ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

A Novel Approach for Multiple Material Extrusion in Arthroscopic Knee Surgery.

関節鏡視下膝手術における複数材料押出のための新しいアプローチ (機械翻訳の邦題)

Annals of biomedical engineering2023Mazzocchi T, Guarnera D, Trucco D, et al.
研究デザインその他の原著論文
対象ヒト

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
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)

関節軟骨欠損や変性疾患に対する低侵襲治療として、生体材料の直接堆積法が注目されているが、関節鏡下で複数の材料を押出せるツールは少ない。本研究では、3種類の生体材料を同時に押出可能な新規デバイスを開発した。このデバイスは、可撓性チップを備え、最大90度まで曲げることができ、遠位部やチャネル収束部で最大約1.2 kPaのせん断応力が生じるが、細胞生存率に影響しないことを確認した。また、屍体膝を用いた関節鏡下試験で、従来の器具では到達困難な領域への材料送達が可能であることを実証した。

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

Articular cartilage defects and degenerative diseases are pathological conditions that cause pain and the progressive loss of joint functionalities. The most severe cases are treated through partial or complete joint replacement with prostheses, even if the interest in cartilage regeneration and re-growth methods is steadily increasing. These methods consist of the targeted deposition of biomaterials. Only a few tools have been developed so far for performing these procedures in a minimally invasive way. This work presents an innovative device for the direct deposition of multiple biomaterials in an arthroscopic scenario. The tool is easily handleable and allows the extrusion of three different materials simultaneously. It is also equipped with a flexible tip to reach remote areas of the damaged cartilage. Three channels are arranged coaxially and a spring-based dip-coating approach allows the fabrication and assembly of a bendable polymeric tip. Experimental tests were performed to characterize the tip, showing the ability to bend it up to 90° (using a force of ~ 1.5 N) and to extrude three coaxial biomaterials at the same time with both tip straight and tip fully bent. Rheometric analysis and fluid-dynamic computational simulations were performed to analyze the fluids' behavior; the maximum shear stresses were observed in correspondence to the distal tip and the channel convergence chamber, but with values up to ~ 1.2 kPa, compatible with a safe extrusion of biomaterials, even laden with cells. The cells viability was assessed after the extrusion with Live/Dead assay, confirming the safety of the extrusion procedures. Finally, the tool was tested arthroscopically in a cadaveric knee, demonstrating its ability to deliver the biomaterial in different areas, even ones that are typically hard-to-reach with traditional tools.

MeSH

ArthroscopyBiocompatible MaterialsCartilage, ArticularCell SurvivalHumansKnee JointOsteoarthritis, Knee

DOI 10.1007/s10439-022-03061-5

PMID 36057760

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