The novel hyaluronic acid granular hydrogel attenuates osteoarthritis progression by inhibiting the TLR-2/NF-κB signaling pathway through suppressing cellular senescence.
新規ヒアルロン酸顆粒状ハイドロゲルは細胞老化の抑制を介してTLR-2/NF-κBシグナル伝達経路を阻害し、変形性関節症の進行を減弱する (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
- 未確定
- 出版年
- 2023
- 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)
軽度変形性関節症(OA)患者では、ヒアルロン酸(HA)の分解により6ヶ月間に2~4回の注射が必要であるが、頻回の注射は感染リスクや患者の負担となる。本研究では、分解耐性を向上させた新規HA顆粒状ハイドロゲル(n-HA)を開発し、その化学構造、注入可能性、形態、レオロジー特性、生分解性、細胞適合性を評価した。さらに、n-HAの老化関連炎症応答への影響をフローサイトメトリー、細胞化学染色、RT-qPCR、ウエスタンブロットで解析し、OAマウスモデル(ACLT)において、n-HAの単回注射と市販HA製品の4回連続注射の治療効果を比較した。n-HAは高架橋密度、良好な注入性、酵素分解耐性、生体適合性、抗炎症応答を示し、単回注射で市販品の4回注射と同等の治療効果を示した。その機序として、軟骨細胞の老化減弱がTLR-2発現抑制を介してNF-κB活性化を阻害することが示唆された。n-HAはOA治療における有望な代替療法となり得る。
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抄録
In patients with mild osteoarthritis (OA), two to four monthly injections are required for 6 months due to the degradation of hyaluronic acid (HA) by peroxidative cleavage and hyaluronidase. However, frequent injections may lead to local infection and also cause inconvenience to patients during the COVID-19 pandemic. Herein, we developed a novel HA granular hydrogel (n-HA) with improved degradation resistance. The chemical structure, injectable capability, morphology, rheological properties, biodegradability, and cytocompatibility of the n-HA were investigated. In addition, the effects of the n-HA on the senescence-associated inflammatory responses were studied via flow cytometry, cytochemical staining, Real time quantitative polymerase chain reaction (RT-qPCR), and western blot analysis. Importantly, the treatment outcome of the n-HA with one single injection relative to the commercial HA product with four consecutive injections within one treatment course in an OA mouse model underwent anterior cruciate ligament transection (ACLT) was systematically evaluated. Our developed n-HA exhibited a perfect unification of high crosslink density, good injectability, excellent resistance to enzymatic hydrolysis, satisfactory biocompatibility, and anti-inflammatory responses through a series of in vitro studies. Compared to the commercial HA product with four consecutive injections, a single injection of n-HA contributed to equivalent treatment outcomes in an OA mouse model in terms of histological analysis, radiographic, immunohistological, and molecular analysis results. Furthermore, the amelioration effect of the n-HA on OA development was partially ascribed to the attenuation of chondrocyte senescence, thereby leading to inhibition of TLR-2 expression and then blockade of NF-κB activation. Collectively, the n-HA may be a promising therapeutic alternative to current commercial HA products for OA treatment.
DOI 10.1002/btm2.10475
PMID 37206234
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