The effect of silk concentration on the flexural strength of FRC as a Bone Graft

Rifki Moechtar, S. Sunarintyas, M. K. Herliansyah
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Abstract

Bone fractures are mostly caused by trauma and disease. In the therapeutic process of bone healing which often meets some constraints, bone graft is mainly used to ensure that the healing process takes place. A fiber reinforced composite (FRC) is a popular bone graft material that is made to resemble bone properties. FRC is normally comprised of polymer matrix, hydroxyapatite filler, and fiber. Hydroxyapatite is a bioactive material widely used as a bone graft. Silk fiber is known as a reliable material to increase mechanical strength of the FRC. On this basis, this study aims to determine the effect of silk fiber concentration on the flexural strength of FRC. Fiber reinforced composite made of Bis-GMA/TEGDMA/ UDMA resin (CharmFil®, DenKist, Korea), hydroxyapatite (Bioceramic Laboratory, DTMI UGM) and silk fiber (Perhutani, Pati) were divided into three groups. Each group contained different silk fiber concentrations which were 1%, 5% and 10%. The flexural strength test was performed with 3-point bending test according to ISO 10477. The result showed that FRC with silk fiber 1%, 5% and 10% respectively had flexural strength of 61.21 ± 8.43 MPa, 62.97 ± 3.92 MPa and 85.01 ± 7.71 MPa. The result of one way ANAVA analysis showed that mean of FRCs flexural strength were significantly different between one treatment group to another. Thus, it is conclusive that silk fiber has a significant effect on FRCs flexural strength. The addition of 10% concentration of silk fiber is proven to increase FRCs flexural strength.
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丝浓度对FRC骨移植物抗弯强度的影响
骨折多由外伤和疾病引起。在骨愈合的治疗过程中往往会遇到一些限制,骨移植主要用于保证愈合过程的发生。纤维增强复合材料(FRC)是一种流行的骨移植材料,它被制成类似骨的特性。FRC通常由聚合物基体、羟基磷灰石填料和纤维组成。羟基磷灰石是一种生物活性材料,广泛应用于骨移植。蚕丝纤维被认为是提高纤维纤维机械强度的可靠材料。在此基础上,本研究旨在确定丝纤维浓度对FRC抗弯强度的影响。由Bis-GMA/TEGDMA/ UDMA树脂(CharmFil®,DenKist, Korea)、羟基磷灰石(biocceramic Laboratory, DTMI UGM)和丝纤维(Perhutani, Pati)组成的纤维增强复合材料分为三组。各组蚕丝纤维浓度分别为1%、5%和10%。弯曲强度试验采用ISO 10477标准的三点弯曲试验。结果表明,丝纤维含量分别为1%、5%和10%的FRC抗弯强度分别为61.21±8.43 MPa、62.97±3.92 MPa和85.01±7.71 MPa。单向ANAVA分析结果显示,两组间FRCs抗弯强度均值差异显著。由此可见,丝纤维对FRCs抗弯强度有显著影响。结果表明,添加10%浓度的丝纤维可提高纤维纤维的抗弯强度。
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