首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >The effect of local delivery of adiponectin from biodegradable microsphere-scaffold composites on new bone formation in adiponectin knockout mice
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The effect of local delivery of adiponectin from biodegradable microsphere-scaffold composites on new bone formation in adiponectin knockout mice

机译:从可生物降解的微球-支架复合材料局部递送脂联素对脂联素敲除小鼠新骨形成的影响

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Adiponectin (APN) is the most abundant adipocyte-secreted adipokine; it regulates energy homeostasis and exerts well-characterized insulin-sensitizing properties. Previous studies have verified that globular adiponectin (gAPN) is also involved in bone metabolism, although observations have been controversial. The purpose of the current study is to use an APN-knockout (APN-KO) mouse model to evaluate the local delivery of gAPN to new bone formation. Using chitosan microspheres (CMs), we found that following an initial burst at 1 week, the release behavior of gAPN from the scaffold was sustained in a linear manner for the first 4 weeks, followed by a slower, more stable release from week 5 onwards. Interestingly, PLGA/beta-TCP/CM-loaded gAPN scaffolds implanted in APN-KO mice increased bone formation and mineralization, and enhanced osteogenic marker expression 28 days post-implantation. gAPN also promoted preosteoblast (MC3T3-E1) cellular proliferation in vitro. In MC3T3-E1 cells, adaptor protein-containing pleckstrin homology domain, phosphotyrosine domain, leucine zipper motif (APPL1) and phosphoinositide 3-kinase (PI3K) expression was upregulated in a time-dependent manner upon gAPN treatment, while APPL1 small interfering RNA (siRNA) pre-treatment reversed this enhanced expression. In conclusion, modified bone graft substitutes loaded with gAPN increase bone formation and mineralization in part by promoting osteoblast proliferation via the APPL1/PI3K pathway.
机译:脂联素(APN)是分泌脂肪细胞最丰富的脂肪因子。它调节能量稳态,并发挥良好的胰岛素敏感特性。先前的研究证实,尽管观察结果存在争议,但球状脂联素(gAPN)也参与骨代谢。本研究的目的是使用APN基因敲除(APN-KO)小鼠模型来评估gAPN在新骨形成中的局部递送。使用壳聚糖微球(CMs),我们发现在第1周初次爆发后,gAPN从支架中的释放行为在前4周以线性方式得以维持,随后从第5周开始缓慢,稳定地释放。有趣的是,植入APN-KO小鼠的PLGA /β-TCP/ CM负载的gAPN支架增加了骨形成和矿化作用,并在植入后28天增强了成骨标记物的表达。 gAPN还促进了体外成骨细胞(MC3T3-E1)的细胞增殖。在MC3T3-E1细胞中,含衔接蛋白的pleckstrin同源结构域,磷酸酪氨酸结构域,亮氨酸拉链基序(APPL1)和磷酸肌醇3-激酶(PI3K)的表达在经过gAPN处理后呈时间依赖性上调,而APPL1小干扰RNA( siRNA)预处理逆转了这种增强的表达。总之,装载有gAPN的改良骨移植替代物部分通过通过APPL1 / PI3K途径促进成骨细胞增殖来增加骨形成和矿化作用。

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