadi, Hosein [3 ]
Saboori, Abdollah [4 ,5 ]
机构
[1] Isfahan Univ Technol, Dept Mat Engn, Esfahan 8415683111, Iran
[2] Isfahan Univ Technol, Golpayegan Coll Engn, Mat Engn Grp, Golpayegan 8771767498, Iran
[3] Univ Tehran, Coll Engn, Sch Mech Engn, Tehran 1417614411, Iran
[4] Politecn Torino, Dept Management & Prod Engn, Corso Duca Abruzzi 24, I-10129 Turin, Italy
[5] Politecn Torino, Integrated Addit Mfg Ctr IAMPoliTo, Corso Castelfidardo 51, I-10129 Turin, Italy
关键词
3D printing; Nanocomposite scaffold; Polylactic acid; Akermanite; Bone tissue engineering; Alkaline surface modification; IN-VITRO BIOACTIVITY; POLY(LACTIC ACID); MECHANICAL-PROPERTIES; IONIC PRODUCTS; CELLS; BIOMATERIALS; OSTEOGENESIS; WETTABILITY; DEGRADATION; POROSITY;
D O I
10.1016/j.ijbiomac.2024.138097
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
The susceptibility of bone tissues to various factors such as ageing, accidents, and diseases has led to extensive tissue engineering research focusing on bone tissues. Hence, this research also aims to determine the optimal amount of Akermanite (AK) addition to the polylactic acid scaffold for bone tissue engineering applications, as well as the effects of surface modification on its properties. The Akermanite was synthesized using the sol-gel method. Then, composite scaffolds of polylactic acid, including 0, 10, 20, and 30 wt% AK, were printed via the fused deposition modelling (FDM) process. These scaffolds were labelled as PLA, 10 wt% AK, 20 wt% AK, and 30 wt% AK, respectively. The X-ray diffraction analysis confirmed the production of the AK high-purity phase. Cell viability tests on composite scaffolds confirmed non-toxicity, and cell adhesion improved with AK addition. Mechanical testing showed that the compressive strength of composite scaffolds increased by increasing the AK content of the composite. This study recommended the 20 wt% AK scaffold as the optimal composition for bone tissue engineering. The surface-modification of polylactic acid/AK composite scaffolds using sodium hydroxide showed that it can be suitable for advanced tissue structures and medical applications, contributing to advancements in tissue engineering and medical technology for improved bone treatments.
引用
收藏
页数:17
相关论文
共 91 条
[1]   Importance of melastatin-like transient receptor potential 7 and cations (magnesium, calcium) in human osteoblast-like cell proliferation [J].
Abed, E. ;
Moreau, R. .
CELL PROLIFERATION, 2007, 40 (06) :849-865
[2]   A review: silicate ceramic-polymer composite scaffold for bone tissue engineering [J].
Ahmadipour, Mohsen ;
Mohammadi, Hossein ;
Pang, Ai Ling ;
Arjmand, Mohammad ;
Ayode Otitoju, Tunmise ;
U. Okoye, Patrick ;
Rajitha, Beerelli .
INTERNATIONAL JOURNAL OF POLYMERIC MATERIALS AND POLYMERIC BIOMATERIALS, 2022, 71 (03) :180-195
[3]   Improvement of bioactivity with dual bioceramic incorporation to nanofibrous PCL scaffolds [J].
Altunordu, Gercem ;
Tezcaner, Aysen ;
Evis, Zafer ;
Keskin, Dilek .
MATERIALIA, 2023, 27
[4]   Effects of color mixing components on offset ink and printing process [J].
Aydemir, Cem ;
Yenidogan, Semiha ;
Karademir, Arif ;
Arman, Emine .
MATERIALS AND MANUFACTURING PROCESSES, 2017, 32 (11) :1310-1315
[5]   Coating biodegradable magnesium alloys with electrospun poly-L-lactic acid-akermanite-doxycycline nanofibers for enhanced biocompatibility, antibacterial activity, and corrosion resistance [J].
Bakhsheshi-Rad, Hamid Reza ;
Akbari, Mohsen ;
Ismail, Ahmad Fauzi ;
Aziz, Madzlan ;
Hadisi, Zhina ;
Pagan, Erik ;
Daroonparvar, Mohammadreza ;
Chen, Xiongbiao .
SURFACE & COATINGS TECHNOLOGY, 2019, 377
[6]   Additive manufacturing of PLA-Mg composite scaffolds for hard tissue engineering applications [J].
Bakhshi, Rasoul ;
Mohammadi-Zerankeshi, Meysam ;
Mehrabi-Dehdezi, Melika ;
Alizadeh, Reza ;
Labbaf, Sheyda ;
Abachi, Parvin .
JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, 2023, 138
[7]  
Belaid C., 2024, THESIS U MONTPELLIER, P103
[8]   Can bioactivity be tested in vitro with SBF solution? [J].
Bohner, Marc ;
Lemaitre, Jacques .
BIOMATERIALS, 2009, 30 (12) :2175-2179
[9]   Recent advances in modified poly (lactic acid) as tissue engineering materials [J].
Castaneda-Rodriguez, Samanta ;
Gonzalez-Torres, Maykel ;
Ribas-Aparicio, Rosa Maria ;
Del Prado-Audelo, Maria Luisa ;
Leyva-Gomez, Gerardo ;
Gurer, Eda Soenmez ;
Sharifi-Rad, Javad .
JOURNAL OF BIOLOGICAL ENGINEERING, 2023, 17 (01)
[10]   Hydroxyapatite nucleation and growth mechanism on electrospun fibers functionalized with different chemical groups and their combinations [J].
Cui, Wenguo ;
Li, Xiaohong ;
Xie, Chengying ;
Zhuang, Huihui ;
Zhou, Shaobing ;
Weng, Jie .
BIOMATERIALS, 2010, 31 (17) :4620-4629