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Osteogenic Enhancement Between Icariin and Bone Morphogenetic Protein 2: A Potential Osteogenic Compound for Bone Tissue Engineering

机译:鹰嘴豆素和骨形态发生蛋白之间的成骨作用增强2:潜在的成骨化合物,用于骨组织工程

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摘要

Icariin, a typical flavonol glycoside, is the main active component of Herba Epimedii, which was used to cure bone-related diseases in China for centuries. It has been reported that Icariin can be delivered locally by biomaterials and it has an osteogenic potential for bone tissue engineering. Biomimetic calcium phosphate (BioCaP) bone substitute is a novel drug delivery carrier system. Our study aimed to evaluate the osteogenic potential when Icariin was internally incorporated into the BioCaP granules. The BioCaP combined with Icariin and bone morphogenetic protein 2 (BMP-2) was investigated in vitro using an MC3T3-E1 cell line. We also investigated its efficacy to repair 8 mm diameter critical size bone defects in the skull of SD male rats. BioCaP was fabricated according to a well-established biomimetic mineralization process. In vitro , the effects of BioCaP alone or BioCaP with Icariin and/or BMP-2 on cell proliferation and osteogenic differentiation of MC3T3-E1 cells were systematically evaluated. In vivo , BioCaP alone or BioCaP with Icariin and/or BMP-2 were used to study the bone formation in a critical-sized bone defect created in a rat skull. Samples were retrieved for Micro-CT and histological analysis 12 weeks after surgery. The results indicated that BioCaP with or without the incorporation of Icariin had a positive effect on the osteogenic differentiation of MC3T3-E1. BioCaP with Icariin had better osteogenic efficiency, but had no influence on cell proliferation. BioCap + Icariin + BMP-2 showed better osteogenic potential compared with BioCaP with BMP-2 alone. The protein and mRNA expression of alkaline phosphatase and osteocalcin and mineralization were higher as well. In vivo , BioCaP incorporate internally with both Icariin and BMP-2 induced significantly more newly formed bone than the control group and BioCaP with either Icariin or BMP-2 did. Micro-CT analysis revealed that no significant differences were found between the bone mineral density induced by BioCaP with icariin and that induced by BioCaP with BMP-2. Therefore, co-administration of Icariin and BMP-2 was helpful for bone tissue engineering.
机译:淫羊in素是一种典型的黄酮糖苷,是淫羊Herb的主要活性成分,而淫羊Herb被用来治疗中国数百年来与骨骼有关的疾病。据报道,鹰嘴豆素可以通过生物材料局部递送,并且具有用于骨组织工程的成骨潜力。仿生磷酸钙(BioCaP)骨替代物是一种新型的药物输送载体系统。我们的研究旨在评估将伊卡瑞因内部掺入BioCaP颗粒时的成骨潜力。使用MC3T3-E1细胞系在体外研究了结合有叶绿素和骨形态发生蛋白2(BMP-2)的BioCaP。我们还研究了其修复SD雄性大鼠头骨中8 mm直径临界尺寸骨缺损的功效。 BioCaP是根据公认的仿生矿化工艺制造的。在体外,系统地评估了单独的BioCaP或含有伊卡肽和/或BMP-2的BioCaP对MC3T3-E1细胞增殖和成骨分化的影响。在体内,单独的BioCaP或含伊卡瑞林和/或BMP-2的BioCaP用于研究大鼠颅骨中产生的临界尺寸骨缺损中的骨形成。手术后12周取回样品进行Micro-CT和组织学分析。结果表明,结合或不结合伊卡瑞林的BioCaP对MC3T3-E1的成骨分化具有积极作用。 BioCaP和伊卡瑞宁具有更好的成骨效率,但对细胞增殖没有影响。与单独使用BMP-2的BioCaP相比,BioCap +鹰嘴豆素+ BMP-2具有更好的成骨潜力。碱性磷酸酶,骨钙素和矿化的蛋白质和mRNA表达也较高。在体内,与对照组相比,BioCaP在内部与伊卡霉素和BMP-2结合诱导的新形成的骨明显多于对照组,而与伊卡霉素或BMP-2结合的BioCaP则比对照组明显更多。 Micro-CT分析显示,由BioCaP诱导与甘草素诱导的骨矿物质密度与由BioCaP诱导与BMP-2诱导的骨矿物质密度之间没有显着差异。因此,伊卡瑞林和BMP-2的共同给药有助于骨组织工程。

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