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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Melatonin-induced osteogenesis with methanol-annealed silk materials
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Melatonin-induced osteogenesis with methanol-annealed silk materials

机译:用甲醇退火丝绸材料诱导褪黑激素诱导的骨质发生

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摘要

Melatonin, a hormone produced in the pineal gland, has been investigated for bone repair, remodeling, osteoporosis, as well as osseointegration of the implants. In this study, different concentrations of melatonin (0-2000-mu M) were embedded into silk films annealed by methanol or water. Then, their capacity to differentiate human mesenchymal stem cells into osteoblasts was investigated for bone tissue regeneration. While methanol-annealed silk films have similar to 55% crystallinity, room-temperature water-annealed silk films have similar to 30% crystallinity by depending upon their different beta-sheet contents. Melatonin-loaded silk films exhibited an initial burst release followed by a continuous release for up to 5 days, and the beta-sheet content of silk films did not affect the release behavior of melatonin, an amphiphilic molecule. Moreover, human mesenchymal stem cells exhibited an increase in osteogenic markers such as alkaline phosphatase activity, osteocalcin, and runt-related transcription factor 2 expressions on the melatonin-loaded methanol-annealed silk films in both proliferation and osteogenic media. The bioactivity of the melatonin-modified silk films was further confirmed by the enhanced mineralization compared to silk films alone. This study demonstrated the feasibility of developing melatonin-loaded silk materials and the positive effect of releasing melatonin at micromolar concentrations on osteogenic differentiation of human mesenchymal stem cells cultured especially in osteogenic medium.
机译:褪黑激素是在松果腺中产生的激素,已经研究了骨修复,重塑,骨质疏松症以及植入物的骨骨。在该研究中,将不同浓度的褪黑激素(0-2000-mu m)嵌入通过甲醇或水退火的丝膜中。然后,研究了将人间充质干细胞分化为成骨细胞的能力进行骨组织再生。虽然甲醇退火的丝膜具有类似于55%的结晶度,但通过根据其不同的β-片内容物,室温水退火丝膜通过不同的β-片内容物相似于30%的结晶度。褪黑激素装载的丝膜表现出初始爆发释放,然后连续释放,最多5天,丝膜的β-板含量不影响褪黑素,两亲分子的释放行为。此外,人间充质干细胞呈溶质磷酸酶活性,骨髓磷酸酶活性,骨肉素和润次相关转录因子2表达的溶质素和与溶质培养基中的褪黑素负载甲醇退火丝膜中的骨质发生标志物增加。单独的丝膜相比,通过增强的矿化进一步证实了褪黑激素改性的丝膜的生物活性。该研究表明,褪黑素负载丝绸材料的可行性以及释放褪黑激素在微摩尔浓度下释放褪黑激素的积极作用,特别是在骨质发生培养基中培养的人间充质干细胞的骨质发生分化。

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