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Erschienen in: Archives of Orthopaedic and Trauma Surgery 9/2005

01.11.2005 | Original Article

Cell-based treatment of osteochondral defects in the rabbit knee with natural and synthetic matrices: cellular seeding determines the outcome

verfasst von: M. Rudert, U. Wilms, M. Hoberg, C. J. Wirth

Erschienen in: Archives of Orthopaedic and Trauma Surgery | Ausgabe 9/2005

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Abstract

Introduction: Matrix-associated transplantation of cartilage constructs is an appealing method in cartilage repair. Three different matrices seeded with allogenic chondrocytes were compared in an osteochondral defect model in the rabbit. An investigation was conducted to identify the best matrix for cell-based treatment of osteochondral defects in the rabbit knee joint. Materials and methods: Osteochondral defects (diameter 3 mm) were created in the trochlea and the femoral condyles of 33 New Zealand White rabbits, which were then treated with bioartificial cartilage constructs. The cartilage constructs were created in vitro using three different resorbable carrier materials (two fleece matrices: one of PLLA, and one composite of polydioxanon/polyglactin, as well as one consisting of lyophilized dura) cultured with isolated allogenic chondrocytes. The defects were evaluated macroscopically, by histological and immunhistological techniques, and by scanning electron microscopy after 6 weeks, 6 months, and 12 months. The chondrocyte-seeded constructs were compared to defects treated with carrier material alone as well as to untreated control defects. Results: There was a significant improvement in defect repair quality in the transport materials, which were cultured with chondrocytes prior to implantation (P<0.0005). No significant differences were observed between the three carrier matrices, and no significant differences were seen between the unseeded matrices and the untreated control defects. Conclusion: There is no difference in the outcome between the three tested matrices in the treatment of osteochondral defects in the rabbit knee. The results of this in vitro experiment are promising and with refinement may lead to useful clinical therapies.
Literatur
1.
Zurück zum Zitat Ball ST, Goomer RS, Ostrander RV, Tontz WL Jr, Williams SK, Amiel D (2004) Preincubation of tissue engineered constructs enhances donor cell retention. Clin Orthop 420:276–285PubMedCrossRef Ball ST, Goomer RS, Ostrander RV, Tontz WL Jr, Williams SK, Amiel D (2004) Preincubation of tissue engineered constructs enhances donor cell retention. Clin Orthop 420:276–285PubMedCrossRef
2.
Zurück zum Zitat Breinan HA, Martin SD, Hsu HP, Spector M (2000) Healing of canine articular cartilage defects treated with microfracture, a type-II collagen matrix, or cultured autologous chondrocytes. J Orthop Res 18:781–789PubMedCrossRef Breinan HA, Martin SD, Hsu HP, Spector M (2000) Healing of canine articular cartilage defects treated with microfracture, a type-II collagen matrix, or cultured autologous chondrocytes. J Orthop Res 18:781–789PubMedCrossRef
3.
Zurück zum Zitat Breinan HA, Minas T, Hsu HP, Nehrer S, Sledge CB, Spector M (1997) Effect of cultured autologous chondrocytes on repair of chondral defects in a canine model. J Bone Joint Surg [Am] 79:1439–1451 Breinan HA, Minas T, Hsu HP, Nehrer S, Sledge CB, Spector M (1997) Effect of cultured autologous chondrocytes on repair of chondral defects in a canine model. J Bone Joint Surg [Am] 79:1439–1451
4.
Zurück zum Zitat Brittberg M, Lindahl A, Nilsson A, Ohlsson C, Isaksson O, Peterson L (1994) Treatment of deep cartilage defects in the knee with autologous chondrocyte transplantation. N Engl J Med 331:889–895PubMedCrossRef Brittberg M, Lindahl A, Nilsson A, Ohlsson C, Isaksson O, Peterson L (1994) Treatment of deep cartilage defects in the knee with autologous chondrocyte transplantation. N Engl J Med 331:889–895PubMedCrossRef
5.
Zurück zum Zitat Brittberg M, Nilsson A, Lindahl A, Ohlsson C, Peterson L (1996) Rabbit articular cartilage defects treated with autologous cultured chondrocytes. Clin Orthop 326:270–283PubMedCrossRef Brittberg M, Nilsson A, Lindahl A, Ohlsson C, Peterson L (1996) Rabbit articular cartilage defects treated with autologous cultured chondrocytes. Clin Orthop 326:270–283PubMedCrossRef
6.
Zurück zum Zitat Bruns J, Kersten P, Lierse W, Silbermann M (1992) Autologous rib perichondral grafts in experimentally induced osteochondral lesions in the sheep knee joint: morphological results. Virchows Arch 421:1–8CrossRef Bruns J, Kersten P, Lierse W, Silbermann M (1992) Autologous rib perichondral grafts in experimentally induced osteochondral lesions in the sheep knee joint: morphological results. Virchows Arch 421:1–8CrossRef
7.
Zurück zum Zitat Butnariu-Ephrat M, Robinson D, Mendes DG, Halperin N, Nevo Z (1996) Resurfacing of goat articular cartilage by chondrocytes derived from bone marrow. Clin Orthop 330:234–243PubMedCrossRef Butnariu-Ephrat M, Robinson D, Mendes DG, Halperin N, Nevo Z (1996) Resurfacing of goat articular cartilage by chondrocytes derived from bone marrow. Clin Orthop 330:234–243PubMedCrossRef
8.
Zurück zum Zitat Cancedda FD, Gentili C, Manduca P, Cancedda R (1992) Hypertrophic chondrocytes undergo further differentiation in culture. J Cell Biol 117:427–435PubMedCrossRef Cancedda FD, Gentili C, Manduca P, Cancedda R (1992) Hypertrophic chondrocytes undergo further differentiation in culture. J Cell Biol 117:427–435PubMedCrossRef
9.
Zurück zum Zitat Chu CR, Coutts RD, Yoshioka M, Harwood FL, Monosov AZ, Amiel D (1995) Articular cartilage repair using allogeneic perichondrocyte-seeded biodegradable porous polylactic acid (PLA): a tissue-engineering study. J Biomed Mater Res 29:1147–1154PubMedCrossRef Chu CR, Coutts RD, Yoshioka M, Harwood FL, Monosov AZ, Amiel D (1995) Articular cartilage repair using allogeneic perichondrocyte-seeded biodegradable porous polylactic acid (PLA): a tissue-engineering study. J Biomed Mater Res 29:1147–1154PubMedCrossRef
10.
Zurück zum Zitat Daniels K, Solursh M (1991) Modulation of chondrogenesis by the cytoskeleton and extracellular matrix. J Cell Sci 100:249–254PubMed Daniels K, Solursh M (1991) Modulation of chondrogenesis by the cytoskeleton and extracellular matrix. J Cell Sci 100:249–254PubMed
11.
Zurück zum Zitat Domm C, Fay J, Schünke M, Kurz B (2000) Die Redifferenzierung von dedifferenzierten Gelenkknorpelzellen in Alginatkultur. Einfluss von intermittierendem hydrostatischen Druck und niedrigem Sauerstoffpartialdruck. Orthopäde 29:91–99PubMed Domm C, Fay J, Schünke M, Kurz B (2000) Die Redifferenzierung von dedifferenzierten Gelenkknorpelzellen in Alginatkultur. Einfluss von intermittierendem hydrostatischen Druck und niedrigem Sauerstoffpartialdruck. Orthopäde 29:91–99PubMed
12.
Zurück zum Zitat Fragonas E, Valente M, Pozzi-Mucelli M, Toffanin R, Rizzo R, Silvestri F, Vittur F (2000) Articular cartilage repair in rabbits by using suspensions of allogenic chondrocytes in alginate. Biomaterials 21:795–801PubMedCrossRef Fragonas E, Valente M, Pozzi-Mucelli M, Toffanin R, Rizzo R, Silvestri F, Vittur F (2000) Articular cartilage repair in rabbits by using suspensions of allogenic chondrocytes in alginate. Biomaterials 21:795–801PubMedCrossRef
13.
Zurück zum Zitat Freed LE, Grande DA, Lingbin Z, Emmanual J, Marquis JC, Langer R (1994) Joint resurfacing using allograft chondrocytes and synthetic biodegradable polymer scaffolds. J Biomed Mater Res 28:891–899PubMedCrossRef Freed LE, Grande DA, Lingbin Z, Emmanual J, Marquis JC, Langer R (1994) Joint resurfacing using allograft chondrocytes and synthetic biodegradable polymer scaffolds. J Biomed Mater Res 28:891–899PubMedCrossRef
14.
Zurück zum Zitat Freed LE, Marquis JC, Nohria JC, Emmanual J, Mikos AG, Langer R (1993) Neocartilage formation in vitro and in vivo using cells cultured on synthetic biodegradable polymers. J Biomed Mater Res 27:11–23PubMedCrossRef Freed LE, Marquis JC, Nohria JC, Emmanual J, Mikos AG, Langer R (1993) Neocartilage formation in vitro and in vivo using cells cultured on synthetic biodegradable polymers. J Biomed Mater Res 27:11–23PubMedCrossRef
15.
Zurück zum Zitat Frenkel SR, Toolan BC, Menche D, Pitman MI, Pachence JM (1997) Chondrocyte transplantation using a collagen bilayer matrix for cartilage repair. J Bone Joint Surg [Br] 79:831–836CrossRef Frenkel SR, Toolan BC, Menche D, Pitman MI, Pachence JM (1997) Chondrocyte transplantation using a collagen bilayer matrix for cartilage repair. J Bone Joint Surg [Br] 79:831–836CrossRef
16.
Zurück zum Zitat Gao J, Dennis JE, Solchaga LA, Goldberg VM, Caplan AI (2002) Repair of osteochondral defect with tissue-engineered two-phase composite material of injectable calcium phosphate and hyaluronan sponge. Tissue Eng 8:827–837PubMedCrossRef Gao J, Dennis JE, Solchaga LA, Goldberg VM, Caplan AI (2002) Repair of osteochondral defect with tissue-engineered two-phase composite material of injectable calcium phosphate and hyaluronan sponge. Tissue Eng 8:827–837PubMedCrossRef
17.
Zurück zum Zitat Grande DA, Pitman MI, Peterson L, Menche D, Klein M (1989) The repair of experimentally produced defects in rabbit articular cartilage by autologous chondrocyte transplantation. J Orthop Res 7:208–218PubMedCrossRef Grande DA, Pitman MI, Peterson L, Menche D, Klein M (1989) The repair of experimentally produced defects in rabbit articular cartilage by autologous chondrocyte transplantation. J Orthop Res 7:208–218PubMedCrossRef
18.
Zurück zum Zitat Helbing G (1982) Transplantation isolierter Chondrozyten in Gelenkknorpel-Defekte. Fortschr Med 100:83–87PubMed Helbing G (1982) Transplantation isolierter Chondrozyten in Gelenkknorpel-Defekte. Fortschr Med 100:83–87PubMed
19.
Zurück zum Zitat Hendrickson DA, Nixon AJ, Grande DA, Todhunter RJ, Minor RM, Erb H, Lust G (1994) Chondrocyte-fibrin matrix transplants for resurfacing extensive articular cartilage defects. J Orthop Res 12:485–497PubMedCrossRef Hendrickson DA, Nixon AJ, Grande DA, Todhunter RJ, Minor RM, Erb H, Lust G (1994) Chondrocyte-fibrin matrix transplants for resurfacing extensive articular cartilage defects. J Orthop Res 12:485–497PubMedCrossRef
20.
Zurück zum Zitat Hirschmann F, Verhoeyen E, Wirth D, Bauwens S, Hauser H, Rudert M (2002) Vital marking of articular chondrocytes by retroviral infection using green fluorescence protein. Osteoarthritis Cartilage 10:109–118PubMedCrossRef Hirschmann F, Verhoeyen E, Wirth D, Bauwens S, Hauser H, Rudert M (2002) Vital marking of articular chondrocytes by retroviral infection using green fluorescence protein. Osteoarthritis Cartilage 10:109–118PubMedCrossRef
21.
Zurück zum Zitat Holmdahl R, Rubin K, Klareskog L, Larsson E, Wigzell H (1986) Characterization of the antibody response in mice with type II collagen-induced arthritis, using monoclonal anti-type II collagen antibodies. Arthritis Rheum 29:400–410PubMedCrossRef Holmdahl R, Rubin K, Klareskog L, Larsson E, Wigzell H (1986) Characterization of the antibody response in mice with type II collagen-induced arthritis, using monoclonal anti-type II collagen antibodies. Arthritis Rheum 29:400–410PubMedCrossRef
22.
Zurück zum Zitat Hunter W (1743) On the structure and diseases of articulating cartilages. Philos Trans R Soc 42:514–521 Hunter W (1743) On the structure and diseases of articulating cartilages. Philos Trans R Soc 42:514–521
23.
Zurück zum Zitat Hunziker EB, Driesang IM (2003) Functional barrier principle for growth-factor-based articular cartilage repair. Osteoarthritis Cartilage 11:320–327PubMedCrossRef Hunziker EB, Driesang IM (2003) Functional barrier principle for growth-factor-based articular cartilage repair. Osteoarthritis Cartilage 11:320–327PubMedCrossRef
24.
Zurück zum Zitat Im GI, Kim DY, Shin JH, Hyun CW, Cho WH (2001) Repair of cartilage defect in the rabbit with cultured mesenchymal stem cells from bone marrow. J Bone Joint Surg Br 83:289–294PubMedCrossRef Im GI, Kim DY, Shin JH, Hyun CW, Cho WH (2001) Repair of cartilage defect in the rabbit with cultured mesenchymal stem cells from bone marrow. J Bone Joint Surg Br 83:289–294PubMedCrossRef
25.
Zurück zum Zitat Katsube K, Ochi M, Uchio Y, Maniwa S, Matsusaki M, Tobita M, Iwasa J (2000) Repair of articular cartilage defects with cultured chondrocytes in Atelocollagen gel. Comparison with cultured chondrocytes in suspension. Arch Orthop Trauma Surg 120:121–127PubMed Katsube K, Ochi M, Uchio Y, Maniwa S, Matsusaki M, Tobita M, Iwasa J (2000) Repair of articular cartilage defects with cultured chondrocytes in Atelocollagen gel. Comparison with cultured chondrocytes in suspension. Arch Orthop Trauma Surg 120:121–127PubMed
26.
Zurück zum Zitat Kawamura S, Wakitani S, Kimura T, Maeda A, Caplan AI, Shino K, Ochi T (1998) Articular cartilage repair. Rabbit experiments with a collagen gel-biomatrix and chondrocytes cultured in it. Acta Orthop Scand 69:56–62PubMed Kawamura S, Wakitani S, Kimura T, Maeda A, Caplan AI, Shino K, Ochi T (1998) Articular cartilage repair. Rabbit experiments with a collagen gel-biomatrix and chondrocytes cultured in it. Acta Orthop Scand 69:56–62PubMed
27.
Zurück zum Zitat Kölliker A (1867) Handbuch der Gewebelehre des Menschen. Engelmann Leipzig 5:64–69 Kölliker A (1867) Handbuch der Gewebelehre des Menschen. Engelmann Leipzig 5:64–69
28.
Zurück zum Zitat Lee CR, Grodzinsky AJ, Hsu HP, Spector M (2003) Effects of a cultured autologous chondrocyte-seeded type II collagen scaffold on the healing of a chondral defect in a canine model. J Orthop Res 21:272–281PubMedCrossRef Lee CR, Grodzinsky AJ, Hsu HP, Spector M (2003) Effects of a cultured autologous chondrocyte-seeded type II collagen scaffold on the healing of a chondral defect in a canine model. J Orthop Res 21:272–281PubMedCrossRef
29.
Zurück zum Zitat Melamed E, Robinson D, Halperin N, Nevo Z (2004) Restoration of arthritic cartilage defects using autologous chondrocytes transplantation is superior to cartilage-paste graft in rabbits. J Knee Surg 17:6–12PubMed Melamed E, Robinson D, Halperin N, Nevo Z (2004) Restoration of arthritic cartilage defects using autologous chondrocytes transplantation is superior to cartilage-paste graft in rabbits. J Knee Surg 17:6–12PubMed
30.
Zurück zum Zitat Nehrer S, Breinan HA, Ramappa A, Hsu HP, Minas T, Shortkroff S, Sledge CB, Yannas IV, Spector M (1998) Chondrocyte-seeded collagen matrices implanted in a chondral defect in a canine model. Biomaterials 19:2313–2328PubMedCrossRef Nehrer S, Breinan HA, Ramappa A, Hsu HP, Minas T, Shortkroff S, Sledge CB, Yannas IV, Spector M (1998) Chondrocyte-seeded collagen matrices implanted in a chondral defect in a canine model. Biomaterials 19:2313–2328PubMedCrossRef
31.
Zurück zum Zitat Niederauer GG, Slivka MA, Leatherbury NC, Korvick DL, Harroff HH Jr, Ehler WC, Dunn CJ, Kieswetter K (2000) Evaluation of multiphase implants for repair of focal osteochondral defects in goats. Biomaterials 21:2561–2574PubMedCrossRef Niederauer GG, Slivka MA, Leatherbury NC, Korvick DL, Harroff HH Jr, Ehler WC, Dunn CJ, Kieswetter K (2000) Evaluation of multiphase implants for repair of focal osteochondral defects in goats. Biomaterials 21:2561–2574PubMedCrossRef
32.
Zurück zum Zitat Noguchi T, Oka M, Fujino M, Neo M, Yamamuro T (1994) Repair of osteochondral defects with grafts of cultured chondrocytes. Comparison of allografts and isografts. Clin Orthop 302:251–258PubMed Noguchi T, Oka M, Fujino M, Neo M, Yamamuro T (1994) Repair of osteochondral defects with grafts of cultured chondrocytes. Comparison of allografts and isografts. Clin Orthop 302:251–258PubMed
33.
Zurück zum Zitat O’Driscoll SW (1999) Articular cartilage regeneration using periosteum. Clin Orthop 367(Suppl):S186–S203PubMed O’Driscoll SW (1999) Articular cartilage regeneration using periosteum. Clin Orthop 367(Suppl):S186–S203PubMed
34.
Zurück zum Zitat O’Driscoll SW, Keeley FW, Salter RB (1988) Durability of regenerated articular cartilage produced by free autogenous periosteal grafts in major full-thickness defects in joint surfaces under the influence of continuous passive motion A follow-up report at one year. J Bone Joint Surg [Am] 70:595–606 O’Driscoll SW, Keeley FW, Salter RB (1988) Durability of regenerated articular cartilage produced by free autogenous periosteal grafts in major full-thickness defects in joint surfaces under the influence of continuous passive motion A follow-up report at one year. J Bone Joint Surg [Am] 70:595–606
35.
Zurück zum Zitat Paget J (1853) Healing of injuries in various tissues. Lect Surg Pathol 1:262–291 Paget J (1853) Healing of injuries in various tissues. Lect Surg Pathol 1:262–291
36.
Zurück zum Zitat Perka C, Schultz O, Sittinger M, Zippel H (2000) Chondrozytentransplantation in PGLA Polydioxanon-Vliesen. Orthopäde 29:112–119PubMed Perka C, Schultz O, Sittinger M, Zippel H (2000) Chondrozytentransplantation in PGLA Polydioxanon-Vliesen. Orthopäde 29:112–119PubMed
37.
Zurück zum Zitat Pineda S, Pollack A, Stevenson S, Goldberg VM, Caplan AI (1992) A semiquantitative scale for histologic grading of articular cartilage repair. Acta Anat 143:335–340PubMedCrossRef Pineda S, Pollack A, Stevenson S, Goldberg VM, Caplan AI (1992) A semiquantitative scale for histologic grading of articular cartilage repair. Acta Anat 143:335–340PubMedCrossRef
38.
Zurück zum Zitat Qiu YS, Shahgaldi BF, Revell WJ, Heatley FW (2003) Observations of subchondral plate advancement during osteochondral repair: a histomorphometric and mechanical study in the rabbit femoral condyle. Osteoarthritis Cartilage 11:810–820PubMedCrossRef Qiu YS, Shahgaldi BF, Revell WJ, Heatley FW (2003) Observations of subchondral plate advancement during osteochondral repair: a histomorphometric and mechanical study in the rabbit femoral condyle. Osteoarthritis Cartilage 11:810–820PubMedCrossRef
39.
Zurück zum Zitat Rahfoth B, Weisser J, Sternkopf F, Aigner T, von der M, Brauer R (1998) Transplantation of allograft chondrocytes embedded in agarose gel into cartilage defects of rabbits. Osteoarthritis Cartilage 6:50–65PubMedCrossRef Rahfoth B, Weisser J, Sternkopf F, Aigner T, von der M, Brauer R (1998) Transplantation of allograft chondrocytes embedded in agarose gel into cartilage defects of rabbits. Osteoarthritis Cartilage 6:50–65PubMedCrossRef
40.
Zurück zum Zitat Reinholz GG, Lu L, Saris DB, Yaszemski MJ, O’Driscoll SW (2004) Animal models for cartilage reconstruction. Biomaterials 25:1511–1521PubMedCrossRef Reinholz GG, Lu L, Saris DB, Yaszemski MJ, O’Driscoll SW (2004) Animal models for cartilage reconstruction. Biomaterials 25:1511–1521PubMedCrossRef
41.
Zurück zum Zitat Rudert M (2002) Histological evaluation of osteochondral defects: consideration of animal models with emphasis on the rabbit, experimental setup, follow-up and applied methods. Cells Tissues Organs 171:229–240PubMedCrossRef Rudert M (2002) Histological evaluation of osteochondral defects: consideration of animal models with emphasis on the rabbit, experimental setup, follow-up and applied methods. Cells Tissues Organs 171:229–240PubMedCrossRef
42.
Zurück zum Zitat Rudert M (2003) Kultur und Transplantation von Chondrozyten auf Polymer-Vliesen und lyophylisierter Dura. Biomaterialien 4:31–37 Rudert M (2003) Kultur und Transplantation von Chondrozyten auf Polymer-Vliesen und lyophylisierter Dura. Biomaterialien 4:31–37
43.
Zurück zum Zitat Rudert M, Hirschmann F, Schulze M, Wirth CJ (2000) Bioartificial cartilage. Cells Tissues Organs 167:95–105PubMedCrossRef Rudert M, Hirschmann F, Schulze M, Wirth CJ (2000) Bioartificial cartilage. Cells Tissues Organs 167:95–105PubMedCrossRef
44.
Zurück zum Zitat Rudert M, Hirschmann F, Wirth CJ (1999) Wachstumsverhalten von Chondrozyten auf unterschiedlichen Trägersubstanzen. Orthopäde 28:68–75PubMed Rudert M, Hirschmann F, Wirth CJ (1999) Wachstumsverhalten von Chondrozyten auf unterschiedlichen Trägersubstanzen. Orthopäde 28:68–75PubMed
45.
Zurück zum Zitat Rudert M, Wirth CJ, Schulze M, Reiss G (1998) Synthesis of articular cartilage like tissue in vitro. Arch Orthop Trauma Surg 117:141–146PubMedCrossRef Rudert M, Wirth CJ, Schulze M, Reiss G (1998) Synthesis of articular cartilage like tissue in vitro. Arch Orthop Trauma Surg 117:141–146PubMedCrossRef
46.
Zurück zum Zitat Sams AE, Minor RR, Wootton JA, Mohammed H, Nixon AJ (1995) Local and remote matrix responses to chondrocyte-laden collagen scaffold implantation in extensive articular cartilage defects. Osteoarthritis Cartilage 3:61–70PubMedCrossRef Sams AE, Minor RR, Wootton JA, Mohammed H, Nixon AJ (1995) Local and remote matrix responses to chondrocyte-laden collagen scaffold implantation in extensive articular cartilage defects. Osteoarthritis Cartilage 3:61–70PubMedCrossRef
47.
Zurück zum Zitat Schreiber RE, Ilten-Kirby BM, Dunkelman NS, Symons KT, Rekettye LM, Willoughby J, Ratcliffe A (1999) Repair of osteochondral defects with allogeneic tissue engineered cartilage implants. Clin Orthop 367 Suppl:S382–S395PubMed Schreiber RE, Ilten-Kirby BM, Dunkelman NS, Symons KT, Rekettye LM, Willoughby J, Ratcliffe A (1999) Repair of osteochondral defects with allogeneic tissue engineered cartilage implants. Clin Orthop 367 Suppl:S382–S395PubMed
48.
Zurück zum Zitat Shahgaldi BF, Amis AA, Heatley FW, McDowell J, Bentley G (1991) Repair of cartilage lesions using biological implants. A comparative histological and biomechanical study in goats. J Bone Joint Surg [Br] 73:57–64 Shahgaldi BF, Amis AA, Heatley FW, McDowell J, Bentley G (1991) Repair of cartilage lesions using biological implants. A comparative histological and biomechanical study in goats. J Bone Joint Surg [Br] 73:57–64
49.
Zurück zum Zitat Shapiro F, Koide S, Glimcher MJ (1993) Cell origin and differentiation in the repair of full-thickness defects of articular cartilage. J Bone Joint Surg [Am] 75:532–553 Shapiro F, Koide S, Glimcher MJ (1993) Cell origin and differentiation in the repair of full-thickness defects of articular cartilage. J Bone Joint Surg [Am] 75:532–553
50.
Zurück zum Zitat Solchaga LA, Gao J, Dennis JE, Awadallah A, Lundberg M, Caplan AI, Goldberg VM (2002) Treatment of osteochondral defects with autologous bone marrow in a hyaluronan-based delivery vehicle. Tissue Eng 8:333–347PubMedCrossRef Solchaga LA, Gao J, Dennis JE, Awadallah A, Lundberg M, Caplan AI, Goldberg VM (2002) Treatment of osteochondral defects with autologous bone marrow in a hyaluronan-based delivery vehicle. Tissue Eng 8:333–347PubMedCrossRef
51.
Zurück zum Zitat Stockwell RA (1979) Chondrogenesis and chondrocyte differentiation. In: Harrison RJ, McMinn RMH (eds) Biology of cartilage cells. Cambridge University Press, Cambridge, 179–212 Stockwell RA (1979) Chondrogenesis and chondrocyte differentiation. In: Harrison RJ, McMinn RMH (eds) Biology of cartilage cells. Cambridge University Press, Cambridge, 179–212
52.
Zurück zum Zitat Vacanti CA, Kim WS, Schloo B, Upton J, Vacanti JP (1994) Joint resurfacing with cartilage grown in situ from cell-polymer structures. Am J Sports Med 22:485–488PubMedCrossRef Vacanti CA, Kim WS, Schloo B, Upton J, Vacanti JP (1994) Joint resurfacing with cartilage grown in situ from cell-polymer structures. Am J Sports Med 22:485–488PubMedCrossRef
53.
Zurück zum Zitat van Susante JL, Buma P, Schuman L, Homminga GN, van den Berg WB, Veth RP (1999) Resurfacing potential of heterologous chondrocytes suspended in fibrin glue in large full-thickness defects of femoral articular cartilage: an experimental study in the goat. Biomaterials 20:1167–1175PubMedCrossRef van Susante JL, Buma P, Schuman L, Homminga GN, van den Berg WB, Veth RP (1999) Resurfacing potential of heterologous chondrocytes suspended in fibrin glue in large full-thickness defects of femoral articular cartilage: an experimental study in the goat. Biomaterials 20:1167–1175PubMedCrossRef
54.
Zurück zum Zitat von der Mark K (1986) Differentiation, modulation and dedifferentiation of chondrocytes. Rheumatology 10:272–315 von der Mark K (1986) Differentiation, modulation and dedifferentiation of chondrocytes. Rheumatology 10:272–315
55.
Zurück zum Zitat Wakitani S, Goto T, Pineda SJ, Young RG, Mansour JM, Caplan AI, Goldberg VM (1994) Mesenchymal cell-based repair of large, full-thickness defects of articular cartilage. J Bone Joint Surg [Am] 76:579–592 Wakitani S, Goto T, Pineda SJ, Young RG, Mansour JM, Caplan AI, Goldberg VM (1994) Mesenchymal cell-based repair of large, full-thickness defects of articular cartilage. J Bone Joint Surg [Am] 76:579–592
56.
Zurück zum Zitat Wakitani S, Kimura T, Hirooka A, Ochi T, Yoneda M, Yasui N, Owaki H, Ono K (1989) Repair of rabbit articular surfaces with allograft chondrocytes embedded in collagen gel. J Bone Joint Surg [Br] 71:74–80 Wakitani S, Kimura T, Hirooka A, Ochi T, Yoneda M, Yasui N, Owaki H, Ono K (1989) Repair of rabbit articular surfaces with allograft chondrocytes embedded in collagen gel. J Bone Joint Surg [Br] 71:74–80
57.
Zurück zum Zitat Weisser J, Rahfoth B, Timmermann A, Aigner T, Bräuer R, von der Mark K (2001) Role of growth factors in rabbit articular cartilage repair by chondrocytes in agarose. Osteoarthritis Cartilage 9(Suppl A):48–54CrossRef Weisser J, Rahfoth B, Timmermann A, Aigner T, Bräuer R, von der Mark K (2001) Role of growth factors in rabbit articular cartilage repair by chondrocytes in agarose. Osteoarthritis Cartilage 9(Suppl A):48–54CrossRef
58.
Zurück zum Zitat Werkmeister JA, Ramshaw JA (1989) Monoclonal antibodies to collagens for immunofluorescent examination of human skin. Acta Derm Venereol 69:399–402PubMed Werkmeister JA, Ramshaw JA (1989) Monoclonal antibodies to collagens for immunofluorescent examination of human skin. Acta Derm Venereol 69:399–402PubMed
59.
Zurück zum Zitat Wirth CJ, Rudert M (1996) Techniques of cartilage growth enhancement: a review of the literature. Arthroscopy 12:300–308PubMedCrossRef Wirth CJ, Rudert M (1996) Techniques of cartilage growth enhancement: a review of the literature. Arthroscopy 12:300–308PubMedCrossRef
Metadaten
Titel
Cell-based treatment of osteochondral defects in the rabbit knee with natural and synthetic matrices: cellular seeding determines the outcome
verfasst von
M. Rudert
U. Wilms
M. Hoberg
C. J. Wirth
Publikationsdatum
01.11.2005
Verlag
Springer-Verlag
Erschienen in
Archives of Orthopaedic and Trauma Surgery / Ausgabe 9/2005
Print ISSN: 0936-8051
Elektronische ISSN: 1434-3916
DOI
https://doi.org/10.1007/s00402-005-0008-2

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