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Controlled release of a tissue inducing peptide from oligo (poly(ethylene glycol) fumarate) hydrogels for orthopedic tissue engineering

机译:从寡聚寡核苷酸(聚(乙二醇)富马酸盐)水凝胶中的组织诱导肽的控制释放

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The objective of this research is to develop injectable, in situ polymerizable polymer scaffolds for the controlled release of inductive factors for bone and cartilage tissue engineering. To that end, the novel polymer oligo(poly(ethylene glycol) fumarate) (OPF) was synthesized with varying poly(ethylene glycol) (PEG) chain lengths to create crosslinked networks of varying mesh size. A 23 amino acid peptide, TP508, was incorporated into OPF networks either directly or embedded in poly(1)L-lactic-co-glycolic acid) (PLGA) microparticle carriers and the release kinetics of the TP508 was examined. After 30 hours, hydrogels of PEG chains of molecular weight 10,000 (PF10K) had released greater percentages of the total TP508 (53±3 wt% of directly loaded TP508) than those fabricated with PEG chain of molecular weight 1,000 (PFIK) (31±7 wt%). This effect was also observed upon the inclusion of PLGA microparticle carriers. For hydrogels of either PEG chain length, release of TP508 was greatly reduced with the use of microparticle carriers (6±1 and 2±1 wt% for PF10K and PF1K, respectively). Our results demonstrate that TP508 can be incorporated into OPF hydrogels and that the release kinetics of the peptide can be modulated through alterations in the scaffold mesh size and the use of a microparticle carrier.
机译:本研究的目标是开发可注射的,在原位可聚合的聚合物支架为用于骨和软骨组织工程感应因子的受控释放。为此,该新颖聚合物低聚(聚(乙二醇)富马酸盐)(OPF)用不同的聚(乙二醇)(PEG)链的长度,以创建不同的筛目尺寸的交联网络的合成。 A 23个氨基酸的肽,TP508,直接并入到OPF网络的任一个或包埋在聚(1)L-乳酸 - 共 - 乙醇酸)(PLGA)微粒载体和TP508的释放动力学进行研究。 30小时后,分子量为10,000(PF10K)的PEG链的水凝胶释放了比那些具有分子量1000(PFIK)(31的PEG链制造的总TP508(53±3直接装载TP508的重量%)的更大的百分比± 7重量%)。这种效应也应纳入PLGA微粒载体的观察。对于任一PEG链长的水凝胶,TP508的释放大大与使用微粒载体(分别为6±1和2±1%(重量)为PF10K和PF1K,)的降低。我们的结果表明TP508可并入OPF水凝胶和所述肽的释放动力学可以通过在支架中网孔大小和使用的微粒载体的改变来调节。

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