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声控液凝胶复合材料用于时空控制生长因子的释放和支架的硬度。

Acoustic droplet-hydrogel composites for spatial and temporal control of growth factor delivery and scaffold stiffness.

机构信息

Department of Radiology, University of Michigan Health System, Ann Arbor, MI, USA.

出版信息

Acta Biomater. 2013 Jul;9(7):7399-409. doi: 10.1016/j.actbio.2013.03.027. Epub 2013 Mar 25.

Abstract

Wound healing is regulated by temporally and spatially restricted patterns of growth factor signaling, but there are few delivery vehicles capable of the "on-demand" release necessary for recapitulating these patterns. Recently we described a perfluorocarbon double emulsion that selectively releases a protein payload upon exposure to ultrasound through a process known as acoustic droplet vaporization (ADV). In this study, we describe a delivery system composed of fibrin hydrogels doped with growth factor-loaded double emulsion for applications in tissue regeneration. Release of immunoreactive basic fibroblast growth factor (bFGF) from the composites increased up to 5-fold following ADV and delayed release was achieved by delaying exposure to ultrasound. Releasates of ultrasound-treated materials significantly increased the proliferation of endothelial cells compared to sham controls, indicating that the released bFGF was bioactive. ADV also triggered changes in the ultrastructure and mechanical properties of the fibrin as bubble formation and consolidation of the fibrin in ultrasound-treated composites were accompanied by up to a 22-fold increase in shear stiffness. ADV did not reduce the viability of cells suspended in composite scaffolds. These results demonstrate that an acoustic droplet-hydrogel composite could have broad utility in promoting wound healing through on-demand control of growth factor release and/or scaffold architecture.

摘要

伤口愈合受生长因子信号时空限制模式的调控,但能实现“按需”释放以重现这些模式的输送载体却寥寥无几。最近,我们描述了一种全氟碳双乳液,它通过称为声空化(ADV)的过程在暴露于超声时选择性地释放蛋白质有效载荷。在这项研究中,我们描述了一种由纤维蛋白水凝胶掺杂生长因子负载双乳液组成的输送系统,用于组织再生应用。ADV 后,复合材料中免疫反应性碱性成纤维细胞生长因子(bFGF)的释放增加了 5 倍,通过延迟暴露于超声来实现延迟释放。与假对照相比,经超声处理的材料的释放物显著增加了内皮细胞的增殖,表明释放的 bFGF 具有生物活性。ADV 还引发了纤维蛋白的超微结构和力学性质的变化,因为在超声处理的复合材料中形成气泡和纤维蛋白的固结伴随着剪切刚度增加高达 22 倍。ADV 不会降低悬浮在复合支架中的细胞的活力。这些结果表明,声滴-水凝胶复合材料可通过按需控制生长因子释放和/或支架结构在促进伤口愈合方面具有广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ec8/3746980/55631bc215a3/nihms-462448-f0001.jpg

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