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首页> 外文期刊>Aesthetic plastic surgery >Mechanical and biological evaluations of beta-tricalcium phosphate/silicone rubber composite as a novel soft-tissue implant.
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Mechanical and biological evaluations of beta-tricalcium phosphate/silicone rubber composite as a novel soft-tissue implant.

机译:机械和生物学评估的β-磷酸三钙/硅橡胶复合材料作为一种新型的软组织植入物。

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BACKGROUND: Although silicone rubber (SR) implants are most commonly used and effective for soft-tissue augmentation, they still have been implicated in many adverse reactions. To overcome this problem, a novel composite beta-tricalcium phosphate/silicone rubber (beta-TCP/SR) was prepared by adding beta-TCP into a SR matrix. This study was to evaluate its application potential by investigating the mechanical properties and biocompatibility of beta-TCP/SR. METHODS: Mechanical properties, including Shore A hardness and tensile strength, were evaluated with 3-mm-thick samples and a universal testing machine. Cytocompatibility tests were conducted in vitro using 0.2-mm-thick beta-TCP/SR samples by seeding fibroblasts onto different samples. Soft-tissue response to beta-TCP/SR and pull-out measurements were investigated 4 weeks and 24 weeks after implantation. RESULTS: The main mechanical properties were all significantly changed after mixing beta-TCP into the SR matrix, except for tearing strength. The cytocompatibility test showed enhanced adhesion and proliferation of fibroblasts onto beta-TCP/SR. Fibrous tissue ingrowth after resorption of beta-TCP was observed by in vivo histologic analysis. The peri-implant capsules in the beta-TCP/SR group were thinner than in the SR group 24 weeks after implantation. In a 24-week test, the maximum force required to pull out the beta-TCP/SR sheet was about six times greater than that needed for SR. CONCLUSION: Although some mechanical properties were significantly changed, the results of the cytocompatibility test and in vivo animal study still suggest that beta-TCP/SR may be more suitable as a soft-tissue implant than SR and has the potential to be used in plastic surgery.
机译:背景:尽管硅橡胶(SR)植入物最常用于软组织增强,并且有效,但它们仍与许多不良反应有关。为克服此问题,通过将β-TCP添加到SR基质中来制备新型的复合β-磷酸三钙/硅橡胶(β-TCP/ SR)。本研究旨在通过研究β-TCP/ SR的机械性能和生物相容性来评估其应用潜力。方法:使用3毫米厚的样品和通用测试机评估了机械性能,包括肖氏A硬度和拉伸强度。通过将成纤维细胞接种到不同样品上,使用0.2毫米厚的β-TCP/ SR样品在体外进行细胞相容性测试。植入后4周和24周,研究了软组织对beta-TCP / SR的反应和拉出测量。结果:将β-TCP混合到SR基质中后,除撕裂强度外,所有主要机械性能均发生了显着变化。细胞相容性测试显示成纤维细胞在β-TCP/ SR上的粘附和增殖增强。通过体内组织学分析观察到β-TCP吸收后纤维组织向内生长。植入后24周,β-TCP/ SR组的植入物周围胶囊比SR组的薄。在24周的测试中,拉出beta-TCP / SR板所需的最大力大约是SR所需力的六倍。结论:尽管一些机械性能发生了显着变化,但是细胞相容性测试和体内动物研究的结果仍然表明,β-TCP/ SR可能比SR更适合作为软组织植入物,并且有可能在塑料中使用手术。

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