Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study

Objective:Since, there is no standardized technique for the treatment of focal cartilage defects that can recreate original cartilage tissue; researchers continue to explore and evaluate various treatment modalities. This study compared post-operative healing of cartilage defects after treatment wit...

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Published in:Bezmiâlem Science
Main Authors: Vahdet UÇAN, Fatih YILDIZ, Nuh Mehmet ELMADAĞ, Gökçer UZER, Yunus GÜZEL, Olgu Enis TOK, Mukaddes EŞREFOĞLU
Format: Article
Language:English
Published: Bezmiâlem Vakif University 2021-03-01
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Online Access: http://bezmialemscience.org/archives/archive-detail/article-preview/comparison-of-small-diameter-hole-and-traditional-/43881
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author Vahdet UÇAN
Fatih YILDIZ
Nuh Mehmet ELMADAĞ
Gökçer UZER
Yunus GÜZEL
Olgu Enis TOK
Mukaddes EŞREFOĞLU
author_facet Vahdet UÇAN
Fatih YILDIZ
Nuh Mehmet ELMADAĞ
Gökçer UZER
Yunus GÜZEL
Olgu Enis TOK
Mukaddes EŞREFOĞLU
author_sort Vahdet UÇAN
collection DOAJ
container_title Bezmiâlem Science
description Objective:Since, there is no standardized technique for the treatment of focal cartilage defects that can recreate original cartilage tissue; researchers continue to explore and evaluate various treatment modalities. This study compared post-operative healing of cartilage defects after treatment with small-diameter-hole microfracture (SDHM) technique with that of traditional microfracture technique. The effects of the hole density and augmentation with hyaluronic acid-based acellular matrix (HA-based AM) on cartilage healing were also investigated.Methods:Articular cartilage defects measuring 5 mm in diameter and 3 mm in depth were created in each femoral trochlear groove of 21 New Zealand rabbits. Rabbits were assigned to seven groups comprising six knees each. The rabbits were sacrificed 12 weeks later, and the regenerated cartilage was harvested for histological evaluation using the Wakitani scoring system.Results:All defects were filled with regenerated tissue macroscopically. Group I (14; range 10-14 points) had significantly higher Wakitani score than in groups VI (6; range 1-11 points) and VII (5; range 3-10 points) (p=0.043 and p=0.016, respectively). No significant differences were observed among the other groups. Augmentation with HA-based AM did not contribute to cartilage healing.Conclusion:Improved cartilage healing was observed with increasing SDHM density than with traditional microfracture technique. SDHM combined with HA-based AM implantation did not improve the quality of the regenerated cartilage.
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spelling doaj-e7b9d9c3432746fca8e3be0b703a079d2025-11-03T00:55:15ZengBezmiâlem Vakif UniversityBezmiâlem Science2148-23732148-23732021-03-0191849010.14235/bas.galenos.2020.375113049054Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal StudyVahdet UÇAN0Fatih YILDIZ1Nuh Mehmet ELMADAĞ2Gökçer UZER3Yunus GÜZEL4Olgu Enis TOK5Mukaddes EŞREFOĞLU6 Bezmialem Vakıf University Faculty of Medicine, Department of Orthopedics and Traumatology, İstanbul, Turkey Bezmialem Vakıf University Faculty of Medicine, Department of Orthopedics and Traumatology, İstanbul, Turkey Bezmialem Vakıf University Faculty of Medicine, Department of Orthopedics and Traumatology, İstanbul, Turkey Bezmialem Vakıf University Faculty of Medicine, Department of Orthopedics and Traumatology, İstanbul, Turkey Ordu University Faculty of Medicine, Department of Orthopedics and Traumatology, Ordu, Turkey Bezmialem Vakıf University Faculty of Medicine, Department of Histology and Embryology, İstanbul, Turkey Bezmialem Vakıf University Faculty of Medicine, Department of Histology and Embryology, İstanbul, Turkey Objective:Since, there is no standardized technique for the treatment of focal cartilage defects that can recreate original cartilage tissue; researchers continue to explore and evaluate various treatment modalities. This study compared post-operative healing of cartilage defects after treatment with small-diameter-hole microfracture (SDHM) technique with that of traditional microfracture technique. The effects of the hole density and augmentation with hyaluronic acid-based acellular matrix (HA-based AM) on cartilage healing were also investigated.Methods:Articular cartilage defects measuring 5 mm in diameter and 3 mm in depth were created in each femoral trochlear groove of 21 New Zealand rabbits. Rabbits were assigned to seven groups comprising six knees each. The rabbits were sacrificed 12 weeks later, and the regenerated cartilage was harvested for histological evaluation using the Wakitani scoring system.Results:All defects were filled with regenerated tissue macroscopically. Group I (14; range 10-14 points) had significantly higher Wakitani score than in groups VI (6; range 1-11 points) and VII (5; range 3-10 points) (p=0.043 and p=0.016, respectively). No significant differences were observed among the other groups. Augmentation with HA-based AM did not contribute to cartilage healing.Conclusion:Improved cartilage healing was observed with increasing SDHM density than with traditional microfracture technique. SDHM combined with HA-based AM implantation did not improve the quality of the regenerated cartilage. http://bezmialemscience.org/archives/archive-detail/article-preview/comparison-of-small-diameter-hole-and-traditional-/43881 microfracturecartilage repairsmall-diameter-hole microfracturehyaluronic-acid-based acellular matrixcartilage healing
spellingShingle Vahdet UÇAN
Fatih YILDIZ
Nuh Mehmet ELMADAĞ
Gökçer UZER
Yunus GÜZEL
Olgu Enis TOK
Mukaddes EŞREFOĞLU
Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study
microfracture
cartilage repair
small-diameter-hole microfracture
hyaluronic-acid-based acellular matrix
cartilage healing
title Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study
title_full Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study
title_fullStr Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study
title_full_unstemmed Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study
title_short Comparison of Small-diameter-hole and Traditional Microfracture in Cartilage Repair and the Effect of Adding a Hyaluronic Acid-based Acellular Matrix Scaffold: An Animal Study
title_sort comparison of small diameter hole and traditional microfracture in cartilage repair and the effect of adding a hyaluronic acid based acellular matrix scaffold an animal study
topic microfracture
cartilage repair
small-diameter-hole microfracture
hyaluronic-acid-based acellular matrix
cartilage healing
url http://bezmialemscience.org/archives/archive-detail/article-preview/comparison-of-small-diameter-hole-and-traditional-/43881
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