Mandibular Distraksiyon Osteogenezinde Adjuvan Tedaviler: Hormonal ve Farmakolojik Ajanlar
Year 2024,
Volume: 3 Issue: 1, 32 - 42, 15.01.2024
Şeyma Kale
,
Berkan Altay
,
Elif Çoban
Abstract
Distraksiyon osteogenezi traksiyon uygulanarak birbirinden uzaklaştırılan kemik segmentlerinin arasında oluşan kallusun yeni
kemik formasyonuna dönüştüğü bir tekniktir ve maksillofasiyal bölgedeki çeşitli defektlerin tedavisinde kullanılır. Distraksiyon
tekniğinin yumuşak dokular üzerinde önemli avantajlara sahiptir. Ancak tedavi süresinin uzun olması önemli bir dezavantajdır.
Son yıllarda distraksiyon sürecini kısaltabilecek pek çok materyal ve metot üzerinde çalışmalar yapılmış, çeşitli hormonal
proteinler, farmakolojik ajanların distraksiyon osteogenezinde başarılı olabileceği gösterilmiştir. Bu derlemede mandibular
distraksiyon osteogenezinde araştırılan hormonal proteinlerin ve farmakolojik ajanların kapsamlı bir incelemesini sunduk.
References
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Tissue Eng. Appl. Maxillofac. Surg. periodontics List. Ill
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osteogenesis may allow faster distraction rates: a
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osteogenesis in rabbits. J. oral Maxillofac. Surg. 66, 905–
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bone formation in mandibular distraction osteogenesis.
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dental implants. J. Pineal Res. 45, 174–179 (2008).
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application on implant osseointegration. Clin. Implant
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osteogenesis of a dog model. J. Craniofac. Surg. 14, 417–
425 (2003).
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microsphere-encapsulated growth hormone on bony
consolidation in mandibular distraction osteogenesis in a
dog model. J. Craniofac. Surg. 15, 299–311 (2004).
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the effects of intermittent and continuous administration
of human parathyroid hormone (1–34) on rat bone. Bone
16, 477–484 (1995).
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New Bone Formation Promoted by Different Doses
of Recombinant Human Parathyroid Hormone during
Mandibular Distraction Osteogenesis. Plast. Reconstr.
Surg. 137, 347e-354e (2016).
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Hormone Treatment on Rapid Mandibular Distraction
Osteogenesis in Rabbits. J. Oral Maxillofac. Surg. 75,
1722–1731 (2017).
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adiponectin on bone regeneration following mandibular osteodistraction in rabbits. J. Orthop. Res. 29, 1081–1085
(2011).
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cartilaginous callus formation and angiogenesis. PLoS
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E. Effects of Recombinant Human Erythropoietin on
Mandibular Distraction Osteogenesis. J. Oral Maxillofac.
Surg. 67, 2337–2343 (2009).
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E318 (2008).
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562–565 (2007).
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Periodontol. 73, 813–822 (2002).
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Mandibles. J. Oral Maxillofac. Surg. 66, 2042–2049 (2008).
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1395–1400 (2011).
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Injections Into the Distraction Gap on New Bone Formation
and Distraction Rate on Distraction Osteogenesis. J.
Craniofac. Surg. 28, 2174–2178 (2017).
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Systemic Zoledronic Acid Application on Mandibular
Distraction Osteogenesis. J. Craniofac. Surg. 28, e621–
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Mandibular Distraksiyon Osteogenezinde Adjuvan Tedaviler: Hormonal ve Farmakolojik Ajanlar
Year 2024,
Volume: 3 Issue: 1, 32 - 42, 15.01.2024
Şeyma Kale
,
Berkan Altay
,
Elif Çoban
Abstract
Distraksiyon osteogenezi traksiyon uygulanarak birbirinden uzaklaştırılan kemik segmentlerinin arasında oluşan kallusun yeni
kemik formasyonuna dönüştüğü bir tekniktir ve maksillofasiyal bölgedeki çeşitli defektlerin tedavisinde kullanılır. Distraksiyon
tekniğinin yumuşak dokular üzerinde önemli avantajlara sahiptir. Ancak tedavi süresinin uzun olması önemli bir dezavantajdır.
Son yıllarda distraksiyon sürecini kısaltabilecek pek çok materyal ve metot üzerinde çalışmalar yapılmış, çeşitli hormonal
proteinler, farmakolojik ajanların distraksiyon osteogenezinde başarılı olabileceği gösterilmiştir. Bu derlemede mandibular
distraksiyon osteogenezinde araştırılan hormonal proteinlerin ve farmakolojik ajanların kapsamlı bir incelemesini sunduk.
References
- 1. Mikhail, L. S., Cherkashin, A. M. & Cope, J. B. Distraction
osteogenesis: History and biologic basis of new bone
formation In: Lynch SE, Genco RJ, Mark RE, editors.
Tissue Eng. Appl. Maxillofac. Surg. periodontics List. Ill
Quintessence 130–148 (1998).
- 2. Winters, R. & Tatum, S. A. Craniofacial distraction
osteogenesis. Facial Plast. Surg. Clin. North Am. 22, 653–
664 (2014).
- 3. Erverdi, N. & Motro, M. Alveolar Distraction Osteogenesis.
Alveolar Distraction Osteogenesis (2015). doi:10.1007/978-
3-319-07707-9.
- 4. Ilizarov, G. The tension-stress effect on the genesis and
growth of tissues: Part II. The influence of the rate and
frequency of distraction. Clin Orthop Relat Res 263–285
(1989).
- 5. Codivilla, A. On the means of lengthening, in the lower
limbs, the muscles and tissues which are shortened
through deformity. JBJS 2, 353–369 (1905).
- 6. Aykan, A., Ugurlutan, R., Zor, F. & Ozturk, S. Mandibular distraction osteogenesis with newly designed
electromechanical distractor. J. Craniofac. Surg. 25,
1519–1523 (2014).
- 7. Peacock, Z. S. et al. Automated continuous distraction
osteogenesis may allow faster distraction rates: a
preliminary study. J. Oral Maxillofac. Surg. 71, 1073–1084
(2013).
- 8. Hatefi, S. et al. Review of physical stimulation techniques
for assisting distraction osteogenesis in maxillofacial
reconstruction applications. Med. Eng. Phys. 91, 28–38
(2021).
- 9. Hong, P. A clinical narrative review of mandibular
distraction osteogenesis in neonates with Pierre Robin
sequence. Int. J. Pediatr. Otorhinolaryngol. 75, 985–991
(2011).
- 10. Hong, P., Boyd, D., Beyea, S. D. & Bezuhly, M. Enhancement
of bone consolidation in mandibular distraction
osteogenesis: A contemporary review of experimental
studies involving adjuvant therapies. J. Plast. Reconstr.
Aesthetic Surg. 66, 883–895 (2013).
- 11. Kocyigit, I. D. et al. A comparison of the low-level laser
versus low intensity pulsed ultrasound on new bone
formed through distraction osteogenesis. Photomed.
Laser Surg. 30, 438–443 (2012).
- 12. Pampu, A. A., Dolanmaz, D., Tüz, H. H., Avunduk, M. C.
& Kisşnisşci, R. Ş. Histomorphometric evaluation of
the effects of zoledronic acid on mandibular distraction
osteogenesis in rabbits. J. oral Maxillofac. Surg. 66, 905–
910 (2008).
- 13. Dundar, S. et al. Evaluation of effects of topical melatonin
application on osseointegration of dental implant: an
experimental study. J. Oral Implantol. 42, 386–389 (2016).
- 14. Acikan, I. et al. Systemic melatonin application increases
bone formation in mandibular distraction osteogenesis.
Braz. Oral Res. 32, e85 (2018).
- 15. Cutando, A. et al. Melatonin stimulates osteointegration of
dental implants. J. Pineal Res. 45, 174–179 (2008).
- 16. Tresguerres, I. F. et al. Effects of local melatonin
application on implant osseointegration. Clin. Implant
Dent. Relat. Res. 14, 395–399 (2012).
- 17. Amar, A. P. & Weiss, M. H. Pituitary anatomy and
physiology. Neurosurg. Clin. 14, 11–23 (2003).
- 18. Lee, H.-J., Macbeth, A. H., Pagani, J. H. & Young 3rd, W. S.
Oxytocin: the great facilitator of life. Prog. Neurobiol. 88,
127–151 (2009).
- 19. Elabd, C. et al. Oxytocin controls differentiation of human
mesenchymal stem cells and reverses osteoporosis.
Stem Cells 26, 2399–2407 (2008).
- 20. Elabd, S. K., Sabry, I., Hassan, W. B., Nour, H. & Zaky,
K. Possible neuroendocrine role for oxytocin in bone
remodeling. Endocr. Regul. 41, 131 (2007).
- 21. Elabd, S. & Sabry, I. Two birds with one stone: possible
dual-role of oxytocin in the treatment of diabetes and
osteoporosis. Front. Endocrinol. (Lausanne). 6, 121 (2015).
- 22. Tamma, R. et al. Oxytocin is an anabolic bone hormone.
Proc. Natl. Acad. Sci. 106, 7149–7154 (2009).
- 23. Altay, B. et al. Effect of Systemic Oxytocin Administration
on New Bone Formation and Distraction Rate in Rabbit
Mandible. J. Oral Maxillofac. Surg. (2020) doi:10.1016/j.
joms.2020.03.005.
- 24. Cho, B. C. et al. The bone regenerative effect of growth
hormone on consolidation in mandibular distraction
osteogenesis of a dog model. J. Craniofac. Surg. 14, 417–
425 (2003).
- 25. Cho, B. C. et al. The bone regenerative effect of chitosan
microsphere-encapsulated growth hormone on bony
consolidation in mandibular distraction osteogenesis in a
dog model. J. Craniofac. Surg. 15, 299–311 (2004).
- 26. Chen, H., Frankenburg, E. P., Goldstein, S. A. & McCauley,
L. K. Combination of local and systemic parathyroid
hormone enhances bone regeneration. Clin. Orthop.
Relat. Res. 416, 291–302 (2003).
- 27. Dempster, D. W., Cosman, F., Parisien, M. A. Y., Shen, V.
& Lindsay, R. Anabolic actions of parathyroid hormone on
bone. Endocr. Rev. 14, 690–709 (1993).
- 28. Uzawa, T., Hori, M., Ejiri, S. & Ozawa, H. Comparison of
the effects of intermittent and continuous administration
of human parathyroid hormone (1–34) on rat bone. Bone
16, 477–484 (1995).
- 29. Tang, Z. L. et al. An Examination of Differences in the
New Bone Formation Promoted by Different Doses
of Recombinant Human Parathyroid Hormone during
Mandibular Distraction Osteogenesis. Plast. Reconstr.
Surg. 137, 347e-354e (2016).
- 30. Ye, B. et al. Effects of Intermittent Low-Dose Parathyroid
Hormone Treatment on Rapid Mandibular Distraction
Osteogenesis in Rabbits. J. Oral Maxillofac. Surg. 75,
1722–1731 (2017).
- 31. Jiang, X. et al. Effect of intermittent administration of
adiponectin on bone regeneration following mandibular osteodistraction in rabbits. J. Orthop. Res. 29, 1081–1085
(2011).
- 32. Wan, L. et al. EPO promotes bone repair through enhanced
cartilaginous callus formation and angiogenesis. PLoS
One 9, e102010 (2014).
- 33. Mihmanli, A., Dolanmaz, D., Avunduk, M. C. & Erdemli,
E. Effects of Recombinant Human Erythropoietin on
Mandibular Distraction Osteogenesis. J. Oral Maxillofac.
Surg. 67, 2337–2343 (2009).
- 34. Soydan S, F, V. & Araz, K. Bifosfonata Bağlı Olarak Çene
Kemiklerinde Gelişen Osteonekrozun Patogenezi ve
Tedavisi. Hacettepe Diş Hek. Fak. Der. 33, 61–68 (2009).
- 35. Gómez, F. R., Martínez, G. M. L. & Olmos, M. J. M.
Osteochemonecrosis of the jaws due to bisphosphonate
treatments. Update. Med. Oral Patol. Oral Cir. Bucal 13,
E318 (2008).
- 36. Naidu, A. et al. The effects of bisphosphonates on
osteoblasts in vitro. Oral Surgery, Oral Med. Oral Pathol.
Oral Radiol. Endodontology 106, 5–13 (2008).
- 37. Senel, F. C., Tekin, U. S., Durmus, A. & Bagis, B. Severe
osteomyelitis of the mandible associated with the use
of non–nitrogen-containing bisphosphonate (disodium
clodronate): report of a case. J. oral Maxillofac. Surg. 65,
562–565 (2007).
- 38. Tenenbaum, H. C., Shelemay, A., Girard, B., Zohar,
R. & Fritz, P. C. Bisphosphonates and periodontics:
potential applications for regulation of bone mass in the
periodontium and other therapeutic/diagnostic uses. J.
Periodontol. 73, 813–822 (2002).
- 39. Tekin, U., Tüz, H. H., Önder, E., Özkaynak, Ö. & Korkusuz,
P. Effects of Alendronate on Rate of Distraction in Rabbit
Mandibles. J. Oral Maxillofac. Surg. 66, 2042–2049 (2008).
- 40. Kucuk, D., Ay, S., Kara, M. I., Avunduk, M. C. & Gümus,
C. Comparison of local and systemic alendronate on
distraction osteogenesis. Int. J. Oral Maxillofac. Surg. 40,
1395–1400 (2011).
- 41. Alp, Y. E. et al. Effects of Local Low-Dose Alendronate
Injections Into the Distraction Gap on New Bone Formation
and Distraction Rate on Distraction Osteogenesis. J.
Craniofac. Surg. 28, 2174–2178 (2017).
- 42. Dundar, S. et al. Comparison of the Effects of Local and
Systemic Zoledronic Acid Application on Mandibular
Distraction Osteogenesis. J. Craniofac. Surg. 28, e621–
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