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首页> 外文期刊>Biomaterials >Polyglutamate directed coupling of bioactive peptides for the delivery of osteoinductive signals on allograft bone
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Polyglutamate directed coupling of bioactive peptides for the delivery of osteoinductive signals on allograft bone

机译:聚谷氨酸导向的生物活性肽偶联,用于在同种异体骨上传递骨诱导信号

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摘要

Allograft bone is commonly used as an alternative to autograft, however allograft lacks many osteoinductive factors present in autologous bone due to processing. In this study, we investigated a method to reconstitute allograft with osteoregenerative factors. Specifically, an osteoinductive peptide from collagen I, DGEA, was engineered to express a heptaglutamate (E7) domain, which binds the hydroxyapatite within bone mineral. Addition of E7 to DGEA resulted in 9× greater peptide loading on allograft, and significantly greater retention after a 5-day interval with extensive washing. When factoring together greater initial loading and retention, the E7 domain directed a 45-fold enhancement of peptide density on the allograft surface. Peptide-coated allograft was also implanted subcutaneously into rats and it was found that E7DGEA was retained in vivo for at least 3 months. Interestingly, E7DGEA peptides injected intravenously accumulated within bone tissue, implicating a potential role for E7 domains in drug delivery to bone. Finally, we determined that, as with DGEA, the E7 modification enhanced coupling of a bioactive BMP2-derived peptide on allograft. These results suggest that E7 domains are useful for coupling many types of bone-regenerative molecules to the surface of allograft to reintroduce osteoinductive signals and potentially advance allograft treatments.
机译:同种异体移植骨通常用作自体移植的替代物,但是由于处理,同种异体移植缺乏自体骨中存在的许多骨诱导因子。在这项研究中,我们研究了一种用骨再生因子重建同种异体移植的方法。具体来说,来自胶原蛋白I的骨诱导肽DGEA被工程化以表达七谷氨酸(E7)域,该域结合骨矿物质中的羟基磷灰石。在DGEA中添加E7会导致同种异体移植物中的肽负载量增加9倍,并且在5天的间隔内进行大量洗涤后,其保留率明显提高。当一起考虑更大的初始负载和保留时,E7域指导同种异体移植表面上肽密度提高45倍。还将肽包被的同种异体移植物皮下植入大鼠中,发现E7DGEA在体内保留了至少3个月。有趣的是,静脉内注射的E7DGEA肽积聚在骨组织内,这暗示了E7域在药物输送至骨中的潜在作用。最后,我们确定,与DGEA一样,E7修饰增强了同种异体移植物中生物活性BMP2衍生肽的偶联。这些结果表明,E7结构域可用于将许多类型的骨再生分子偶联至同种异体移植物表面,以重新引入骨诱导信号并潜在地促进同种异体移植治疗。

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