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Design and Evaluation of a Crosslinked Chitosan-Based Scaffold Containing Hyaluronic Acid for Articular Cartilage Reconstruction.

関節軟骨再建のための架橋キトサン基質ヒアルロン酸含有足場材料の設計と評価 (機械翻訳の邦題)

Molecules (Basel, Switzerland)2025Hamidi S, Maton M, Hildebrand F, 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
2025
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、軟骨組織工学のための足場材料として、キトサンとヒアルロン酸からなる凍結乾燥ハイドロゲルを設計し評価した。酸化マルトデキストリンによる架橋処理を施し、スポンジ状の多孔質足場を作製した。架橋により、膨潤性の低下、分解速度の遅延、剛性の向上が確認され、架橋剤として有効であることが示された。また、シプロフロキサシンを担持することで薬剤送達能が確認され、微生物学的評価でも有効性が示された。細胞毒性試験では毒性を示さず、架橋足場は安定性、機能性、機械的特性に優れ、軟骨組織工学への応用が期待される。

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

Polymeric scaffolds are promising in tissue engineering due to their structural similarity to extracellular matrix components. This study aimed to design freeze-dried hydrogels based on chitosan (CHT) and hyaluronic acid (HA). Chitosan-based gels were crosslinked with oxidized maltodextrin (MDo) before the freeze-drying step, resulting in spongy porous scaffolds. Based on the state-of-the-art, our hypothesis was that crosslinking would increase scaffold stiffness and delay the degradation of the CHT:HA resorbable scaffolds swelled in a hydrated physiological environment. The physicochemical and mechanical properties of crosslinked CHT- and CHT:HA-based scaffolds were analyzed. Hygroscopic and swelling behavior were assessed using dynamic vapor sorption analysis and batch studies. Degradation was evaluated under different conditions, including in phosphate-buffered saline (PBS), PBS with lysozyme, and lactic acid solutions, to investigate scaffold resistance against enzymatic and acidic degradation. The porosity of the spongy materials was characterized using scanning electron microscopy, while dynamic mechanical analysis provided information on the mechanical properties. Crosslinked scaffolds showed reduced swelling, slower degradation rates, and increased stiffness, confirming MDo as an effective crosslinking agent. Scaffolds loaded with ciprofloxacin (CFX) demonstrated their ability to deliver therapeutic agents, as the CFX loading capacity was promoted by CHT-CFX interactions. Microbiologic investigation confirmed the results. Finally, cytotoxicity tests displayed no toxicity. In conclusion, MDo-crosslinked CHT and CHT:HA scaffolds exhibit enhanced stability, functionality, and mechanical performance, making them promising for cartilage tissue engineering.

MeSH

AnimalsBiocompatible MaterialsCartilage, ArticularChitosanCross-Linking ReagentsHumansHyaluronic AcidHydrogelsPorosityTissue EngineeringTissue Scaffolds

DOI 10.3390/molecules30102202

PMID 40430373

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