Skip to main content
Erschienen in: Lasers in Medical Science 1/2014

01.01.2014 | Original Article

The efficacy of the use of IR laser phototherapy associated to biphasic ceramic graft and guided bone regeneration on surgical fractures treated with miniplates: a histological and histomorphometric study on rabbits

verfasst von: Antonio L. B. Pinheiro, Gilberth Tadeu Santos Aciole, Thais Andrade Ramos, Tayná Assunção Gonzalez, Laís Nogueira da Silva, Luiz G. Pinheiro Soares, Jouber Mateus Santos Aciole, Jean Nunes dos Santos

Erschienen in: Lasers in Medical Science | Ausgabe 1/2014

Einloggen, um Zugang zu erhalten

Abstracts

The aim of the present study was to assess, by light microscopy and histomorphometry, the repair of surgical fractures fixed with internal rigid fixation (IRF) treated or not with IR laser (λ780 nm, 50 mW, 4 × 4 J/cm2 = 16 J/cm2, ϕ = 0.5cm2, CW) associated or not to the use of hydroxyapatite and guided bone regeneration. Surgical tibial fractures were created under general anesthesia on 15 rabbits that were divided into 5 groups, maintained on individual cages, at day/night cycle, fed with solid laboratory pelted diet, and had water ad libidum. The fractures in groups II, III, IV, and V were fixed with miniplates. Animals in groups III and V were grafted with hydroxyapatite and GBR technique used. Animals in groups IV and V were irradiated at every other day during two weeks (4 × 4 J/cm2, 16 J/cm2 = 112 J/cm2). Observation time was that of 30 days. After animal death, specimens were taken, routinely processed to wax, cut and stained with HA and Sirius red, and used for histological assessment. The results of both analyses showed a better bone repair on all irradiated subjects especially when the biomaterial and GBR were used. In conclusion, the results of the present investigation are important clinically as they are suggestive that the association of hydroxyapatite, and laser light resulted in a positive and significant repair of complete tibial fractures treated with miniplates.
Fußnoten
1
2 mg/kg Acepran®, 0.2 % Univet S.A, Cambuci, SP, Brazil.
 
2
Ketalar®, 50 mg/ml 0.4 ml/kg, Lab. Parke Davis Ltda, São Paulo, SP, Brazil.
 
3
Rompum®, 20 mg/ml 0.2 ml/kg, Lab. Bayer Health Care S.A, São Paulo, SP, Brazil.
 
4
Moyco Union Broach, York, PA, USA.
 
5
Sistema 2.0 PROMM®, Comércio de Implantes Cirúrgicos Ltda. Porto Alegre, RS. Brazil.
 
6
GenPhos® HATCP. BAUMER®, Mogi Mirim, SP, Brazil.
 
7
Gen-derm®, BAUMER®, Mogi Mirim, SP, Brazil.
 
8
The manufacturer calibrated the equipment before the experimentation.
 
9
4–0 polyglactin and 4–0 nylon, TRUSINTH®, Sutures India Pvt Ltda. Bangalore, Karnataka, India.
 
10
Pentabiótico®, peniciline, streptomicine, 20.000 UI 0.2 ml/kg IM, Lab.Forte Dogde Saúde Animal Ltda, Campinas, SP, Brazil .and Banamine®, flunixin meglumine, 10 mg/ml, 0.1 ml/kg IM, Intervet Shering-Plough Animal Health, Cruzeiro, SP, Brazil.
 
11
11 Bueler®, Isomet TM1000; Markham, Ontario, Canada .
 
12
AxioStar®, Zeiss, Germany.
 
13
Belo Horizonte, MG, Brazil.
 
Literatur
1.
Zurück zum Zitat Lopes CB, Pacheco MT, Silveira-Junior L, Duarte J et al (2007) The effect of the association of NIR laser therapy BMPs, and guided bone regeneration on tibial fractures treated with wire osteosynthesis: Raman spectroscopy study. J Photochem Photobiol B 89:125–130PubMedCrossRef Lopes CB, Pacheco MT, Silveira-Junior L, Duarte J et al (2007) The effect of the association of NIR laser therapy BMPs, and guided bone regeneration on tibial fractures treated with wire osteosynthesis: Raman spectroscopy study. J Photochem Photobiol B 89:125–130PubMedCrossRef
2.
Zurück zum Zitat Lopes CB, Pacheco MTT, Silveira-Junior L et al (2010) The effect of the association of near infrared laser therapy, bone morphogenetic proteins, and guided bone regeneration on tibial fractures treated with internal rigid fixation: a Raman spectroscopic study. J Biomed Mat Res Part A 94:1257–1263 Lopes CB, Pacheco MTT, Silveira-Junior L et al (2010) The effect of the association of near infrared laser therapy, bone morphogenetic proteins, and guided bone regeneration on tibial fractures treated with internal rigid fixation: a Raman spectroscopic study. J Biomed Mat Res Part A 94:1257–1263
3.
Zurück zum Zitat Pinheiro ALB, Lopes CB, Pacheco MTT et al (2010) Raman spectroscopy validation of DIAGNOdent-assisted fluorescence readings on tibial fractures treated with laser phototherapy, BMPs, guided bone regeneration, and miniplates. Photomed Laser Surg 28:89–97CrossRef Pinheiro ALB, Lopes CB, Pacheco MTT et al (2010) Raman spectroscopy validation of DIAGNOdent-assisted fluorescence readings on tibial fractures treated with laser phototherapy, BMPs, guided bone regeneration, and miniplates. Photomed Laser Surg 28:89–97CrossRef
4.
Zurück zum Zitat Carvalho FB, Aciole GTS, Aciole JMS et al (2011) Assessment of bone healing on tibial fractures treated with wire osteosynthesis associated or not with infrared laser light and Biphasic ceramic bone graft (HATCP) and guided bone regeneration (GBR): Raman spectroscopy study. Proceedings—SPIE 7887: 7887OT-1-7887OT-6 Carvalho FB, Aciole GTS, Aciole JMS et al (2011) Assessment of bone healing on tibial fractures treated with wire osteosynthesis associated or not with infrared laser light and Biphasic ceramic bone graft (HATCP) and guided bone regeneration (GBR): Raman spectroscopy study. Proceedings—SPIE 7887: 7887OT-1-7887OT-6
5.
Zurück zum Zitat Torres CS, Santos JN, Monteiro JSC et al (2008) Does the use of laser photobiomodulation, bone morphogenetic proteins, and guided bone regeneration improve the outcome of autologous bone grafts? An in vivo study in a rodent model. Photomed Laser Surg 26:371–377PubMedCrossRef Torres CS, Santos JN, Monteiro JSC et al (2008) Does the use of laser photobiomodulation, bone morphogenetic proteins, and guided bone regeneration improve the outcome of autologous bone grafts? An in vivo study in a rodent model. Photomed Laser Surg 26:371–377PubMedCrossRef
6.
Zurück zum Zitat Pinheiro ALB, Gerbi MEMM (2006) Photoengineering of bone process. Photomed Laser Surg 24(2):169–178PubMedCrossRef Pinheiro ALB, Gerbi MEMM (2006) Photoengineering of bone process. Photomed Laser Surg 24(2):169–178PubMedCrossRef
7.
Zurück zum Zitat Pinheiro ALB, Gerbi MEMM, Limeira Junior FA et al (2009) Bone repair following bone grafting hydroxyapatite guided bone regeneration and infra-red laser photobiomodulation: a histological study in a rodent model. Lasers Med Sci 24:234–240PubMedCrossRef Pinheiro ALB, Gerbi MEMM, Limeira Junior FA et al (2009) Bone repair following bone grafting hydroxyapatite guided bone regeneration and infra-red laser photobiomodulation: a histological study in a rodent model. Lasers Med Sci 24:234–240PubMedCrossRef
8.
Zurück zum Zitat Pinheiro ALB, Gerbi MEMM, PonziI EAC et al (2008) Infrared laser light further improves bone healing when associated with bone morphogenetic proteins and guided bone regeneration: an in vivo study in a rodent model. Photomed Laser Surg 26:167–174PubMedCrossRef Pinheiro ALB, Gerbi MEMM, PonziI EAC et al (2008) Infrared laser light further improves bone healing when associated with bone morphogenetic proteins and guided bone regeneration: an in vivo study in a rodent model. Photomed Laser Surg 26:167–174PubMedCrossRef
9.
Zurück zum Zitat Gerbi MEMM, Pinheiro ALB, Marzola C et al (2005) Assessment of bone repair associated with the use of organic bovine bone and membrane irradiated at 830 nm. Photomed Laser Surg 23:382–388PubMedCrossRef Gerbi MEMM, Pinheiro ALB, Marzola C et al (2005) Assessment of bone repair associated with the use of organic bovine bone and membrane irradiated at 830 nm. Photomed Laser Surg 23:382–388PubMedCrossRef
10.
Zurück zum Zitat Pinheiro ALB, Limeira Junior FA, Gerbi MEMM et al (2003) Effect of 830 nm laser light on repair of bone defects grafted with organic bovine bone and decalcifield cortical osseous membrane. J Clin Laser Med Surg 21:383–388CrossRef Pinheiro ALB, Limeira Junior FA, Gerbi MEMM et al (2003) Effect of 830 nm laser light on repair of bone defects grafted with organic bovine bone and decalcifield cortical osseous membrane. J Clin Laser Med Surg 21:383–388CrossRef
11.
Zurück zum Zitat Pinheiro ALB, Limeira Junior FA, Gerbi MEMM et al (2003) Effect of 830 nm laser light on the repair of bone defects grafted with inorganic bovine bone and decalcifield cortical osseus membrane. J Clin Laser Med Surg 21:357–362CrossRef Pinheiro ALB, Limeira Junior FA, Gerbi MEMM et al (2003) Effect of 830 nm laser light on the repair of bone defects grafted with inorganic bovine bone and decalcifield cortical osseus membrane. J Clin Laser Med Surg 21:357–362CrossRef
12.
Zurück zum Zitat Pinheiro ALB, Limeira Junior FA, Ramalho LMP et al (2003) Effect of low level laser therapy on the repair of bone defects grafted with inorganic bovine bone. Br Dent J 14:177–181 Pinheiro ALB, Limeira Junior FA, Ramalho LMP et al (2003) Effect of low level laser therapy on the repair of bone defects grafted with inorganic bovine bone. Br Dent J 14:177–181
13.
Zurück zum Zitat Lopes CB, Pinheiro ALB, Sathaiah S et al (2007) Infrared laser photobiomodulation (830 nm) on bone tissue around dental implants: a Raman spectroscopy and scanning eletronic microscopy study in rabbits. Photomed Laser Surg 25:96–101PubMedCrossRef Lopes CB, Pinheiro ALB, Sathaiah S et al (2007) Infrared laser photobiomodulation (830 nm) on bone tissue around dental implants: a Raman spectroscopy and scanning eletronic microscopy study in rabbits. Photomed Laser Surg 25:96–101PubMedCrossRef
14.
Zurück zum Zitat Lopes CB, Pinheiro ALB, Sathaiah S et al (2005) Infrared laser light reduces loading time of dental implants: a Raman spectroscopic study. Photomed Laser Surg 23:27–31PubMedCrossRef Lopes CB, Pinheiro ALB, Sathaiah S et al (2005) Infrared laser light reduces loading time of dental implants: a Raman spectroscopic study. Photomed Laser Surg 23:27–31PubMedCrossRef
15.
Zurück zum Zitat Pinheiro ALB, Oliveira MAM, Martins PPM (2001) Biomodulação da Cicatrização Óssea pós-implantar com o uso da Laserterapia não-cirúrgica: Estudo por microscopia eletrônica de varredura. Rev FOUFBA 22:12–19 Pinheiro ALB, Oliveira MAM, Martins PPM (2001) Biomodulação da Cicatrização Óssea pós-implantar com o uso da Laserterapia não-cirúrgica: Estudo por microscopia eletrônica de varredura. Rev FOUFBA 22:12–19
16.
Zurück zum Zitat Weber JBB, Pinheiro ALB, Oliveira MG et al (2006) Laser therapy improves healing of bone defects submitted to autogenos bone graft. Photomed Laser Surg 24(1):38–44PubMedCrossRef Weber JBB, Pinheiro ALB, Oliveira MG et al (2006) Laser therapy improves healing of bone defects submitted to autogenos bone graft. Photomed Laser Surg 24(1):38–44PubMedCrossRef
17.
Zurück zum Zitat Pinheiro ALB, Oliveira MG, Martins PPM et al (2001) Biomodulatory effects of LLLT on bone regeneration. Laser Ther 13:73–79CrossRef Pinheiro ALB, Oliveira MG, Martins PPM et al (2001) Biomodulatory effects of LLLT on bone regeneration. Laser Ther 13:73–79CrossRef
18.
Zurück zum Zitat Gerbi MEMM, Marques AMC, Ramalho LMP et al (2008) Infrared laser light further improves bone healing when associated with bone morphogenic proteins: an in vivo study in a rodent model. Photomed Laser Surg 26:55–60PubMedCrossRef Gerbi MEMM, Marques AMC, Ramalho LMP et al (2008) Infrared laser light further improves bone healing when associated with bone morphogenic proteins: an in vivo study in a rodent model. Photomed Laser Surg 26:55–60PubMedCrossRef
19.
Zurück zum Zitat Gerbi MEMM, Pinheiro ALB, Ramalho LMP (2008) Effect of IR laser photobiomodulation on the repair of bone defects grafted with organic bovine bone. Lasers Med Sci 23:313–317CrossRef Gerbi MEMM, Pinheiro ALB, Ramalho LMP (2008) Effect of IR laser photobiomodulation on the repair of bone defects grafted with organic bovine bone. Lasers Med Sci 23:313–317CrossRef
Metadaten
Titel
The efficacy of the use of IR laser phototherapy associated to biphasic ceramic graft and guided bone regeneration on surgical fractures treated with miniplates: a histological and histomorphometric study on rabbits
verfasst von
Antonio L. B. Pinheiro
Gilberth Tadeu Santos Aciole
Thais Andrade Ramos
Tayná Assunção Gonzalez
Laís Nogueira da Silva
Luiz G. Pinheiro Soares
Jouber Mateus Santos Aciole
Jean Nunes dos Santos
Publikationsdatum
01.01.2014
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 1/2014
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-013-1339-9

Weitere Artikel der Ausgabe 1/2014

Lasers in Medical Science 1/2014 Zur Ausgabe