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Absorbable self-reinforced polylactide (SR-PLA) composite rods for fracture fixation: strength and strength retention in the bone and subcutaneous tissue of rabbits

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Abstract

The strength and strength retention of self-reinforced (SR) absorbable polylactic acid composite rods were evaluated after intramedullary and subcutaneous implantation in rabbits. Rods made of poly-l-lactic acid (SR-PLLA) and of poly-dl-lactic acid + poly-l-lactic acid composite (SR-PDLLA/PLLA) were used. The molecular mass (M v) of PLLA was 260.000 and that of PDLLA 100.000. The bending and shear strengths were measured after a follow-up of 1–48 weeks. The initial bending strength of the SR-PLLA rods was 250–271 MPa and the shear strength was 94 98 MPa. After intramedullary and subcutaneous implantation of 12 weeks the bending strength of the SR-PLLA implants was 100 MPa. At 36 weeks the bending strength had decreased to the level of the strength of cancellous bone (10–20 MPa). There were no changes in the shear strength during 12 weeks hydrolysis. The initial bending strength of SR-PDLLA/PLLA implants was 209 MPa and during the follow-up the implants lost their bending and shear strength faster than the SR-PLLA implants. The present investigation gave us the impetus to continue the studies with the fixation of experimental cortical bone osteotomies with SR-PLLA intramedullary rods.

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References

  1. R. K. KULKARNI, K. C. PANI, C. NEUMAN and F. LEONARD,Arch. Surg. 93 (1966) 839.

    Google Scholar 

  2. E. J. FRAZZA and E. E. SCHMITT,J. Biomed. Mater. Res. Symp. 1 (1971) 43.

    Google Scholar 

  3. D. F. WILLIAMS,A.S.T.M. Spec. Tech. Publ. 684 (1979) 61.

    Google Scholar 

  4. Idem., J. Mater. Sci. 17 (1982) 1233.

    Google Scholar 

  5. A. L. LEHNINGER, in “Principles of biochemistry”, edited by S. Anderson and J. Fox, (Worth Publishers, New York, 1982) pp. 443, 837.

    Google Scholar 

  6. J. O. HOLLINGER,J. Biomed. Mater. Res. 17 (1983) 71.

    Google Scholar 

  7. J. O. HOLLINGER and B. C. BATTISTONE,Clin. Orthop. 207 (1986) 290.

    Google Scholar 

  8. S. VAINIONPÄÄ, P. ROKKANEN and P. TÖRMÄLÄ,Prog. Polym. Sci. 14 (1989) 699.

    Google Scholar 

  9. N. A. HIGGINS, US Patent 2 676 945 (1954).

  10. J. W. LEENSLAG, in “Poly(l-lactide) and its biomedical applications”, Thesis, University of Groningen, Nederland, 1987.

    Google Scholar 

  11. J. M. BRADY, D. E. CUTRIGHT, R. A. MILLER and G. C. BATTISTONE,J. Biomed. Mater. Res. 7 (1973) 155.

    Google Scholar 

  12. R. K. KULKARNI, E. G. MOORE, A. F. HEGYELI and F. LEONARD, ibid.5 (1971) 169.

    Google Scholar 

  13. D. E. CUTRIGHT, E. E. HUNSUCK and J. D. BEASLEY III,J. Oral Surg. 29 (1971) 393.

    Google Scholar 

  14. D. E. CUTRIGHT and E. E. HUNSUCK, ibid.33 (1972) 28.

    Google Scholar 

  15. P. CHRISTEL, F. CHAPOT and M. VERT, in 2nd World Congress Biomater., Washington, D.C., 1984, p. 279.

  16. K. L. GERLACH, H. R. KRAUSE and J. EITENMÜLLER, in “Biomaterials and clinical applications”, edited by A. Pizzoferrato, P. G. Marchetti, A. Ravaglioli and A. J. C. Lee (Elsevier, Amsterdam, 1987) p. 459.

    Google Scholar 

  17. F. R. ROZEMA, R. R. M. BOS, G. BOERING, J. W. LEENSLAG, A. J. PENNINGS and A. B. VERWEIJ, in The Third World Biomaterials Congress, Kyoto, 1988, p. 181.

  18. M. VERT, C. PASCAL, F. CHABOT and J. LERAY, in “Macromolecular biomaterials”, edited by G. W. Hastings and P. Du Cheyne (CRC Press Inc., Boca Raton, FL, 1984) p. 119.

    Google Scholar 

  19. K. L. GERLACH and J. EITENMÜLLER, in “Abstracts of European Congress of Biomaterials”, European Society for Biomaterials, Bologna, 1986, p. 105.

    Google Scholar 

  20. S. VAINIONPÄÄ, J. KILPIKARI, J. LAIHO, P. HELEVIRTA, P. ROKKANEN and P. TÖRMÄLÄ,Biomaterials 8 (1987) 46.

    Google Scholar 

  21. S. VAINIONPÄÄ, Thesis, University of Helsinki, 1987.

  22. T. NAKAMURA, S. HITOMI, S. WATANABE, Y. SHIMIZU, K. JAMSHIDI, S.-H. HYON and Y. IKADA,J. biomed. Mater. Res. 23 (1989) 1115.

    Google Scholar 

  23. T. POHJONEN, V.-P. HEPONEN, M. PELLINEN, P. ROKKANEN, S. VAINIONPÄÄ and P. TÖRMÄLÄ, in The Third World Biomatcrials Congress, Kyoto, 1988, p. 279.

  24. D. C. TUNC, M. W. ROHOWSKY, W. B. LEHMAN, A. STRONGWATER, F. KUMMER and M. KRAMER, in Trans. 31st Ann. Meeting Orthop. Res. Soc., Las Vegas, 1985, p. 283.

  25. D. E. CUTRIGHT, J. D. BEASLEY III; W. J. LARSON and W. R. POSEY,Oral Surg. 37 (1974) 142.

    Google Scholar 

  26. D. E. CUTRIGHT and R. L. REID,The Hand 7 (1975) 228.

    Google Scholar 

  27. A. MAJOLA, S. VAINIONPÄÄ, K. VIHTONEN, M. MERO, J. VASENIUS, P. TÖRMÄLÄ and P. ROKKANEN,Clin. Orthop., in press.

  28. P. TÖRMÄLÄ, P. ROKKANEN, J. LAIHO, M. TAMMIN-MÄKI and S. VAINIONPÄÄ, US Patent 4 743 257 (1988).

  29. P. TÖRMÄLÄ, P. ROKKANEN, S. VAINIONPÄÄ, J. LAIHO, V.-P. HEPONEN and T. POHJONEN, US Patent 4 968 317 (1990).

  30. J. VASENIUS, S. VAINIONPÄÄ, K. VIHTONEN, A. MÄKELÄ, P. ROKKANEN and P. TÖRMÄLÄ,Biomaterials 11 (1990) 501.

    Google Scholar 

  31. P. ROKKANEN, S. VAINIONPÄÄ, P. TÖRMÄLÄ, J. KILPIKARI, O. BÖSTMAN, K. VIHTONEN, J. LAIHO and M. TAMMINMÄKI,The Lancet 22 (1985) 1422.

    Google Scholar 

  32. O. BÖSTMAN, S. VAINIONPÄÄ, E. HIRVENSALO, A. MÄKELÄ, K. VIHTONEN, P. TÖRMÄLÄ and P. ROKKANEN,J. Bone Jt Surg. 69B (1987) 615.

    Google Scholar 

  33. O. BÖSTMAN, S. VVAINIONPÄÄ, E. HIRVENSALO, A. MÄKELÄ, K. VIHTONEN, P. TÖRMÄLÄ and P. ROKKANEN,Clin. Orthop. 238 (1989) 195.

    Google Scholar 

  34. O. BÖSTMAN, E. HIRVENSALO, S. VAINIONPÄÄ, K. VIHTONEN, P. TÖRMÄLÄ and P. ROKKANEN,Int. Orthop. 14 (1990) 1.

    Google Scholar 

  35. P. AXELSSON, J. RÄIHÄ, M. MERO, S. VAINIONPÄÄ, P. TÖRMÄLÄ and P. ROKKANEN,J. Small Anim. Pract. 29 (1988) 249.

    Google Scholar 

  36. E. HIRVENSALO,Acta Orthop. Scan. 60 (1989) 601.

    Google Scholar 

  37. E. HIRVENSALO, O. BÖSTMAN and P. ROKKANEN,Arch. Orthop. Trauma Surg., in press.

  38. E. HIRVENSALO, O. BÖSTMAN, P. TÖRMÄLÄ, S. VAINIONPÄÄ and P. ROKKANEN,Foot Ankle., in press.

  39. J. VASENIUS, S. VAINIONPÄÄ, K. VIHTONEN, M. MERO, J. MIKKOLA, P. ROKKANEN and P. TÖRMÄLÄ,Clin. Mater., in press.

  40. V.-P. HEPONEN, T. POHJONEN, S. VAINIONPÄÄ and P. TÖRMÄLÄ, in The Third World Biomaterials Congress, Kyoto, 1988, p. 281.

  41. S. A. V. SWANSON, in “Advances in biomechanical engineering”, edited by R. M. Kenedi (Academic Press, London, 1971) p. 137.

    Google Scholar 

  42. A. J. TONINO, D. L. DAVIDSON, P. J. KLOPPER and L. A. LINCLAU,J. Bone Jt Surg. 50B (1976) 107.

    Google Scholar 

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Majola, A., Vainionpää, S., Rokkanen, P. et al. Absorbable self-reinforced polylactide (SR-PLA) composite rods for fracture fixation: strength and strength retention in the bone and subcutaneous tissue of rabbits. J Mater Sci: Mater Med 3, 43–47 (1992). https://doi.org/10.1007/BF00702943

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