Obtaining a fused PLA-calcium phosphate-tobramycin-based filament for 3D printing with potential antimicrobial application

被引:4
作者
Lopera, Alex A. [1 ,2 ]
Bezzon, Vinicius D. N. [3 ]
Ospina, Victoria [4 ]
Higuita-Castro, Jorge L. [4 ]
Ramirez, Francisco J. [5 ]
Ferraz, Humberto G. [6 ]
Orlando, Marcos T. A. [3 ]
Paucar, Carlos G. [1 ]
Robledo, Sara M. [4 ]
Garcia, Claudia P. [1 ]
机构
[1] Univ Nacl Colombia, Escuela Fis, Grp Cerem & Vitreos, Calle 59A-63-20, Medellin 050034, Colombia
[2] Univ Nacl Colombia, Direcc Acad, Grp Nanoestruct & Fis Aplicada NANOUPAR, Km 9 Via Valledupar La Paz, La Paz 200001, Colombia
[3] Univ Fed Espirito Santo, Ctr Ciencias Exatas, Grp Fis Aplicada, Dept Fis, Av Fernando Ferrari 514, BR-29075910 Vitoria, ES, Brazil
[4] Univ Antioquia, Fac Med, PECET Inst Invest Med, Calle 70 52-21, Medellin 050010, Colombia
[5] Inst Univ Pascual Bravo, Fac Engn, Mech Dept, Calle 73 73A-226, Medellin 050034, Colombia
[6] Univ Sao Paulo, Fac Ciencias Farmaceut, Dept Farm, Lab Desenvolvimento & Inovacao Farmacotecn DEINFA, BR-05508080 Sao Paulo, SP, Brazil
关键词
3D printing; Filaments; Calcium phosphates; Tobramycin; Scaffolds; Antimicrobial; OSTEOCONDUCTIVITY; REFINEMENT;
D O I
10.1007/s43207-022-00255-4
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Many efforts in the tissue engineering field have been devoted to producing biomedical devices with several physico-chemical properties that could promote an increase in the quality of therapeutic treatments. Thus, 3D printing is an efficient method which facilitates manufacturing high quality products to be used as medical devices. However, high-performance materials are required for obtaining products that are able to be 3D printed to attend the biomedical concerns. In this work, fused PLA-calcium phosphate-tobramycin-based filaments with antimicrobial properties were produced. X-ray powder diffraction, Fourier transform infrared spectroscopy and thermal analysis were performed to characterize the pure compounds as well as the composite filaments, revealing that the drug is preserved into the filaments by the implemented methodology, even after the hot extrusion procedure. The filaments and the printed pieces presented great antimicrobial effect and a controlled-release profile was also observed by the drug-release assays for the filaments produced, thereby indicating this material as a promising candidate to be used for implantable medical devices in the future. [GRAPHICS] .
引用
收藏
页码:169 / 182
页数:14
相关论文
共 49 条
[41]   A novel method of creating thermoplastic chitosan blends to produce cell scaffolds by FDM additive manufacturing [J].
Tylingo, Robert ;
Kempa, Piotr ;
Banach-Kopec, Adrianna ;
Mania, Szymon .
CARBOHYDRATE POLYMERS, 2022, 280
[42]   Evaluation of bone regeneration potential of injectable extracellular matrix (ECM) from porcine dermis loaded with biphasic calcium phosphate (BCP) powder [J].
Ventura, Reiza D. ;
Padalhin, Andrew R. ;
Kim, Boram ;
Park, MyoungKi ;
Lee, Byong Taek .
MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 110
[43]   Preparation and characterization of hot-melt extruded polycaprolactone-based filaments intended for 3D-printing of tablets [J].
Viidik, Laura ;
Vesala, Jemina ;
Laitinen, Riikka ;
Korhonen, Ossi ;
Ketolainen, Jarkko ;
Aruva, Jaan ;
Kirsimae, Kalle ;
Kogermann, Karin ;
Heinamaki, Jyrki ;
Laidmae, Ivo ;
Ervasti, Tuomas .
EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2021, 158
[44]   Controlling Antibiotic Release from Polymethylmethacrylate Bone Cement [J].
Wall, Victoria ;
Nguyen, Thi-Hiep ;
Nguyen, Nghi ;
Tran, Phong A. .
BIOMEDICINES, 2021, 9 (01)
[45]   3D printing of bone tissue engineering scaffolds [J].
Wang, Chong ;
Huang, Wei ;
Zhou, Yu ;
He, Libing ;
He, Zhi ;
Chen, Ziling ;
He, Xiao ;
Tian, Shuo ;
Liao, Jiaming ;
Lu, Bingheng ;
Wei, Yen ;
Wang, Min .
BIOACTIVE MATERIALS, 2020, 5 (01) :82-91
[46]   Three-Dimensional Printing of Drug-Eluting Implants: Preparation of an Antimicrobial Polylactide Feedstock Material [J].
Water, Jorrit Jeroen ;
Bohr, Adam ;
Boetker, Johan ;
Aho, Johanna ;
Sandler, Niklas ;
Nielsen, Hanne Morck ;
Rantanen, Jukka .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2015, 104 (03) :1099-1107
[47]   New developments in diagnosis and treatment of infection in orthopedic implants [J].
Widmer, AF .
CLINICAL INFECTIOUS DISEASES, 2001, 33 :S94-S106
[48]   Osteoconductivity and biodegradation of synthetic bone substitutes with different tricalcium phosphate contents in rabbits [J].
Yang, Cheryl ;
Unursaikhan, Otgonbayar ;
Lee, Jung-Seok ;
Jung, Ui-Won ;
Kim, Chang-Sung ;
Choi, Seong-Ho .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2014, 102 (01) :80-88
[49]   Additive manufacturing of polymeric composites from material processing to structural design [J].
Yuan, Shangqin ;
Li, Shaoying ;
Zhu, Jihong ;
Tang, Yulong .
COMPOSITES PART B-ENGINEERING, 2021, 219