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The Effect of Platelet-Rich Fibrin Supplemented with Calcium Phosphate-Based Powder on the Treatment of Metacarpal and Metatarsal Fractures in Cats: A Retrospective Study

Year 2025, Volume: 14 Issue: 2, 9 - 15, 25.12.2025
https://doi.org/10.53913/aduveterinary.1743828

Abstract

The inorganic matrix of bone consists predominantly of calcium phosphate compounds. Among these, calcium phosphate ceramics are widely employed as bioactive materials due to their close structural resemblance to native bone tissue. Platelets, conversely, are rich in cytokines and growth factors that play critical roles in promoting osteogenesis and soft tissue repair. This biological synergy has led to the hypothesis that a combination of calcium phosphate-based biomaterials and platelet-rich fibrin (PRF) may enhance bone regeneration outcomes. Metacarpal and metatarsal fractures are frequently encountered in feline patients, accounting for approximately 3.3% of all reported fractures. Surgical intervention is typically indicated in cases involving displacement, multiple (>2) metacarpal/metatarsal fractures, or comminuted fracture patterns. This study evaluated 10 feline patients of varying breeds, sexes, and ages diagnosed with metacarpal or metatarsal fractures through comprehensive clinical and radiographic assessment. Of these, five cases (Cases 1, 4, 6, 7, and 8) presented with metacarpal fractures, while the remaining five (Cases 2, 3, 5, 9, and 10) exhibited metatarsal fractures. The therapeutic approach consisted of intramedullary fixation using Kirschner wires (K-wires), supplemented with the local application of a composite biomaterial composed of PRF and calcium phosphate-based powder directly at the fracture site. Postoperative follow-up was conducted through day 45. By this time point, all cases demonstrated weight-bearing capability on the affected limb, radiographic resolution of the fracture line, and satisfactory functional recovery. The objective of this study was to evaluate the efficacy of platelet-rich fibrin enriched with calcium phosphate-based powder in the surgical management of feline metacarpal and metatarsal fractures and to disseminate these findings for clinical application in veterinary practice.

References

  • Boudrieau, R.J. (2004). High-rise syndrome in cats. Proceedings of the 12th ESVOT Congress, Munich, 24–25.
  • Branemark, P.I., Adell, R., Albrektsson, T., Lekholm, U., Lundkvist, S., & Rockler, B. (1983). Osseointegrated titanium fixtures in the treatment of edentulousness. Biomaterials, 4, 25-28. https://doi.org/10.1016/0142-9612(83)90065-0
  • Choukroun, J., Simonpieri, A., Girard, M., Fioretti, F., Dohan, S., & Dohan, D. (2004). Platelet-rich fibrin (PRF): A new biomaterial for healing. Part 4: Therapeutic implications. Implantodontie, 13, 229-235.
  • David, M., Choukroun, J., & Antonie, D. (2006). Platelet-rich fibrin (PRF): A second-generation platelet concentrate. Part 1: Technological concepts and evolution. Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology, and Endodontology, 101, e37-44. https://doi.org/10.1016/j.tripleo.2005.07.008
  • Degasperi, B., Gradner, G., & Dupre G. (2007). Intramedullary Pinning of Metacarpal and Metatarsal Fractures in Cats Using a Simple Distraction Technique. Veterinary Surgery, 36, 382–388. https://doi.org/10.1111/j.1532-950X.2007.00279.x
  • Demirkiran, B.B., Sahin Inan, Z.D., Hamutoğlu, R., Öksüz, K.E., Hasbek, Z., & Altuntaş, E.E. (2025). Boron-Doped Nano Hydroxyapatite Grafts for Bone Regeneration in Rat Mandibular Defects. Biological Trace Element Research, 203, 4139–4152. https://doi.org/10.1007/s12011-024-04462-4
  • Dohan, E.M.D., Rasmusson, L., & Albrektsson, T. (2011). Classification of platelet concentrates: from pure platelet-rich plasma (P-PRP) to leucocyte and platelet rich fibrin (LPRF). Trends in Biotechonolgy, 27(3), 158-167. https://doi.org/10.1016/j.tibtech.2008.11.009
  • Eduardo, A., Mikel, S., Alan, T., Nurden, P., Orive, G., & Andía, I. (2006). New insights into and novel applications for plateletrich fibrin therapies. Trends in Biotechonolgy, 24(5), 227-234. https://doi.org/10.1016/j.tibtech.2006.02.010
  • Gible, J.W., & Ness, P.M. (1990). Fibrin glue: the perfect operative sealant. Transfussion, 30, 741-747. https://doi.org/10.1046/j.1537-2995.1990.30891020337.x
  • Jarcho, M. (1986). Biomaterial aspects of calcium phosphates. Properties and applications. Dental Clinics of North America, 30, 25-47.
  • Mosesson, M.W., Siebenlist, K.R., & Meh, D.A. (2001). The structure and biological features of fibrinogen and fibrin. Annals of the New York Academy of Sciences, 93(6), 11-30. https://doi.org/10.1111/j.1749-6632.2001.tb03491.x
  • Öksüz, K.E., Şen, İ., & Erşan, M. (2024). Calcium phosphate nano powder biosynthesis from sea urchin shells: a response surface approach. Journal of Nanoparticle Research, 26, 263. https://doi.org/10.1007/s11051-024-06179-w
  • Phillips, I.R. (1979). A survey of bone fractures in the dog and cat. Journal of Small Animal Practice, 20, 661–674. https://doi.org/10.1111/j.1748-5827.1979.tb06679.x
  • Şen, İ., & Kibar Kurt, B. (2024). Veteriner Ortopedide Kullanılan Biyomalzemeler ve Özellikleri. In Z.K. Sarıtaş (Eds.), Veteriner Cerrahide Güncel Yaklaşımlar II (pp. 45-66). DOI: 10.5281/zenodo.14031285
  • Woodell-May, J.E., Ridderman, D.N., Swift, M.J., & Higgins, J. (2005). Producing accurate platelet counts for platelet rich plasma: Validation of a hematology analyzer and preparation techniques for counting. Journal of Craniofacial Surgery, 16, 749-756. https://doi.org/10.1097/01.scs.0000180007.30115.fa

Kalsiyum Fosfat Esaslı Toz Eklenmiş Plateletten Zengin Fibrinin Kedilerin Metacarpus ve Metatarsus Kırıklarının Sağaltımına Etkisi: Retrospektif Çalışma

Year 2025, Volume: 14 Issue: 2, 9 - 15, 25.12.2025
https://doi.org/10.53913/aduveterinary.1743828

Abstract

Kemiğin inorganik kısmının nerdeyse tamamı kalsiyum fosfat esaslıdır. Kalsiyum fosfat seramikleri, oldukça sık kullanılan biyoaktif seramiklerdendir ve kemik dokunun yapısına çok yakın bir yapıdadır. Trombositler ise kemik rejenerasyonunu ve yumuşak doku matürasyonunu sağlayan çok sayıda sitokin ve büyüme faktörü içerirler. Bu durum kalsiyum fosfat esaslı materyallerle plateletten zengin fibrin kombinasyonunun kemik yapımında veya rejenerasyonunda kullanılması fikrini akla getirmiştir. Metakarpal ve metatarsal kırıklar kedilerde sık görülmektedir. Çeşitli sebeplerle meydana gelen bu kırıklar kedilerde meydana gelen bütün kırıkların %3,3’ünü oluşturmaktadır. Deplasman görülen olgularda, ikiden fazla metakarpus/metatarsus kırığı olan olgularda veya parçalı kırıklarda cerrahi sağaltım önerilmektedir. Çalışma materyalini farklı ırk, cinsiyet ve yaşta, klinik ve radyolojik muayeneleri sonucunda metakarpus veya metakarpus kırığı tespit edilmiş olan 10 kedi oluşturmuştur. Çalışmaya dâhil edilen 10 kedinin 5’inde metakarpus (Olgu no 1, 4, 6, 7 ve 8), geri kalan 5’inde de (Olgu no 2, 3, 5, 9 ve 10) metatarsus kırığı teşhisi konmuştur. Sağaltımda intramedullar kirschner teli uygulamasına ek olarak kalsiyum fosfat esaslı toz eklenmiş plateletten zengin fibrin kombinasyonu kırık hattına uygulanmış ve olgular postoperatif 45. güne kadar takip edilmiştir. Postoperatif 45. güne gelindiğinde olguların tamamında ekstremiteye ağırlık verebildikleri, kırık hattının ortadan kalktığı ve fonksiyonel iyileşmenin sağlandığı görülmüştür. Bu çalışmada kalsiyum fosfat esaslı toz eklenmiş plateletten zengin fibrinin kedilerin metacarpus ve metatarsus kırıklarının sağaltımına etkisinin araştırılması ve sonuçlarının klinisyen veteriner hekimlerle paylaşılması amaçlanmıştır.

References

  • Boudrieau, R.J. (2004). High-rise syndrome in cats. Proceedings of the 12th ESVOT Congress, Munich, 24–25.
  • Branemark, P.I., Adell, R., Albrektsson, T., Lekholm, U., Lundkvist, S., & Rockler, B. (1983). Osseointegrated titanium fixtures in the treatment of edentulousness. Biomaterials, 4, 25-28. https://doi.org/10.1016/0142-9612(83)90065-0
  • Choukroun, J., Simonpieri, A., Girard, M., Fioretti, F., Dohan, S., & Dohan, D. (2004). Platelet-rich fibrin (PRF): A new biomaterial for healing. Part 4: Therapeutic implications. Implantodontie, 13, 229-235.
  • David, M., Choukroun, J., & Antonie, D. (2006). Platelet-rich fibrin (PRF): A second-generation platelet concentrate. Part 1: Technological concepts and evolution. Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology, and Endodontology, 101, e37-44. https://doi.org/10.1016/j.tripleo.2005.07.008
  • Degasperi, B., Gradner, G., & Dupre G. (2007). Intramedullary Pinning of Metacarpal and Metatarsal Fractures in Cats Using a Simple Distraction Technique. Veterinary Surgery, 36, 382–388. https://doi.org/10.1111/j.1532-950X.2007.00279.x
  • Demirkiran, B.B., Sahin Inan, Z.D., Hamutoğlu, R., Öksüz, K.E., Hasbek, Z., & Altuntaş, E.E. (2025). Boron-Doped Nano Hydroxyapatite Grafts for Bone Regeneration in Rat Mandibular Defects. Biological Trace Element Research, 203, 4139–4152. https://doi.org/10.1007/s12011-024-04462-4
  • Dohan, E.M.D., Rasmusson, L., & Albrektsson, T. (2011). Classification of platelet concentrates: from pure platelet-rich plasma (P-PRP) to leucocyte and platelet rich fibrin (LPRF). Trends in Biotechonolgy, 27(3), 158-167. https://doi.org/10.1016/j.tibtech.2008.11.009
  • Eduardo, A., Mikel, S., Alan, T., Nurden, P., Orive, G., & Andía, I. (2006). New insights into and novel applications for plateletrich fibrin therapies. Trends in Biotechonolgy, 24(5), 227-234. https://doi.org/10.1016/j.tibtech.2006.02.010
  • Gible, J.W., & Ness, P.M. (1990). Fibrin glue: the perfect operative sealant. Transfussion, 30, 741-747. https://doi.org/10.1046/j.1537-2995.1990.30891020337.x
  • Jarcho, M. (1986). Biomaterial aspects of calcium phosphates. Properties and applications. Dental Clinics of North America, 30, 25-47.
  • Mosesson, M.W., Siebenlist, K.R., & Meh, D.A. (2001). The structure and biological features of fibrinogen and fibrin. Annals of the New York Academy of Sciences, 93(6), 11-30. https://doi.org/10.1111/j.1749-6632.2001.tb03491.x
  • Öksüz, K.E., Şen, İ., & Erşan, M. (2024). Calcium phosphate nano powder biosynthesis from sea urchin shells: a response surface approach. Journal of Nanoparticle Research, 26, 263. https://doi.org/10.1007/s11051-024-06179-w
  • Phillips, I.R. (1979). A survey of bone fractures in the dog and cat. Journal of Small Animal Practice, 20, 661–674. https://doi.org/10.1111/j.1748-5827.1979.tb06679.x
  • Şen, İ., & Kibar Kurt, B. (2024). Veteriner Ortopedide Kullanılan Biyomalzemeler ve Özellikleri. In Z.K. Sarıtaş (Eds.), Veteriner Cerrahide Güncel Yaklaşımlar II (pp. 45-66). DOI: 10.5281/zenodo.14031285
  • Woodell-May, J.E., Ridderman, D.N., Swift, M.J., & Higgins, J. (2005). Producing accurate platelet counts for platelet rich plasma: Validation of a hematology analyzer and preparation techniques for counting. Journal of Craniofacial Surgery, 16, 749-756. https://doi.org/10.1097/01.scs.0000180007.30115.fa
There are 15 citations in total.

Details

Primary Language English
Subjects Veterinary Surgery
Journal Section Research Article
Authors

İlker Şen 0000-0001-8288-4871

Submission Date July 16, 2025
Acceptance Date October 13, 2025
Publication Date December 25, 2025
Published in Issue Year 2025 Volume: 14 Issue: 2

Cite

APA Şen, İ. (2025). The Effect of Platelet-Rich Fibrin Supplemented with Calcium Phosphate-Based Powder on the Treatment of Metacarpal and Metatarsal Fractures in Cats: A Retrospective Study. Animal Health Production and Hygiene, 14(2), 9-15. https://doi.org/10.53913/aduveterinary.1743828