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用于组织工程的新型pH响应性壳聚糖/卡拉胶基聚电解质复合物多孔支架

Novel porous scaffolds of pH responsive chitosan/carrageenan-based polyelectrolyte complexes for tissue engineering.

作者信息

Araujo J V, Davidenko N, Danner M, Cameron R E, Best S M

机构信息

Department of Materials Science & Metallurgy, Cambridge Centre for Medical Materials, University of Cambridge, Cambridge, CB3 0FS, United Kingdom.

出版信息

J Biomed Mater Res A. 2014 Dec;102(12):4415-26. doi: 10.1002/jbm.a.35128. Epub 2014 Feb 25.

Abstract

Polyelectrolyte complexes (PECs) represent promising materials for drug delivery and tissue engineering applications. These substances are obtained in aqueous medium without the need for crosslinking agents. PECs can be produced through the combination of oppositely charged medical grade polymers, which include the stimuli responsive ones. In this work, three-dimensional porous scaffolds were produced through the lyophilization of pH sensitive PECs made of chitosan (CS) and carrageenan (CRG). CS:CRG molar ratios of 1:1 (CSCRG1), 2:1 (CSCRG2), and 3:1 (CSCRG3) were used. The chemical compositions of the PECs, as well as their influence in the final structure of the scaffolds were meticulously studied. In addition, the pH responsiveness of the PECs in a range including the physiological pH values of 7.4 (simulating normal physiological conditions) and 4.5 (simulating inflammatory response) was assessed. Results showed that the PECs produced were stable at pH values of 7.4 and under but dissolved as the pH increased to nonphysiological values of 9 and 11. However, after dissolution, the PEC could be reprecipitated by decreasing the pH to values close to 4.5. The scaffolds obtained presented large and interconnected pores, being equally sensitive to changes in the pH. CSCRG1 scaffolds appeared to have higher hydrophilicity and therefore higher water absorption capacity. The increase in the CS:CRG molar ratios improved the scaffold mechanical properties, with CSCRG3 presenting the higher compressive modulus under wet conditions. Overall, the PEC scaffolds appear promising for tissue engineering related applications that require the use of pH responsive materials stable at physiological conditions.

摘要

聚电解质复合物(PECs)是用于药物递送和组织工程应用的有前景的材料。这些物质在水性介质中获得,无需交联剂。PECs可以通过带相反电荷的医用级聚合物的组合来制备,其中包括对刺激有响应的聚合物。在这项工作中,通过冻干由壳聚糖(CS)和角叉菜胶(CRG)制成的pH敏感PECs制备了三维多孔支架。使用了1:1(CSCRG1)、2:1(CSCRG2)和3:1(CSCRG3)的CS:CRG摩尔比。对PECs的化学组成及其对支架最终结构的影响进行了细致研究。此外,评估了PECs在包括生理pH值7.4(模拟正常生理条件)和4.5(模拟炎症反应)的范围内的pH响应性。结果表明,所制备的PECs在pH值为7.4及以下时稳定,但随着pH值升高到非生理值9和11时溶解。然而,溶解后,通过将pH值降低到接近4.5的值,PECs可以重新沉淀。所获得的支架呈现出大的且相互连接的孔隙,对pH变化同样敏感。CSCRG1支架似乎具有更高的亲水性,因此具有更高的吸水能力。CS:CRG摩尔比的增加改善了支架的机械性能,CSCRG3在湿条件下呈现出更高的压缩模量。总体而言,PECs支架对于需要使用在生理条件下稳定的pH响应材料的组织工程相关应用似乎很有前景。

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