首页> 外文期刊>Tissue engineering, Part A >Delivery of plasmid DNA encoding bone morphogenetic protein-2 with a biodegradable branched polycationic polymer in a critical-size rat cranial defect model.
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Delivery of plasmid DNA encoding bone morphogenetic protein-2 with a biodegradable branched polycationic polymer in a critical-size rat cranial defect model.

机译:在临界大小大鼠颅缺陷模型中,将编码骨形态发生蛋白-2的质粒DNA递送进行骨形态发生蛋白-2。

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This study investigated the delivery of plasmid DNA (pDNA) encoding bone morphogenetic protein-2 in the form of polyplexes with a biodegradable branched triacrylate/amine polycationic polymer (TAPP) that were complexed with gelatin microparticles (GMPs) loaded within a porous tissue engineering scaffold. More specifically, the study investigated the interplay between TAPP degradation, gelatin degradation, pDNA release, and bone formation in a critical-size rat cranial defect model. The pDNA release kinetics in vitro were not affected by the crosslinking density of the GMPs but depended, rather, on the degradation rates of the TAPPs. Besides the initial release of polyplexes not bound to the GMPs and the minimal release of polyplexes through diffusion or dissociation from the GMPs, the pDNA was likely released as naked pDNA or as part of an incomplete polyplex, after the degradation of fragments of the polycationic polymer. After 30 days, significantly higher amounts of pDNA were released (93%-98%) from composite scaffolds containing naked pDNA or pDNA complexed with P-AEPZ (synthesized with 1-[2-aminoethyl]piperazine, a faster degrading TAPP) compared with those containing pDNA complexed with P-DED (synthesized with N,N-dimethylethylenediamine, a slower degrading TAPP) (74%-82%). Composite scaffolds containing GMPs complexed with TAPP/pDNA polyplexes did not result in enhanced bone formation, as analyzed by microcomputed tomography and histology, in a critical-size rat cranial defect at 12 weeks postimplantation compared with those loaded with naked pDNA. The results demonstrate that polycationic polymers with a slow degradation rate can prolong the release of pDNA from the composite scaffolds and suggest that a gene delivery system comprising biodegradable polycationic polymers should be designed to release the pDNA in an intact polyplex form.
机译:本研究研究了在多用单用形式的骨形态发生蛋白-2中递送质粒DNA(PDNA),其具有可生物降解的支链三丙烯酸酯/胺泛溶解聚合物(TAPP),该聚合物聚合物聚合物(TAPP)被络合在多孔组织工程支架内堆积在多孔组织工程支架内。更具体地,该研究研究了TAPP降解,明胶降解,PDNA释放和临界大鼠颅缺损模型中的骨形成之间的相互作用。体外PDNA释放动力学不受GMP的交联密度的影响,而是依赖于TAPP的降解率。除了不与GMP的初始释放和通过扩散或来自GMP的解离的多重释放的初始释放之外,除了果实聚合物的碎片降解之后,PDNA可能被释放为裸PDNA或作为不完全多分布的一部分。 。 30天后,从含有裸PDNA或与p-alepz络合的裸PDNA或pDNA络合的复合支架(用1- [2-氨基乙基]哌嗪合成,与含有P-DED(用N,N-二甲基乙二胺合成的PDNA的那些,较慢的降解TAPP)(74%-82%)。含有与TAPP / PDNA多种复合的GMPS的复合支架未导致骨形成增强,如通过微型断层扫描和组织学分析的骨骼形成,与用裸PDNA加载的那些后,在第12周后的临界大鼠颅缺损中。结果表明,具有缓慢降解速率的聚阳离子聚合物可以延长来自复合支架的PDNA的释放,并表明包含可生物降解的聚阳离子聚合物的基因递送系统应设计成以完整的多分布形式释放PDNA。

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