首页> 外文期刊>Journal of the Chinese Medical Association: JCMA >Parathyroid hormone gene-activated matrix with DFDBA/collagen composite matrix enhances bone regeneration in rat calvarial bone defects
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Parathyroid hormone gene-activated matrix with DFDBA/collagen composite matrix enhances bone regeneration in rat calvarial bone defects

机译:含DFDBA /胶原蛋白复合基质的甲状旁腺激素基因激活基质可增强大鼠颅骨缺损的骨再生

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BackgroundGene-activated matrix (GAM) induces sustained local production of growth factors to promote tissue regeneration. GAM contains a plasmid DNA (pDNA) encoding target proteins that is physically entrapped within a biodegradable matrix carrier. GAM with a pDNA encoding the first 34 amino acids of parathyroid hormone (PTH 1–34) and a collagen matrix enhances bone regeneration in long bone defects. Demineralized freeze-dried bone allograft (DFDBA) is a widely used osteoinductive bone graft. The present study determined the osteogenic effects of PTH-GAM with a collagen or DFDBA/collagen composite (D/C) matrix for treating craniofacial bone defects.MethodsWe constructed a pDNA encoding human PTH 1–34 and performed cyclic AMP ELISA to verify the bioactivity of PTH 1–34. Next, we generated a D/C matrix and PTH-GAMs containing a collagen matrix (PTH-C-GAM) or D/C matrix (PTH-D/C-GAM). Rats with critical-sized calvarial bone defects were divided into four groups, namely, untreated rats (sham group) and rats grafted with D/C matrix, PTH-C-GAM, or PTH-D/C-GAM (D/C, PTH-C-GAM, or PTH-D/C-GAM groups, respectively). PTH expression was determined by performing immunohistochemical staining after 4 and 8 weeks. New bone formation was evaluated by performing radiography, dual-energy X-ray absorptiometry, microcomputed tomography, and histological examination.ResultsPTH pDNA-transfected cells secreted bioactive PTH 1–34. Moreover, PTH was expressed at 4 and 8 weeks after the surgery in rats in the PTH-C-GAM group but not in rats in the D/C group. New bone formation in the calvarial bone defects, from more to less, was in the order of PTH-D/C-GAM, PTH-C-GAM, D/C, and sham groups.ConclusionOur results indicate that PTH-GAM with a collagen matrix promotes local PTH production for at least 8 weeks and bone regeneration in craniofacial bone defect. Moreover, our results indicate that replacement of the collagen matrix with the D/C matrix improves the osteogenic effects of PTH-GAM.
机译:背景基因激活基质(GAM)诱导持续局部产生生长因子,从而促进组织再生。 GAM包含编码目标蛋白质的质粒DNA(pDNA),该蛋白质被物理捕获在可生物降解的基质载体中。 GAM具有编码甲状旁腺激素(PTH 1–34)的前34个氨基酸的pDNA和胶原蛋白基质,可增强长骨缺损中的骨再生。脱矿质冻干同种异体骨(DFDBA)是一种广泛使用的骨诱导性骨移植物。本研究确定了胶原蛋白或DFDBA /胶原蛋白复合物(D / C)基质对PTH-GAM的成骨作用,以治疗颅面骨缺损。方法我们构建了编码人PTH 1–34的pDNA,并进行了环AMP ELISA验证其生物活性。 PTH 1–34。接下来,我们生成了D / C矩阵和包含胶原蛋白矩阵(PTH-C-GAM)或D / C矩阵(PTH-D / C-GAM)的PTH-GAM。颅骨缺损为临界大小的大鼠分为四组,即未经治疗的大鼠(假手术组)和移植有D / C基质,PTH-C-GAM或PTH-D / C-GAM(D / C, PTH-C-GAM或PTH-D / C-GAM组)。通过在4和8周后进行免疫组织化学染色来确定PTH表达。通过放射线照相,双能X线吸收,显微计算机断层扫描和组织学检查来评估新骨的形成。结果PTH pDNA转染的细胞分泌具有生物活性的PTH 1–34。此外,PTH-C-GAM组的大鼠在手术后第4和8周表达PTH,而D / C组的大鼠则不表达。颅骨缺损中新骨形成的程度从高到低依次为PTH-D / C-GAM,PTH-C-GAM,D / C和假组。结论我们的结果表明PTH-GAM具有胶原蛋白基质可促进局部PTH生成至少8周,并促进颅面骨缺损中的骨再生。此外,我们的结果表明,用D / C基质替代胶原蛋白基质可改善PTH-GAM的成骨作用。

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