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首页> 外文期刊>Materials >Osteoinductivity Assessment of BMP-2 Loaded Composite Chitosan-Nano-Hydroxyapatite Scaffolds in a Rat Muscle Pouch
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Osteoinductivity Assessment of BMP-2 Loaded Composite Chitosan-Nano-Hydroxyapatite Scaffolds in a Rat Muscle Pouch

机译:BMP-2负载大鼠肌肉囊中的壳聚糖-纳米羟基磷灰石复合支架的骨诱导评估。

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The objective of this study was to evaluate the osteoinductivity of composite chitosan-nano-hydroxyapatite scaffolds in a rat muscle pouch model. Previous in vitro characterization demonstrated the ability of the scaffolds to promote bone regeneration and as a carrier for local delivery of BMP-2. Composite microspheres were prepared using a co-precipitation method, and scaffolds were fabricated using an acid wash to adhere beads together. To determine the in vivo osteoinductivity of the scaffolds, the following groups (n = 6) were implanted into muscle pouches created in the latissimus dorsi of Sprague Dawley rats: (A) lyophilized scaffolds without rhBMP-2, (B) lyophilized scaffolds with rhBMP-2, (C) non-lyophilized scaffolds with rhBMP-2, and (D) absorbable collagen sponge with rhBMP-2 (control). Groups B, C, and D were loaded with 4 mL of a 9.0 μg/mL solution of rhBMP-2 for 48 h. The rats were sacrificed after one month and samples were analyzed for amount of residual implant material, new bone, and osteoid. Although the experimental groups displayed minimal degradation after one month, all of the scaffolds contained small amounts of woven bone and considerable amounts of osteoid. Approximately thirty percent of the open space available for tissue ingrowth in the scaffolds contained new bone or osteoid in the process of mineralization. The ability of the composite scaffolds (with and without BMP-2) to promote ectopic bone growth in vivo was demonstrated.
机译:这项研究的目的是评估在大鼠肌肉囊模型中壳聚糖-纳米羟基磷灰石复合支架的骨诱导性。先前的体外表征证明了支架具有促进骨再生的能力以及作为BMP-2局部递送的载体的能力。使用共沉淀法制备复合微球,并使用酸洗制备支架以将珠粒粘附在一起。为了确定支架的体内骨诱导性,将以下组(n = 6)植入到Sprague Dawley大鼠背阔肌中产生的肌肉袋中:(A)没有rhBMP-2的冻干支架,(B)有rhBMP的冻干支架。 -2,(C)具有rhBMP-2的非冻干支架,和(D)具有rhBMP-2的可吸收胶原海绵(对照)。在B组,C组和D组中加载4 mL 9.0μg/ mL rhBMP-2溶液48小时。一个月后处死大鼠,并分析样品的残留植入物材料,新骨和类骨质的量。尽管实验组在一个月后显示出最小的降解,但是所有支架都包含少量的编织骨和大量的类骨质。支架中可用于组织向内生长的开放空间中约有30%在矿化过程中包含新的骨骼或类骨质。证明了复合支架(具有和不具有BMP-2)在体内促进异位骨生长的能力。

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