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Three-Dimensional Printing of Antibiotics-Loaded Poly-epsilon-Caprolactone/Poly(Lactic-Co-Glycolic acid) Scaffolds for Treatment of Chronic Osteomyelitis

Authors
Shim, Jin-HyungKim, Min-JooPark, Ju YoungPati, Ruby GuptaYun, Young-PilKim, Sung EunSong, Hae-RyongCho, Dong-Woo
Issue Date
10월-2015
Publisher
KOREAN TISSUE ENGINEERING REGENERATIVE MEDICINE SOC
Keywords
Osteomyelitis; Three-dimensional printing technology; Antibiotics; Biodegradable scaffold
Citation
TISSUE ENGINEERING AND REGENERATIVE MEDICINE, v.12, no.5, pp.283 - 293
Indexed
SCIE
SCOPUS
KCI
Journal Title
TISSUE ENGINEERING AND REGENERATIVE MEDICINE
Volume
12
Number
5
Start Page
283
End Page
293
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/92327
DOI
10.1007/s13770-015-0014-6
ISSN
1738-2696
Abstract
Osteomyelitis, an infection and inflammation of bone marrow, often progresses to chronic stage because of delay in diagnosis and treatment. Once it becomes chronic, intravenous antibiotics therapy is no longer effective as swollen surrounding tissue interrupts blood flow into the infected tissue. In severe cases, debridement of the necrotic tissue becomes necessary to prevent further infection. In this study, for the first time, we produced three-dimensional (3D) printed antibiotics-loaded biodegradable poly-e-caprolactone/poly(lactic-co-glycolic acid) scaffold for treatment of chronic osteomyelitis. Subsequent bone regeneration in debrided site was also observed with the customized scaffolds fabricated using 3D printing. Tobramycin, one of the most widely used antibiotics in orthopedic surgery, was chosen due to its thermostable nature compliant to the heat-based fabrication conditions. In in vitro tests, antibacterial and anti-inflammatory effects and release profile of tobramycin from the scaffold were evaluated to verify the potential of our scaffold as a drug delivery system. In addition, in vivo efficacy of the developed drug loaded scaffolds for treatment of chronic osteomyelitis was also examined in a rat model.
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