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Pain relief and cartilage repair by Nanofat against osteoarthritis: preclinical and clinical evidence.

ナノファットによる変形性関節症の疼痛緩和と軟骨修復:前臨床および臨床的エビデンス (機械翻訳の邦題)

Stem cell research & therapy2021Chen Z, Ge Y, Zhou L, et al.
研究デザインその他の原著論文
対象ヒト・動物 併記

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
2021
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)

変形性関節症(OA)は最も一般的な関節変性疾患であるが、有効な治療法は限られている。脂肪組織由来の細胞カクテルであるナノファットの抗OA効果を基礎的・臨床的に検討した。フローサイトメトリーで特性解析し、モノヨード酢酸誘発OAラットモデルでin vivo評価、軟骨細胞でin vitro評価、さらにOA患者を対象に後ろ向き解析を行った。その結果、ナノファットは疼痛症状を有意に軽減し、軟骨ECM(Col2)の損傷を保護した。その効果は脂肪由来幹細胞と有意差がなかった。in vitroでは軟骨細胞の生存と遊走を促進し、IL-1β誘発の遺伝子・タンパク質発現異常を改善した。その作用は共培養と馴化培地で同様であり、パラクライン機構が示唆された。臨床データでも疼痛緩和と軟骨修復が認められ、有害事象はなかった。ナノファットはOAに対する有望な細胞治療である。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Background: Osteoarthritis (OA) is the most common joint degenerative disorder, with little effective therapy to date. Nanofat is a cocktail of cells obtained from fat tissue, which possesses regenerative capacity and has a potential in treating OA. This study aimed to determine the anti-OA efficacy of Nanofat from basic and clinical aspects and explore its action mode.Methods: Flow cytometry was performed to characterize Nanofat. A monoiodoacetate-induced OA rat model was employed for in vivo study. Cell viability and wound healing assays were conducted for in vitro study. Real-time PCR and Western blot assays were applied to explore the molecular action mode of Nanofat. Moreover, a retrospective analysis was conducted to determine the clinical efficacy and safety of Nanofat on knee OA patients.Results: The in vivo results showed that Nanofat significantly attenuated pain symptoms and protected cartilage ECM (Col2) from damage, and its effects were not significantly differed with adipose tissue-derived stem cells (both P > 0.05). The in vitro results showed that Nanofat promoted the cell viability and migration of chondrocytes and significantly restored the IL-1β-induced abnormal gene expressions of Col2, Aggrecan, Sox9, Adamts5, Mmp3, Mmp9 Mmp13, IL-6 and Col10 and protein expressions of Col2, MMP9, MMP13, and Sox9 of chondrocytes. The regulatory actions of Nanofat on these anabolic, catabolic, and hypertrophic molecules of chondrocytes were similar between two treatment routes: co-culture and conditioned medium, suggesting a paracrine-based mode of action of Nanofat. Moreover, the clinical data showed that Nanofat relieved pain and repaired damaged cartilage of OA patients, with no adverse events.Conclusion: In sum, this study demonstrated the anti-OA efficacy as well as a paracrine-based action mode of Nanofat, providing novel knowledge of Nanofat and suggesting it as a promising and practical cell therapy for clinical treatment of OA.

MeSH

AnimalsCartilageCartilage, ArticularCells, CulturedChondrocytesHumansOsteoarthritis, KneePainRatsRetrospective Studies

DOI 10.1186/s13287-021-02538-9

PMID 34446107

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