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首页> 外文期刊>Journal of biomedical materials research, Part A >Bio-engineered synovial membrane to prevent tendon adhesions in rabbit flexor tendon model
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Bio-engineered synovial membrane to prevent tendon adhesions in rabbit flexor tendon model

机译:生物工程滑膜预防兔屈肌腱模型中肌腱粘连

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During tendon injuries, the tendon sheath is also damaged. This study aims to test effectiveness of engineered tendon synovial cell biomembrane on prevention of adhesions. Forty New Zealand Rabbits enrolled into four study groups. Engineered synovial sheath was produced by culturing cell suspension on fabricated collagen matrix membrane. Study groups were: tendon repair (group A), tendon repair zone covered with plane matrix (Group B), synovial suspension injection into the zone of repair over matrix (Group C), and biomembrane application (Group D). Biomechanical evaluations of tendon excursion, metacarpophalangeal and proximal interphalangeal joints range of motion, H&E and Alcian Blue with neutral red staining, and adhesion formation graded for histological assessments were studied. Ten non-operated extremities used as control. Tendon excursions and range of motions were significantly higher and close to control group for Group D, p<0.05. Adhesion formation was not different among Groups C, D, and Control, p>0.005. Hyaluronic acid synthesis was demonstrated at groups C and D at the zone of injury. Application of synovial cells into the tendon repair zone either by cell suspension or within a biomembrane significantly decreases the adhesion formation. Barrier effect of collagen matrix and restoration of hyaluronic acid synthesis can explain the possible mechanism of action. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 103A: 84-90, 2015.
机译:在肌腱受伤期间,肌腱鞘也会受损。这项研究旨在测试工程化的腱滑膜细胞生物膜在预防粘连方面的有效性。 40只新西兰兔被分为四个研究组。通过在制备的胶原基质膜上培养细胞悬浮液来生产工程滑膜鞘。研究组为:肌腱修复(A组),被平面基质覆盖的肌腱修复区域(B组),向基质修复区域注入滑膜悬浮液(C组)和生物膜应用(D组)。研究了肌腱偏移,掌指和近端指间关节的运动范围,H&E和Alcian Blue以及中性红染色的生物力学评估,并对粘附形成进行了分级,以进行组织学评估。十个非手术肢体用作对照。 D组的肌腱偏移和运动范围明显高于对照组,p <0.05。 C,D组和对照组之间的附着力形成没有差异,p> 0.005。在损伤区域的C和D组证明了透明质酸的合成。通过细胞悬浮液或在生物膜内将滑膜细胞施加到肌腱修复区中,可显着减少粘附形成。胶原蛋白基质的屏障作用和透明质酸合成的恢复可以解释其可能的作用机理。 (c)2014 Wiley Periodicals,Inc. J Biomed Mater Res Part A:103A:84-90,2015年。

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