合成生物活性肽对硫酸软骨素水凝胶中神经突生长和神经生长因子释放的影响。

Biomatter Pub Date : 2011-10-01 DOI:10.4161/biom.17849
Aaron W Conovaloff, Brooke L Beier, Pedro P Irazoqui, Alyssa Panitch
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引用次数: 7

摘要

先前的工作已经揭示了在硫酸软骨素水凝胶中强健的背根神经节神经突生长。在目前的工作中,研究人员确定了添加合成的生物活性肽是否可以通过增强生长因子的结合和隔离来促进这些基质中的神经突生长。光漂白后的荧光恢复研究显示,肽的加入减缓了硫酸软骨素凝胶中神经生长因子的扩散,但在透明质酸对照凝胶中没有。此外,在透明质酸或硫酸软骨素凝胶中培养的鸡背根神经节显示,仅在添加肽后,硫酸软骨素凝胶的生长才得到促进。综上所述,这些结果表明该肽和硫酸软骨素之间具有协同神经生长因子结合活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of a synthetic bioactive peptide on neurite growth and nerve growth factor release in chondroitin sulfate hydrogels.

Effects of a synthetic bioactive peptide on neurite growth and nerve growth factor release in chondroitin sulfate hydrogels.

Effects of a synthetic bioactive peptide on neurite growth and nerve growth factor release in chondroitin sulfate hydrogels.

Effects of a synthetic bioactive peptide on neurite growth and nerve growth factor release in chondroitin sulfate hydrogels.

Previous work has revealed robust dorsal root ganglia neurite growth in hydrogels of chondroitin sulfate. In the current work, it was determined whether addition of a synthetic bioactive peptide could augment neurite growth in these matrices via enhanced binding and sequestering of growth factors. Fluorescence recovery after photobleaching studies revealed that addition of peptide slowed nerve growth factor diffusivity in chondroitin sulfate gels, but not in control gels of hyaluronic acid. Furthermore, cultures of chick dorsal root ganglia in gels of hyaluronic acid or chondroitin sulfate revealed enhanced growth in chondroitin sulfate gels only upon addition of peptide. Taken together, these results suggest a synergistic nerve growth factor-binding activity between this peptide and chondroitin sulfate.

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