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Incorporation of polymeric microparticles into collagen-hydroxyapatite scaffolds for the delivery of a pro-osteogenic peptide for bone tissue engineering

机译:将聚合物微粒掺入胶原-羟基磷灰石支架中,以递送用于骨组织工程的促成骨肽

摘要

Collagen-hydroxyapatite scaffolds are outstanding materials for bone tissue engineering as they are biocompatible, bioresorbable, osteoconductive, and osteoinductive. The objective of the present work was to assess the potential of increasing their regenerative capacity by functionalising the scaffolds for therapeutic delivery. This was achieved by the utilization ofpolymeric drug carriers. With this purpose, alginate, chitosan, gelatine, and poly(lactic-co-glycolic acid) (PLGA) microparticles eluting PTHrP 107-111, an osteogenic pentapeptide, werefabricated and tested by incorporating them into the scaffolds. Among them, PLGA microparticles show the most promising characteristics for use as drug delivery devices. Following the incorporation of the microparticles, the scaffolds maintained their interconnected porous structure and the mechanical properties of the materials were not adversely affected. In addition, the microparticles released all their PTHrP 107-111 cargo. Most importantly, the delivered peptide proved to be bioactive and promoted enhanced osteogenesis as assessed by alkaline phosphatase production and osteocalcin and osteopontin gene expression when pre-osteoblastic cells were seeded on the scaffolds. While the focus was on bone repair, the release system described in this study can be used for the delivery of therapeutics for healing and regeneration of a variety of tissue types depending on the type of collagen scaffold chosen.
机译:胶原蛋白-羟基磷灰石支架材料是生物相容性,生物可吸收性,骨传导性和骨诱导性的,是用于骨组织工程的杰出材料。本工作的目的是通过功能化治疗递送支架来评估增加其再生能力的潜力。这是通过利用聚合物药物载体来实现的。为此目的,制备并洗脱了溶入成骨性五肽PTHrP 107-111的藻酸盐,壳聚糖,明胶和聚乳酸-乙醇酸共聚物(PLGA)微粒,并通过将其掺入到支架中进行了测试。其中,PLGA微粒具有用作药物输送装置的最有前途的特性。掺入微粒后,支架保持其相互连接的多孔结构,并且材料的机械性能未受到不利影响。此外,微粒释放了所有的PTHrP 107-111货物。最重要的是,当将成骨细胞前体细胞接种到支架上时,通过碱性磷酸酶的产生以及骨钙素和骨桥蛋白基因的表达评估,所递送的肽被证明具有生物活性并促进了成骨作用的增强。尽管重点放在骨修复上,但根据所选胶原支架的类型,本研究中描述的释放系统可用于递送治疗剂,以治疗和恢复各种组织类型。

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