1,974
Views
23
CrossRef citations to date
0
Altmetric
Editorial

Novel alternative therapy for spinal tuberculosis during surgery: reconstructing with anti-tuberculosis bioactivity implants

, PhD, , PhD, , PhD, , MD, , PhD & , PhD

Bibliography

  • WHO. World Health Organization, Global tuberculosis report 2013. World Health Organization; Geneva, Switzerland; 2013
  • Garg RK, Somvanshi DS. Spinal tuberculosis: a review. J Spinal Cord Med 2011;34(5):440-54
  • Jain AK, Dhammi IK. Tuberculosis of the spine: a review. Clin Orthop Relat Res 2007;460:39-49
  • Suárez-García I, Noguerado A. Drug treatment of multidrug-resistant osteoarticular tuberculosis: a systematic literature review. Int J Infect Dis 2012;16(11):e774-8
  • Wang Z, Ge Z, Jin W, et al. Treatment of spinal tuberculosis with ultrashort-course chemotherapy in conjunction with partial excision of pathologic vertebrae. Spine J 2007;7(6):671-81
  • Weisz RD, Errico TJ. Spinal infections. Diagnosis and treatment. Bull Hosp Jt Dis 2000;59(1):40-6
  • Christodoulou AG, Givissis P, Karataglis D, et al. Treatment of tuberculous spondylitis with anterior stabilization and titanium cage. Clin Orthop Relat Res 2006;444:60-5
  • Jun W, Yi-Jun K, Fei C, et al. Application of an antibiotic crescent-shaped polymethylmethacrylate strut in thoracic vertebral tuberculosis. Turk Neurosurg 2013;23(1):107-12
  • Korovessis P, Petsinis G, Koureas G, et al. Anterior surgery with insertion of titanium mesh cage and posterior instrumented fusion performed sequentially on the same day under one anesthesia for septic spondylitis of thoracolumbar spine: is the use of titanium mesh cages safe? Spine (Phila Pa 1976) 2006;31(9):1014-19
  • Kanayama M, Cunningham BW, Haggerty CJ, et al. In vitro biomechanical investigation of the stability and stress-shielding effect of lumbar interbody fusion devices. J Neurosurg 2000;93(2 Suppl):259-65
  • Bettencourt A, Almeida AJ. Poly(methyl methacrylate) particulate carriers in drug delivery. J Microencapsul 2012;29(4):353-67
  • Tang J, Hu JF, Guo WC, et al. Research and application of absorbable screw in orthopedics: a clinical review comparing PDLLA screw with metal screw in patients with simple medial malleolus fracture. Chin J Traumatol 2013;16(1):27-30
  • Nazhat SN, Kellomäki M, Törmälä P, et al. Dynamic mechaniacal characterization of biodegradable composites of hydroxyapatite and polylactides. J Biomed Mater Res 2001;58(4):335-43
  • Bahna P, Dvorak T, Hanna H, et al. Orthopaedic metal devices coated with a novel antisepticdye for the prevention of bacterial infections. Int J Antimicrob Agents 2007;29:593-6
  • Norowski PA Jr, Bumgardner JD. Biomaterial and antibiotic strategies for peri-implantitis: a review. J Biomed Mater Res B Appl Biomater 2009;88(2):530-43
  • Agarwal S, Gupta A, Grevious M, et al. Use of resorbable implants for mandibular fixation: a systematic review. J Craniofac Surg 2009;20(2):331-9
  • Cai K, Yao K, Yang Z, et al. Histological study of surface modified three dimensional poly (D, L-lactic acid) scaffolds with chitosan in vivo. J Mater Sci Mater Med 2007;18(10):2017-24
  • Ding M, Røjskjaer J, Cheng L, et al. The effects of a novel-reinforced bone substitute and Colloss®E on bone defect healing in sheep. J Biomed Mater Res B Appl Biomater 2012;100(7):1826-35
  • Navarro M, Michiardi A, Castaño O, et al. Biomaterials in orthopaedics. J R Soc Interface 2008;5(27):1137-58
  • Schmidmaier G, Lucke M, Wildemann B, et al. Prophylaxis and treatment of implant-related infections by antibiotic-coated implants: a review. Injury 2006;37(2):105-12
  • Vester H, Wildemann B, Schmidmaier G, et al. Gentamycin delivered from a PDLLA coating of metallic implants: in vivo and in vitro characterisation for local prophylaxis of implant-related osteomyelitis. Injury 2010;41(10):1053-9
  • Uskoković V, Hoover C, Vukomanović M, et al. Osteogenic and antimicrobial nanoparticulate calcium phosphate and poly-(D,L-lactide-co-glycolide) powders for the treatment of osteomyelitis. Mater Sci Eng C Mater Biol Appl 2013;33(6):3362-73
  • Degirmenbasi N, Kalyon DM, Birinci E. Biocomposites of nanohydroxyapatite with collagen and poly(vinyl alcohol). Colloids Surf B Biointerfaces 2006;48(1):42-9
  • Thomas V, Jagani S, Johnson K, et al. Electrospun bioactive nanocomposite scaffolds of polycaprolactone and nanohydroxyapatite for bone tissue engineering. J Nanosci Nanotechnol 2006;6(2):487-93
  • Yunoki S, Marukawa E, Ikoma T, et al. Effect of collagen fibril formation on bioresorbability of hydroxyapatite/collagen composites. J Mater Sci Mater Med 2007;18(11):2179-83
  • Hu Q, Li B, Wang M, et al. Preparation and characterization of biodegradable chitosan/hydroxyapatite nanocomposite rods via in situ hybridization: a potential material as internal fixation of bone fracture. Biomaterials 2004;25(5):779-85
  • Nukavarapu SP, Kumbar SG, Brown JL, et al. Polyphosphazene/nano-hydroxyapatite composite microsphere scaffolds for bone tissue engineering. Biomacromolecules 2008;9(7):1818-25
  • Bose S, Tarafder S. Calcium phosphate ceramic systems in growth factor and drug delivery for bone tissue engineering: a review. Acta Biomater 2012;8(4):1401-21
  • Hassan MA, Ahmed IS, Campbell P, et al. Enhanced gene transfection using calcium phosphate co-precipitates and low-intensity pulsed ultrasound. Eur J Pharm Sci 2012;47(4):768-73
  • Kolhe S, Parikh K. Application of nanotechnology in cancer: a review. Int J Bioinform Res Appl 2012;8(1-2):112-25
  • Fox K, Tran PA, Tran N. Recent advances in research applications of nanophase hydroxyapatite. Chemphyschem 2012;13(10):2495-506
  • Jiang JL, Li YF, Fang TL, et al. Vancomycin-loaded nano-hydroxyapatite pellets to treat MRSA-induced chronic osteomyelitis with bone defect in rabbits. Inflamm Res 2012;61(3):207-15
  • Hasegawa S, Neo M, Tamura J, et al. In vivo evaluation of a porous hydroxyapatite/poly-DL-lactide composite for bone tissue engineering. J Biomed Mater Res A 2007;81(4):930-8
  • Jensen T, Jakobsen T, Baas J, et al. Hydroxyapatite nanoparticles in poly-D,L-lactic acid coatings on porous titanium implants conducts bone formation. J Biomed Mater Res A 2010;95(3):665-72
  • Ronca A, Ambrosio L, Grijpma DW. Design of porous three-dimensional PDLLA/nano-hap composite scaffolds using stereolithography. J Appl Biomater Funct Mater 2012;10(3):249-58
  • Ravelingien M, Mullens S, Luyten J, et al. Vancomycin release from poly(D,L-lactic acid) spray-coated hydroxyapatite fibers. Eur J Pharm Biopharm 2010;76(3):366-70
  • Chen L, Tang CY, Tsui CP, et al. Mechanical properties and in vitro evaluation of bioactivity and degradation of dexamethasone releasing poly-d-l-lactide/nano-hydroxyapatite composite scaffolds. J Mech Behav Biomed Mater 2013;22:41-50
  • Chen L, Tang CY, Chen DZ, et al. Fabrication and characterization of poly-D-L-lactide/nano-hydroxyapatite composite scaffolds with poly (ethylene glycol) coating and dexamethasone releasing. Compos Sci Technol 2011;71(16):1842-9
  • Lee JY, Choi B, Wu B, et al. Customized biomimetic scaffolds created by indirect three-dimensional printing for tissue engineering. Biofabrication 2013;5(4):045003
  • Lee YB, Polio S, Lee W, et al. Bio-printing of collagen and VEGF-releasing fibrin gel scaffolds for neural stem cell culture. Exp Neurol 2010;223(2):645-52
  • Lee M, Dunn JC, Wu BM. Scaffold fabrication by indirect three-dimensional printing. Biomaterials 2005;26(20):4281-9
  • Huang W, Zheng Q, Sun W, et al. Levofloxacin implants with predefined microstructure fabricated by three-dimensional printing technique. Int J Pharm 2007;339(1-2):33-8

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.