Improved cartilage regeneration by implantation of acellular biomaterials after bone marrow stimulation: a systematic review and meta-analysis of animal studies.
骨髄刺激後の無細胞生体材料の移植による軟骨再生の改善:動物研究の系統的レビューとメタ分析 (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 未確定
- 出版年
- 2016
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/04
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
本研究は、骨髄刺激法(マイクロフラクチャーや骨髄穿刺)後の無細胞生体材料移植が軟骨再生に及ぼす効果を、動物モデルを用いた既存研究の系統的レビューとメタ分析により評価した。PubMedとEMBASEから関連研究を検索し、膝または足首の骨軟骨欠損に無細胞生体材料を移植した一次研究283件を抽出した。うち、未治療の空欠損と比較し半定量的組織学を指標とした135件のリスク・オブ・バイアス評価と151件のメタ分析を実施した。その結果、生体材料の移植は未治療対照と比較して軟骨再生を15.6%有意に改善し、生物学的製剤の添加はさらに7.6%改善した。天然由来と合成由来の材料間、また足場、ハイドロゲル、ブレンド間に有意差はなかった。動物モデル間の差も認められなかった。しかし、多くの研究で報告の質が低く、実際のバイアス評価は困難であった。結論として、無細胞生体材料の移植は軟骨再生を改善し、生物学的製剤の添加がさらなる改善をもたらすことが示された。
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抄録
Microfracture surgery may be applied to treat cartilage defects. During the procedure the subchondral bone is penetrated, allowing bone marrow-derived mesenchymal stem cells to migrate towards the defect site and form new cartilage tissue. Microfracture surgery generally results in the formation of mechanically inferior fibrocartilage. As a result, this technique offers only temporary clinical improvement. Tissue engineering and regenerative medicine may improve the outcome of microfracture surgery. Filling the subchondral defect with a biomaterial may provide a template for the formation of new hyaline cartilage tissue. In this study, a systematic review and meta-analysis were performed to assess the current evidence for the efficacy of cartilage regeneration in preclinical models using acellular biomaterials implanted after marrow stimulating techniques (microfracturing and subchondral drilling) compared to the natural healing response of defects. The review aims to provide new insights into the most effective biomaterials, to provide an overview of currently existing knowledge, and to identify potential lacunae in current studies to direct future research. A comprehensive search was systematically performed in PubMed and EMBASE (via OvidSP) using search terms related to tissue engineering, cartilage and animals. Primary studies in which acellular biomaterials were implanted in osteochondral defects in the knee or ankle joint in healthy animals were included and study characteristics tabulated (283 studies out of 6,688 studies found). For studies comparing non-treated empty defects to defects containing implanted biomaterials and using semi-quantitative histology as outcome measure, the risk of bias (135 studies) was assessed and outcome data were collected for meta-analysis (151 studies). Random-effects meta-analyses were performed, using cartilage regeneration as outcome measure on an absolute 0-100% scale. Implantation of acellular biomaterials significantly improved cartilage regeneration by 15.6% compared to non-treated empty defect controls. The addition of biologics to biomaterials significantly improved cartilage regeneration by 7.6% compared to control biomaterials. No significant differences were found between biomaterials from natural or synthetic origin or between scaffolds, hydrogels and blends. No noticeable differences were found in outcome between animal models. The risk of bias assessment indicated poor reporting for the majority of studies, impeding an assessment of the actual risk of bias. In conclusion, implantation of biomaterials in osteochondral defects improves cartilage regeneration compared to natural healing, which is further improved by the incorporation of biologics.
DOI 10.7717/peerj.2243
PMID 27651981
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