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Effect of Poloxamer 407 as a carrier vehicle on rotator cuff healing in a rat model

机译:泊洛沙姆407作为运载工具对大鼠模型肩袖愈合的影响

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Background In vivo studies showing the effects of biologic healing-promoting factors on tendon-to-bone healing after rotator cuff repair have focused only on biologic healing-promoting factors and have not taken into consideration the effect of the carrier vehicle. Moreover, most studies have evaluated the healing process using different carrier vehicles, each of which may have specific effects on tendon healing. This may explain the large variability seen in outcomes in research studies. In this study, we investigated the effects of Poloxamer 407 as a carrier vehicle on rotator cuff healing at the repair site and compared it with those of a collagen sponge, which is a commonly used carrier vehicle. Methods Fifty-seven adult male Sprague–Dawley rats underwent detachment and immediate repair of the bilateral supraspinatus tendons. Rats were randomly assigned to three groups: repair only, repair with collagen sponge, and repair with Poloxamer 407. The repairs were evaluated at 1, 2, 4, and 8?weeks after surgery with histological analysis and biomechanical testing. Results At 4?weeks, more cellular organization, a greater number of collagen fibers, and increased maturity of collagen fibers were observed in the repair with Poloxamer 407 group than in the other groups. The repair with collagen sponge group had delayed development and collagen fiber maturation. Significant differences in the biomechanical properties were found between groups at 4?weeks. Stiffness in the case of the repair with Poloxamer 407 group was significantly higher than that in the repair with collagen sponge group. The modulus was significantly lower in the repair with collagen sponge group than in the repair only group. However, the use of Poloxamer 407 versus the collagen sponge did not significantly affect the biomechanical properties of the repaired tendons at 8?weeks. Conclusions Carrier vehicles may have differing effects at the early stages of rotator cuff healing. The use of Poloxamer 407 as a carrier vehicle may be useful for promoting the early stages of healing and for maintaining the initial biomechanical properties of the repaired rotator cuff tendon.
机译:背景技术体内研究表明,生物修复促进因子对肩袖修复后肌腱至骨愈合的影响仅集中于生物修复促进因子,并未考虑载体的作用。而且,大多数研究已经使用不同的载体评估了愈合过程,每种载体对肌腱的愈合都有特定的影响。这可以解释研究结果中的巨大差异。在这项研究中,我们研究了泊洛沙姆407作为载体对修复部位肩袖愈合的作用,并将其与胶原海绵(通常使用的载体)进行了比较。方法对57只成年雄性Sprague-Dawley大鼠进行分离并立即修复双侧棘上肌腱。将大鼠随机分为三组:仅修复,用胶原海绵修复和用泊洛沙姆407修复。在手术后第1、2、4和8周通过组织学分析和生物力学测试评估修复情况。结果在4周时,与其他组相比,在用泊洛沙姆407组进行的修复中观察到更多的细胞组织,更多的胶原纤维和胶原纤维的成熟度增加。胶原海绵修复可延缓发育和胶原纤维成熟。在4周时,各组之间的生物力学特性存在显着差异。泊洛沙姆407组修复的刚度明显高于胶原海绵组修复的刚度。胶原海绵修复组的模量明显低于单纯修复组。但是,泊洛沙姆407与胶原蛋白海绵的使用并没有显着影响8周时修复肌腱的生物力学性能。结论运载工具在肩袖愈合的早期阶段可能具有不同的作用。泊洛沙姆407作为载体的用途可能对促进愈合的早期阶段和维持修复的肩袖肌腱的初始生物力学特性有用。

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