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Volumn 25, Issue 12, 2004, Pages 2381-2392

Injectable self-curing bioactive acrylic-glass composites charged with specific anti-inflammatory/analgesic agent

Author keywords

Bioactive bone cement; Bioactive glass; Fosfosal; Hydroxyapatite; PMMA

Indexed keywords

BONE CEMENT; COMPRESSIVE STRENGTH; CURING; DISSOLUTION; DRUG PRODUCTS; GLASS; GRAVIMETRIC ANALYSIS; MONOMERS; POLYMETHYL METHACRYLATES; YIELD STRESS;

EID: 1642475127     PISSN: 01429612     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.biomaterials.2003.09.004     Document Type: Article
Times cited : (42)

References (37)
  • 1
    • 0043165850 scopus 로고
    • Preliminary note on the treatment of vertebral angioma by percutaneous acrylic vertebroplasty
    • Galibert P., Deramond R. Preliminary note on the treatment of vertebral angioma by percutaneous acrylic vertebroplasty. Neurochirurgie. 33:1987;166-168.
    • (1987) Neurochirurgie , vol.33 , pp. 166-168
    • Galibert, P.1    Deramond, R.2
  • 2
    • 0025614423 scopus 로고
    • Percutaneous acrylic vertebroplasty as a treatment of vertebral angioma as well as painful and debilitating disease
    • Galibert P., Deramond R. Percutaneous acrylic vertebroplasty as a treatment of vertebral angioma as well as painful and debilitating disease. Chirurgie. 116:1990;326-334.
    • (1990) Chirurgie , vol.116 , pp. 326-334
    • Galibert, P.1    Deramond, R.2
  • 3
    • 0029960122 scopus 로고    scopus 로고
    • Spinal metastases: Indications for and results of percutaneous injection of acrylic surgical cement
    • Weill A., Chiras J., Simon J.M., Rose M., Sola-Martínez T., Enkaoua E. Spinal metastases. indications for and results of percutaneous injection of acrylic surgical cement Radiology. 199:1996;241-247.
    • (1996) Radiology , vol.199 , pp. 241-247
    • Weill, A.1    Chiras, J.2    Simon, J.M.3    Rose, M.4    Sola-Martínez, T.5    Enkaoua, E.6
  • 5
    • 0032802422 scopus 로고    scopus 로고
    • The effect of monomer-to-powder ratio on the material properties of cranioplastic to the material properties of cranioplastic
    • Jasper L.E., Deramond H., Mathis J.M., Belkoff S.M. The effect of monomer-to-powder ratio on the material properties of cranioplastic to the material properties of cranioplastic. Bone. 25:1999;27S-29S.
    • (1999) Bone , vol.25
    • Jasper, L.E.1    Deramond, H.2    Mathis, J.M.3    Belkoff, S.M.4
  • 6
    • 72849167386 scopus 로고
    • Anchorage of femoral head prosthesis to the shaft of the femur
    • Charnley J. Anchorage of femoral head prosthesis to the shaft of the femur. J Bone Jt Surg. 42B:1960;28-30.
    • (1960) J Bone Jt Surg , vol.42 , pp. 28-30
    • Charnley, J.1
  • 7
    • 0019920603 scopus 로고
    • Observation upon the interface between bone and polymethylmethacrylate cement
    • Freeman M.A.R., Bradley G.W., Ravell P.A. Observation upon the interface between bone and polymethylmethacrylate cement. J Bone Jt Surg. 64B:1982;489-493.
    • (1982) J Bone Jt Surg , vol.64 , pp. 489-493
    • Freeman, M.A.R.1    Bradley, G.W.2    Ravell, P.A.3
  • 8
    • 0021996538 scopus 로고
    • Setting properties of bone cement with added synthetic hydroxyapatite
    • Castaldini A., Cavallini A. Setting properties of bone cement with added synthetic hydroxyapatite. Biomaterials. 6:1985;55-60.
    • (1985) Biomaterials , vol.6 , pp. 55-60
    • Castaldini, A.1    Cavallini, A.2
  • 9
    • 0000853141 scopus 로고
    • Mechanical properties of a composite bone cement: Polymethylmethacrylate and hydroxyapatite
    • Sogal A., Hulbert S.F. Mechanical properties of a composite bone cement. polymethylmethacrylate and hydroxyapatite Bioceramics. 5:1992;213-224.
    • (1992) Bioceramics , vol.5 , pp. 213-224
    • Sogal, A.1    Hulbert, S.F.2
  • 11
    • 0007831645 scopus 로고    scopus 로고
    • Polymethylmethacrylate composites disturbed bone formation at the surface of bioactive glass and hydroxyapatite
    • Heikkila J.T., Aho A.J., Kangasniemi I., Yli-Urpo A. Polymethylmethacrylate composites disturbed bone formation at the surface of bioactive glass and hydroxyapatite. Biomaterials. 17:1996;1755-1760.
    • (1996) Biomaterials , vol.17 , pp. 1755-1760
    • Heikkila, J.T.1    Aho, A.J.2    Kangasniemi, I.3    Yli-Urpo, A.4
  • 12
    • 0034082110 scopus 로고    scopus 로고
    • Bioactive polymethyl methacrylate-based bone cement: Comparison of glass beads, apatite- and wollastonite containing glass-ceramic, and hydroxyapatite fillers on mechanical and biological properties
    • Shinzato S., Kobayashi M., Mousa W.F., Kamimura M., Neo M., Kitamura Y., Kokubo T., Nakamura T. Bioactive polymethyl methacrylate-based bone cement. comparison of glass beads, apatite- and wollastonite containing glass-ceramic, and hydroxyapatite fillers on mechanical and biological properties J Biomed Mater Res. 51:2000;258-272.
    • (2000) J Biomed Mater Res , vol.51 , pp. 258-272
    • Shinzato, S.1    Kobayashi, M.2    Mousa, W.F.3    Kamimura, M.4    Neo, M.5    Kitamura, Y.6    Kokubo, T.7    Nakamura, T.8
  • 13
    • 0036132856 scopus 로고    scopus 로고
    • PMMA-based bioactive cement: Effect of glass bead filler content and histological change with time
    • Shinzato S., Nakamura T., Kokubo T., Kitamura Y. PMMA-based bioactive cement. effect of glass bead filler content and histological change with time J Biomed Mater Res. 59:2002;225-232.
    • (2002) J Biomed Mater Res , vol.59 , pp. 225-232
    • Shinzato, S.1    Nakamura, T.2    Kokubo, T.3    Kitamura, Y.4
  • 15
    • 0027976139 scopus 로고
    • Experimental studies on a new bioactive bone cement: Hydroxyapatite composite resin
    • Saito M., Maruoka A., Mori T., Sugano N., Hino K. Experimental studies on a new bioactive bone cement. hydroxyapatite composite resin Biomaterials. 15:1993;156-160.
    • (1993) Biomaterials , vol.15 , pp. 156-160
    • Saito, M.1    Maruoka, A.2    Mori, T.3    Sugano, N.4    Hino, K.5
  • 16
    • 0031555506 scopus 로고    scopus 로고
    • Bioactive bone cement: Comparison of AW-GC filler with hydroxyapatite and β-TCP fillers on mechanical and biological properties
    • Kobayashi M., Nakamura T., Tamura J., Kokubo T. Bioactive bone cement. comparison of AW-GC filler with hydroxyapatite and β-TCP fillers on mechanical and biological properties J Biomed Mater Res. 37:1997;301-313.
    • (1997) J Biomed Mater Res , vol.37 , pp. 301-313
    • Kobayashi, M.1    Nakamura, T.2    Tamura, J.3    Kokubo, T.4
  • 19
    • 0034256007 scopus 로고    scopus 로고
    • Gentamicin release from hydroxyapatite/poly(ethyl methacrylate)/ poly(methyl methacrylate) composites
    • Del Real R.P., Padilla S., Vallet-Regí M. Gentamicin release from hydroxyapatite/poly(ethyl methacrylate)/poly(methyl methacrylate) composites. J Biomed Mater Res. 52:2000;1-7.
    • (2000) J Biomed Mater Res , vol.52 , pp. 1-7
    • Del Real, R.P.1    Padilla, S.2    Vallet-Regí, M.3
  • 20
    • 0034193728 scopus 로고    scopus 로고
    • Biomechanical evaluation of a new bone cement for use in vertebroplasty
    • Belkoff S.M., Mathis J.M., Erbe E.M., Fenton D.C. Biomechanical evaluation of a new bone cement for use in vertebroplasty. Spine. 25:2000;1061-1064.
    • (2000) Spine , vol.25 , pp. 1061-1064
    • Belkoff, S.M.1    Mathis, J.M.2    Erbe, E.M.3    Fenton, D.C.4
  • 24
    • 0030243496 scopus 로고    scopus 로고
    • Amine activators for the "cool" peroxide initiated polymerisation of acrylic monomers
    • Elvira C., Levenfeld B., Vázquez B., San Román J. Amine activators for the "cool" peroxide initiated polymerisation of acrylic monomers. J Polym Sci Polym Chem. 34:1996;2783-2789.
    • (1996) J Polym Sci Polym Chem , vol.34 , pp. 2783-2789
    • Elvira, C.1    Levenfeld, B.2    Vázquez, B.3    San Román, J.4
  • 25
    • 85030904306 scopus 로고    scopus 로고
    • International Standard ISO 5833. Implants for Surgery-Acrylic Resins Cements. 1992.
    • International Standard ISO 5833. Implants for Surgery-Acrylic Resins Cements. 1992.
  • 28
    • 0032807670 scopus 로고    scopus 로고
    • Temperature elevation caused by bone cement polymerisation during vertebroplasty
    • Deramond H., Wright N.T., Belkoff S.M. Temperature elevation caused by bone cement polymerisation during vertebroplasty. Bone. 25:1999;17S-21S.
    • (1999) Bone , vol.25
    • Deramond, H.1    Wright, N.T.2    Belkoff, S.M.3
  • 30
    • 0031778659 scopus 로고    scopus 로고
    • Percutaneous Vertebroplasty with polymethylmethacrylate. Technique, indications and results
    • Deramond H., Depriester C., Galibert P., Le Gars D. Percutaneous Vertebroplasty with polymethylmethacrylate. Technique, indications and results. Radiol Clin North Am. 36:1998;533-546.
    • (1998) Radiol Clin North Am , vol.36 , pp. 533-546
    • Deramond, H.1    Depriester, C.2    Galibert, P.3    Le Gars, D.4
  • 31
    • 0018349629 scopus 로고
    • Monomer release from methacrylate bone cements during simulated in vivo polymerisation
    • Schoenfekd C.M., Conard G.J., Lautenschlager E.P. Monomer release from methacrylate bone cements during simulated in vivo polymerisation. J Biomed Mater Res. 13:1979;135-147.
    • (1979) J Biomed Mater Res , vol.13 , pp. 135-147
    • Schoenfekd, C.M.1    Conard, G.J.2    Lautenschlager, E.P.3
  • 32
    • 0030032921 scopus 로고    scopus 로고
    • Evolution of bone transplantation: Molecular, cellular and tissue strategies to engineer human bone
    • Yaszemski M.J., Payne R.G., Hayes W.C., Langer R., Mikos A.G. Evolution of bone transplantation. molecular, cellular and tissue strategies to engineer human bone Biomaterials. 17:1996;175-185.
    • (1996) Biomaterials , vol.17 , pp. 175-185
    • Yaszemski, M.J.1    Payne, R.G.2    Hayes, W.C.3    Langer, R.4    Mikos, A.G.5
  • 33
    • 0034520393 scopus 로고    scopus 로고
    • The strengthening effect of percutaneous vertebroplasty
    • Dean J.R., Ison K.T., Gishen P. The strengthening effect of percutaneous vertebroplasty. Clin Radiol. 55:2000;471-476.
    • (2000) Clin Radiol , vol.55 , pp. 471-476
    • Dean, J.R.1    Ison, K.T.2    Gishen, P.3
  • 34
    • 85030910176 scopus 로고    scopus 로고
    • Temenoff JS, Mikos AG. Injectable biodegradable materials for orthopaedic tissue engineering. In: Reis RL, Cohn D, editors, Polymer based systems on tissue engineering, replacement and regeneration. NATO Science Series II. Mathematics, Physics and Chemistry. Vol. 86.
    • Temenoff JS, Mikos AG. Injectable biodegradable materials for orthopaedic tissue engineering. In: Reis RL, Cohn D, editors, Polymer based systems on tissue engineering, replacement and regeneration. NATO Science Series II. Mathematics, Physics and Chemistry. Vol. 86.
  • 35
    • 0035850221 scopus 로고    scopus 로고
    • On the importance and mechanisms of burst release in matrix-controlled drug delivery systems
    • Huang X., Brazel C.S. On the importance and mechanisms of burst release in matrix-controlled drug delivery systems. J Controlled Release. 73:2001;121-136.
    • (2001) J Controlled Release , vol.73 , pp. 121-136
    • Huang, X.1    Brazel, C.S.2
  • 36
    • 0032125817 scopus 로고    scopus 로고
    • Assessment of acrylic bone cement as a local delivery vehicle for the application of non-steroidal anti-inflammatory drugs
    • Corry D., Moran J. Assessment of acrylic bone cement as a local delivery vehicle for the application of non-steroidal anti-inflammatory drugs. Biomaterials. 19:1998;1295-1301.
    • (1998) Biomaterials , vol.19 , pp. 1295-1301
    • Corry, D.1    Moran, J.2
  • 37
    • 0026771260 scopus 로고
    • Experimental studies of the biological response to a new bone cement. II Soft tissue reactions in the rat
    • Revell P.A., Braden M., Wightman B., Freeman M.A.R. Experimental studies of the biological response to a new bone cement. II Soft tissue reactions in the rat. Clin Mater. 10:1992;233-238.
    • (1992) Clin Mater , vol.10 , pp. 233-238
    • Revell, P.A.1    Braden, M.2    Wightman, B.3    Freeman, M.A.R.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.