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Synthetic biodegradable hydrogel delivery of demineralized bone matrix for bone augmentation in a rat model

机译:脱矿骨基质的合成生物可降解水凝胶递送用于在大鼠模型中进行骨骼增强

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摘要

There exists a strong clinical need for a more capable and robust method to achieve bone augmentation, and a system with fine-tuned delivery of demineralized bone matrix (DBM) has potential to meet that need. As such, the objective of the present study was to investigate a synthetic biodegradable hydrogel for the delivery of DBM for bone augmentation in a rat model. Oligo(poly(ethylene glycol) fumarate) (OPF) constructs were designed and fabricated by varying the content of rat-derived DBM particles (either 1:3, 1:1, or 3:1 DBM:OPF weight ratio on a dry basis) and using two DBM particle size ranges (50–150 or 150–250 μm). The physical properties of the constructs and the bioactivity of the DBM were evaluated. Select formulations (1:1 and 3:1 with 50–150 μm DBM) were evaluated in vivo compared to an empty control to investigate the effect of DBM dose and construct properties on bone augmentation. Overall, 3:1 constructs with higher DBM content achieved the greatest volume of bone augmentation exceeding 1:1 constructs and empty implants by 3-fold and 5-fold, respectively. As such, we have established that a synthetic, biodegradable hydrogel can function as a carrier for DBM, and that the volume of bone augmentation achieved by the constructs correlated directly to DBM dose.
机译:迫切需要一种功能更强大且更健壮的方法来实现骨骼增强,临床上非常需要,而且经过微调递送脱矿质骨基质(DBM)的系统有潜力满足这一需求。因此,本研究的目的是研究合成的可生物降解的水凝胶,用于在大鼠模型中递送DBM以增强骨骼。通过改变大鼠衍生的DBM颗粒的含量(以干基计,DBM:OPF重量比为1:3、1:1或3:1)来设计和制造寡聚(聚(乙二醇)富马酸酯)(OPF)构建体),并使用两个DBM粒度范围(50-150或150-250μm)。评价了构建体的物理性质和DBM的生物活性。与空对照相比,在体内评估了选定的制剂(1:1和3:1,含50-150μmDBM),以研究DBM剂量和构造特性对骨增强的影响。总体而言,具有更高DBM含量的3:1构建体实现了最大的骨骼填充量,超过1:1构建体和空植入物分别达到了3倍和5倍。这样,我们已经确定了合成的,可生物降解的水凝胶可以充当DBM的载体,并且通过构建体实现的骨增加量直接与DBM剂量相关。

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