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含聚(甲基)丙烯酸交联颗粒的pH响应性物理凝胶:结构与力学性能之间的关系

pH-responsive physical gels from poly(meth)acrylic acid-containing crosslinked particles: the relationship between structure and mechanical properties.

作者信息

Halacheva Silvia S, Freemont Tony J, Saunders Brian R

机构信息

University of Manchester, Materials Science Centre, Grosvenor Street, Manchester, M1 7HS, UK.

出版信息

J Mater Chem B. 2013 Sep 7;1(33):4065-4078. doi: 10.1039/c3tb20758g. Epub 2013 Jul 1.

Abstract

Gels that feature high internal porosity and have both high elasticity and ductility have potential to provide immediate load support and enable subsequent tissue regeneration of damaged soft tissue if combined with cells. Herein, we report results from a recent investigation of novel poly(methyl methacrylate-co-methacrylic acid), (PMMA-MAA) and poly(ethyl acrylate-co-methacrylic acid), (PEA-MAA) biodegradable, pH-sensitive particle gels which are with high porosity, elasticity and ductility. These gels formed at physiological pH range and are potentially injectable. The particles were prepared using solvent evaporation. They were functionalized by crosslinking the MAA groups of the particles via bis-amide formation with either cystamine (CYS) or 3,3'-dithiodipropionic acid dihydrazide (DTP) which simultaneously incorporated reversibility due to the presence of disulphide bonds within the crosslinker. The crosslinked particles were observed by dynamic light scattering to swell appreciably in size upon increasing the pH. Concentrated dispersions formed elastic and ductile physical gels within the physiological pH range. A key finding of this study was that for crosslinked particles of similar composition the formation of considerably more elastic and ductile gels was observed from the most lightly crosslinked particles. Furthermore, compared to the PMMA-MAA/CYS and PEA-MAA/CYS gels, those formed from DTP-crosslinked particles had higher elasticity, thicker pore walls and improved interconnectivity. For the PMMA-MAA/DTP gels an elastic modulus value as high as 100 kPa and a yield strain greater than 100% were observed for a gel containing only 5 wt% of particles. The improved mechanical properties of these new gel-forming dispersions imply that they now have good potential for future application as injectable gels for regenerative medicine.

摘要

具有高内部孔隙率、高弹性和延展性的凝胶,如果与细胞结合,有可能提供即时的负载支撑,并促进受损软组织的后续组织再生。在此,我们报告了最近对新型聚(甲基丙烯酸甲酯 - 共 - 甲基丙烯酸)(PMMA - MAA)和聚(丙烯酸乙酯 - 共 - 甲基丙烯酸)(PEA - MAA)可生物降解、pH敏感颗粒凝胶的研究结果,这些凝胶具有高孔隙率、弹性和延展性。这些凝胶在生理pH范围内形成,并且具有潜在的可注射性。颗粒通过溶剂蒸发制备。它们通过胱胺(CYS)或3,3'-二硫代二丙酸二酰肼(DTP)与颗粒的MAA基团形成双酰胺进行交联功能化,由于交联剂中存在二硫键,同时引入了可逆性。通过动态光散射观察到交联颗粒在pH升高时尺寸明显膨胀。浓缩分散体在生理pH范围内形成弹性和延展性的物理凝胶。这项研究的一个关键发现是,对于组成相似的交联颗粒,观察到从交联程度最轻的颗粒形成的凝胶具有明显更高的弹性和延展性。此外,与PMMA - MAA/CYS和PEA - MAA/CYS凝胶相比,由DTP交联颗粒形成的凝胶具有更高的弹性、更厚的孔壁和更好的互连性。对于PMMA - MAA/DTP凝胶,对于仅含有5 wt%颗粒的凝胶,观察到弹性模量值高达100 kPa,屈服应变大于100%。这些新型凝胶形成分散体改善的机械性能意味着它们现在具有作为再生医学可注射凝胶未来应用的良好潜力。

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