UCアーバインの研究者が関節炎緩和のための組織工学的アプローチを提唱(UC Irvine researchers advocate for tissue-engineering approach for arthritis relief)

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2024-09-04 カリフォルニア大学校アーバイン校(UCI)

UC Irvineの研究者は、関節炎治療における組織工学的アプローチを提唱し、効果的な軟骨再生治療の開発が可能であると述べています。彼らは「Nature Reviews Rheumatology」で、600万人が苦しむ重度の変形性関節症や関節リウマチに対する治療法の臨床試験や規制の重要性を強調。最新の技術進展により、免疫調節材料や合成生物学を用いた軟骨移植の開発が進んでおり、規制機関との連携や商業化が今後の課題です。

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軟骨組織工学の革新と翻訳における最近の進歩 Recent advancements in cartilage tissue engineering innovation and translation

Rachel C. Nordberg,Benjamin J. Bielajew,Takumi Takahashi,Shuyan Dai,Jerry C. Hu & Kyriacos A. Athanasiou
Nature Reviews Rheumatology  Published:13 May 2024
DOI:https://doi.org/10.1038/s41584-024-01118-4

UCアーバインの研究者が関節炎緩和のための組織工学的アプローチを提唱(UC Irvine researchers advocate for tissue-engineering approach for arthritis relief)

Abstract

Articular cartilage was expected to be one of the first successfully engineered tissues, but today, cartilage repair products are few and they exhibit considerable limitations. For example, of the cell-based products that are available globally, only one is marketed for non-knee indications, none are indicated for severe osteoarthritis or rheumatoid arthritis, and only one is approved for marketing in the USA. However, advances in cartilage tissue engineering might now finally lead to the development of new cartilage repair products. To understand the potential in this field, it helps to consider the current landscape of tissue-engineered products for articular cartilage repair and particularly cell-based therapies. Advances relating to cell sources, bioactive stimuli and scaffold or scaffold-free approaches should now contribute to progress in therapeutic development. Engineering for an inflammatory environment is required because of the need for implants to withstand immune challenge within joints affected by osteoarthritis or rheumatoid arthritis. Bringing additional cartilage repair products to the market will require an understanding of the translational vector for their commercialization. Advances thus far can facilitate the future translation of engineered cartilage products to benefit the millions of patients who suffer from cartilage injuries and arthritides.

医療・健康
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