Trophic effects of adipose-tissue-derived and bone-marrow-derived mesenchymal stem cells enhance cartilage generation by chondrocytes in co-culture.
脂肪組織由来および骨髄由来間葉系幹細胞の栄養効果が軟骨細胞との共培養における軟骨形成を促進する (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
- ヒト・動物 併記
- 出版年
- 2018
- 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)
間葉系幹細胞(MSC)と軟骨細胞の共培養は軟骨修復に有望であるが、その機序は不明である。本研究では、ヒト脂肪組織由来MSC(hAMSC)および骨髄由来MSC(hBMSC)とウシ関節軟骨細胞(bAC)をアルギン酸塩中で共培養し、in vitroおよびマウス皮下移植で軟骨形成を評価した。また、共培養、ペレット培養、トランスウェル、馴化培地を用いて細胞間相互作用を検討した。その結果、hMSCの存在は培養中の軟骨形成を増強し、特にhBMSCでGAG沈着が顕著に増加した。種特異的遺伝子発現解析により、アグリカンはbACのみで発現し、hMSCは栄養的役割を担うことが示された。in vivoでは、hAMSC/bACとhBMSC/bACで軟骨基質産生は同等で、安定で石灰化しなかった。結論として、bACの80%をhMSCに置換しても軟骨形成は維持され、hMSCが産生する栄養因子により残存軟骨細胞の基質産生が促進されることが示された。
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抄録
Aims: Combining mesenchymal stem cells (MSCs) and chondrocytes has great potential for cell-based cartilage repair. However, there is much debate regarding the mechanisms behind this concept. We aimed to clarify the mechanisms that lead to chondrogenesis (chondrocyte driven MSC-differentiation versus MSC driven chondroinduction) and whether their effect was dependent on MSC-origin. Therefore, chondrogenesis of human adipose-tissue-derived MSCs (hAMSCs) and bone-marrow-derived MSCs (hBMSCs) combined with bovine articular chondrocytes (bACs) was compared.Methods: hAMSCs or hBMSCs were combined with bACs in alginate and cultured in vitro or implanted subcutaneously in mice. Cartilage formation was evaluated with biochemical, histological and biomechanical analyses. To further investigate the interactions between bACs and hMSCs, (1) co-culture, (2) pellet, (3) Transwell® and (4) conditioned media studies were conducted.Results: The presence of hMSCs-either hAMSCs or hBMSCs-increased chondrogenesis in culture; deposition of GAG was most evidently enhanced in hBMSC/bACs. This effect was similar when hMSCs and bAC were combined in pellet culture, in alginate culture or when conditioned media of hMSCs were used on bAC. Species-specific gene-expression analyses demonstrated that aggrecan was expressed by bACs only, indicating a predominantly trophic role for hMSCs. Collagen-10-gene expression of bACs was not affected by hBMSCs, but slightly enhanced by hAMSCs. After in-vivo implantation, hAMSC/bACs and hBMSC/bACs had similar cartilage matrix production, both appeared stable and did not calcify.Conclusions: This study demonstrates that replacing 80% of bACs by either hAMSCs or hBMSCs does not influence cartilage matrix production or stability. The remaining chondrocytes produce more matrix due to trophic factors produced by hMSCs.
MeSH
DOI 10.1371/journal.pone.0190744
PMID 29489829
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