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源自磷酸化海藻酸钙复合物的可注射水凝胶。

Injectable hydrogels derived from phosphorylated alginic acid calcium complexes.

作者信息

Kim Han-Sem, Song Minsoo, Lee Eun-Jung, Shin Ueon Sang

机构信息

Department of Nanobiomedical Science & BK21 PLUS NBM Global Research Center for Regenerative Medicine, Dankook University, Chungnam, Cheonan 330-714, Republic of Korea; Institute of Tissue Regeneration Engineering (ITREN), Dankook University, Chungnam, Cheonan 330-714, Republic of Korea.

Department of Nanobiomedical Science & BK21 PLUS NBM Global Research Center for Regenerative Medicine, Dankook University, Chungnam, Cheonan 330-714, Republic of Korea; Institute of Tissue Regeneration Engineering (ITREN), Dankook University, Chungnam, Cheonan 330-714, Republic of Korea.

出版信息

Mater Sci Eng C Mater Biol Appl. 2015 Jun;51:139-47. doi: 10.1016/j.msec.2015.02.031. Epub 2015 Feb 25.

Abstract

Phosphorylation of sodium alginate salt (NaAlg) was carried out using H3PO4/P2O5/Et3PO4 followed by acid-base reaction with Ca(OAc)2 to give phosphorylated alginic acid calcium complexes (CaPAlg), as a water dispersible alginic acid derivative. The modified alginate derivatives including phosphorylated alginic acid (PAlg) and CaPAlg were characterized by nuclear magnetic resonance spectroscopy for (1)H, and (31)P nuclei, high resolution inductively coupled plasma optical emission spectroscopy, Fourier transform infrared spectroscopy, and thermogravimetric analysis. CaPAlg hydrogels were prepared simply by mixing CaPAlg solution (2w/v%) with NaAlg solution (2w/v%) in various ratios (2:8, 4:6, 6:4, 8:2) of volume. No additional calcium salts such as CaSO4 or CaCl2 were added externally. The gelation was completed within about 3-40min indicating a high potential of hydrogel delivery by injection in vivo. Their mechanical properties were tested to be ≤6.7kPa for compressive strength at break and about 8.4kPa/mm for elastic modulus. SEM analysis of the CaPAlg hydrogels showed highly porous morphology with interconnected pores of width in the range of 100-800μm. Cell culture results showed that the injectable hydrogels exhibited comparable properties to the pure alginate hydrogel in terms of cytotoxicity and 3D encapsulation of cells for a short time period. The developed injectable hydrogels showed suitable physicochemical and mechanical properties for injection in vivo, and could therefore be beneficial for the field of soft tissue engineering.

摘要

使用H3PO4/P2O5/Et3PO4对海藻酸钠盐(NaAlg)进行磷酸化,随后与Ca(OAc)2进行酸碱反应,得到磷酸化海藻酸钙复合物(CaPAlg),它是一种水分散性海藻酸衍生物。通过对1H和31P核的核磁共振光谱、高分辨率电感耦合等离子体发射光谱、傅里叶变换红外光谱和热重分析对包括磷酸化海藻酸(PAlg)和CaPAlg在内的改性海藻酸衍生物进行了表征。通过将CaPAlg溶液(2w/v%)与NaAlg溶液(2w/v%)按不同体积比(2:8、4:6、6:4、8:2)简单混合来制备CaPAlg水凝胶。未额外添加外部钙盐,如CaSO4或CaCl2。凝胶化在约3 - 40分钟内完成,表明其在体内注射水凝胶递送方面具有很大潜力。测试其机械性能,断裂抗压强度≤6.7kPa,弹性模量约为8.4kPa/mm。CaPAlg水凝胶的扫描电子显微镜分析显示出高度多孔的形态,相互连接的孔隙宽度在100 - 800μm范围内。细胞培养结果表明,在细胞毒性和细胞的短时间三维包封方面,可注射水凝胶表现出与纯海藻酸水凝胶相当的性能。所开发的可注射水凝胶在体内注射方面表现出合适的物理化学和机械性能,因此可能对软组织工程领域有益。

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