Acta Chir Orthop Traumatol Cech. 2015; 82(2):135-139 | DOI: 10.55095/achot2015/019

Vliv plazmy bohaté na trombocyty (PRP) na hojení štěpu při rekonstrukci LCA kolenního kloubu - prospektivní studiePůvodní práce

M. KOMZÁK1,2,*, R. HART1,2, P. ŠMÍD1,2, M. PUSKEILER3, P. JAJTNER4
1 Ortopedicko-traumatologické oddělení, Nemocnice Znojmo
2 Klinika traumatologie, Masarykova Univerzita Brno, Lékařská fakulta
3 Radiologické oddělení, Nemocnice Znojmo
4 Hematologické oddělení, Nemocnice Znojmo

PURPOSE OF THE STUDY:
Growth factors produced by platelets enhance tissue healing. The aim of this study was to confirm or disprove the hypothesis that, in anterior cruciate ligament (ACL) reconstruction, the application of platelet-rich plasma (PRP) into the tibial and femoral tunnels and in the graft enhances graft maturation and graft-bone interface healing and thus improves knee function at 3 and 12 months post-operatively in comparison with the control group.

MATERIAL AND METHODS:
A total of 40 patient had the surgery; 20 underwent single-bundle hamstring reconstruction with PRP application (PRP group) and 20 had the same surgery without PRP addition (control group). A 5 ml amount of PRP was obtained from the patient's peripheral blood. A graft inserted in the bone tunnels was fixed with interference screws and, after intra-articular fluid aspiration, 1 ml of PRP was injected into each tunnel and 3 ml were evenly applied to the intra-articular portion of the graft. The patients were examined by MRI at 3 and 12 months after surgery. The subsidence of swelling in the tunnel-surrounding tissues was taken as a sign of graft-bone interface healing, and increased signal intensity of the graft was considered as a result of its ligamentisation. The knee functional status was evaluated at 3 and 12 post-operative months, using the scoring systems (Cincinnati score, IKDC score).

RESULTS:
Bone swelling was found at 3 post-operative months in 18 of 20 patients in both the PRP and the control group. Graft signal intensity was increased in most patients (19 of the PRP group; 18 control patients; p = 0.949). The Cincinnati score at 3 months had an average value of 72.7 (34-100; SO, 18.7) in the PRP group and 73.4 (42-99; SO, 16.3) in the control group (p = 0.793).
The functional score after 12 months improved to 97.5 (75-100; SO, 12.8) in the PRP group and to 95.1 (66-100; SO, 13.1) in the control group; there was no significant difference between the groups (p = 0.885) at either 3 or 12 months. The IKDC score showed similar results.
At 12 months bone swelling was recorded in seven out of 20 patients in the PRP group and in nine patients in the control group (p = 0.751). Graft signal intensity was increased in three and four patients of the PRP and control groups, respectively (p = 0.681). There was a statistical difference between the findings at 3 and 12 months within each group, but no difference between the groups.

DISCUSSION:
In ACL reconstruction, the process of tendon graft-to-bone healing has several stages involving inflammation, cell proliferation and graft ligamentisation. At each stage, an important role is played by growth factors produced by thrombocytes, and therefore their potential use in the treatment of injuries to ligaments and tendons has recently come into focus. A number of experimental studies dealing with the effect of platelet-rich plasma on soft tissue healing has been published. Therefore, the method of using PRP to enhance graft healing in ACL reconstruction in humans is still being studied.
CONSLUSIONS
The use of PRP in ACL reconstruction does not accelerate graft remodelling and bone ingrowth into the tendon. The function scoring results showed a statistically significant improvement in knee function between 3 and 12 months of follow-up within each group studied but revealed no difference between the groups. The hypothesis postulated above was disproved.

Klíčová slova: anterior cruciate ligament, platelet-rich plasma, anatomic single-bundle reconstruction

Zveřejněno: 1. duben 2015  Zobrazit citaci

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KOMZÁK M, HART R, ŠMÍD P, PUSKEILER M, JAJTNER P. Vliv plazmy bohaté na trombocyty (PRP) na hojení štěpu při rekonstrukci LCA kolenního kloubu - prospektivní studie. Acta Chir Orthop Traumatol Cech. 2015;82(2):135-139. doi: 10.55095/achot2015/019. PubMed PMID: 26317184.
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Reference

  1. ANDERSON, K., SENEVIRATNE, A., IZAWA, K., ATKINSON, B., POTTER, H., RODEO, S.: Augmentation of tendon healing in intraarticular bone tunnel with use of a bone growth factor. Am. J. Sports Med., 29: 689-698, 2001. Přejít k původnímu zdroji... Přejít na PubMed...
  2. BOLLEN, S.: Epidemiology of knee injuries: diagnosis and triage. Br. J. Sports Med., 34: 227-228, 2000. Přejít k původnímu zdroji... Přejít na PubMed...
  3. DE MOS, M., VAN DER WINDT, A., JAHR, H.: Can platelet-rich plasma enhance tendon repair? A cell culture study. Am. J. Sports Med., 36: 1171-1178, 2008. Přejít k původnímu zdroji... Přejít na PubMed...
  4. FREI, R., BIOSCA, F. E., HANDL, M., TRČ, T.: The role of growth factors in the human organism and their use in medicine, especially in orthopedics and traumatology. Acta Chir. orthop. Traum. čech., 75: 247-252, 2008. Přejít k původnímu zdroji...
  5. HART, R., ŠTIPČÁK, V.: Přední zkřížený vaz kolenního kloubu. Praha, Maxdorf Jessenius 2010.
  6. HEFTI, F., DROBNY, T., HACKENBUSH, W.: Evaluation of knee ligament injuries: the OAK and IKDC forms. The knee and the cruciate ligament. Berlin, Heidelberg, Newark Sprinter 1990.
  7. HOWELL, S. M., CLARK, J. A., BLASIER, R. D.: Serial magnetic resonance imaging of hamstring anterior cruciate ligament autografts during the first year of implantation. A preliminary study. Am. J. Sports Med., 19: 42-47, 1991. Přejít k původnímu zdroji... Přejít na PubMed...
  8. LAITAI, G., NOSZIAN, I., HUMER, K., UNGER, F., AITZEMUELLER, G., ORTHNER, E.: Serial magnetic resonance imaging evaluation of operative site after fixation of patellar tendon graft with bioadsorbable interference screws in anterior cruciate ligament reconstruction. Arthroscopy, 15: 709-718, 1999. Přejít k původnímu zdroji... Přejít na PubMed...
  9. MARUMO, K., SAITO, M., YAMAGISHI, T., FUJII, K.: The "ligamentization" process in human anterior cruciate ligament reconstruction with autogenous patellar and hamstring tendons: A biomechanic study. Am. J. Sports Med., 33: 1166-1173, 2005. Přejít k původnímu zdroji... Přejít na PubMed...
  10. MURRAY, M. M., SPINDLER, K. P., DEVIN, C.: Use of a collagen-platelet rich plasma scaffold to stimulate healing of a central defect in the canine ACL. J. Orthop. Res., 24: 820-830, 2006. Přejít k původnímu zdroji... Přejít na PubMed...
  11. NAKAYAMA, Y., SHIRAI, Y., NARITA, T., MORI, A., KOBAYASHI, K.: The accuracy of MRI in assessing graft integrity after anterior cruciate ligament reconstruction. J. Nippon. Med. Sch., 68: 45-49, 2001. Přejít k původnímu zdroji... Přejít na PubMed...
  12. NOYES, F. R., BARBER, S. D., MOOAR, L. A.: A rationale for assessing sports activity levels and limitations in knee disorders. Clin. Orthop. Relat. Res., 246: 238-249, 1989. Přejít k původnímu zdroji...
  13. OREGO, M., LARRAIN, C., ROSALES, J., VALENZUELA, L.: Effects of platelet concentrate and a bone plug on the healing of hamstring tendons in a bone tunnel. Arthroscopy, 24: 1373-1380, 2008. Přejít k původnímu zdroji... Přejít na PubMed...
  14. PRODROMOS, C. C., HAN, Y., ROGOWSKI, J., JOYCE, B., SHI, K.: A meta-analysis of the incidence of anterior cruciate ligament tears as a function of gender, sport, and a knee injury-reduction regimen. Arthroscopy, 23: 1320-1325, 2007. Přejít k původnímu zdroji... Přejít na PubMed...
  15. RADICE, F., YÁNEZ, R., GUTIÉRREZ, V., ROSALES, J., PINEDO, M., CODA, S.: Comparison of magnetic resonance imaging findings in anerior cruciate ligament grafts with and without autologous platelet-derived growth factors. Arthroscopy, 26: 50-57, 2010. Přejít k původnímu zdroji... Přejít na PubMed...
  16. RAK, K. M., GILLOGLY, S. D., SCHAEFER, R. A., YAKES, W. F., LILJEDAHL, R. R.: Anterior cruciate ligament reconstruction: evaluation with MR imaging. Radiology, 178: 553-556, 1991. Přejít k původnímu zdroji... Přejít na PubMed...
  17. SANCHEZ, M., ANITUA, E., AZOFRA, J., ANDÍA, I., PADILLA, S., MUJIKA, I.: Comparison of surgically repaired Achilles tendon tears using platelet-rich fibrin matrices. Am. J. Sports Med., 35: 245-251, 2007. Přejít k původnímu zdroji... Přejít na PubMed...
  18. VENTURA, A., TERZAGHI, C., BORGO, E., VEDOIA, C., GALLAZI, M., FAILONI, S.: Use of growth factors in ACL surgery: Preliminary study. J. Orthop. Traumatol., 6: 76-79, 2005. Přejít k původnímu zdroji...
  19. VOGRIN, M., RUPREHT, M., DINEVSKI, D., HAŠPL, M., KUHTA, M.: Effects of a platelet gel on early graft revascularization after anterior cruciate ligament reconstruction: a prospective, randomized, double-blind, clinical trial. Eur. Surf. Res., 45: 77-85, 2010. Přejít k původnímu zdroji... Přejít na PubMed...
  20. WEILER, A., HOFFMANN, R. F., BAIL, H. J., REHM, O., SUDKAMP, N. P.: Tendon healing in a bone tunnel. Part II: Histologic analysis after biodegradable interference fit fixation in a model of the anterior cruciate ligament reconstruction in sheep. Arthroscopy, 18: 124-135, 2002. Přejít k původnímu zdroji... Přejít na PubMed...
  21. WEILER, A., PEINE, R., PASHMINEH-AZAR, A., ABEL, C., SUDKAMP, N. P., HOFFMANN, R. F.: Tendon healing in a bone tunnel. Part I: Biomechanical results after biodegradable interference fit fixation in a model of the anterior cruciate ligament reconstruction in sheep. Arthroscopy, 18: 113-123, 2002. Přejít k původnímu zdroji... Přejít na PubMed...
  22. WEILER, A., PETERS, G., MAURER, J., UNTERHAUSER, F. N., SUDKAMP, N. P.: Biomechanice properties and vascularity of an anterior cruciate ligament graft can be predicted by kontrast-enhanced magnetic resonance imaging. A two-year study in sheep. Am. J. Sports Med., 29: 751-761, 2001. Přejít k původnímu zdroji... Přejít na PubMed...
  23. ZEMAN, P., KOUDELA, K. ml., KASL, J., NEPRAŠ, P., ZEMAN, J., MATĚJKA, J.: Anatomická rekonstrukce LCA double- versus single-bundle technikou - zhodnocení krátkodobých klinických výsledků prospektivní randomizované studie. Acta Chir. orthop. Traum. čech., 81: 40-50, 2014. Přejít k původnímu zdroji...
  24. ZEMAN, P., NEPRAŠ, P., MATĚJKA, J., KOUDELA, K. ml.: Anatomická rekonstrukce předního zkříženého vazu double-bundle technikou - možnosti cílení femorálních kanálů. Acta Chir. orthop. Traum. čech., 79: 41-47, 2012. Přejít k původnímu zdroji...