Milella E, Brescia E, Massaro C, Ramires P A, Miglietta M R, Fiori V, Aversa P
PASTIS-CNRSM, Biomaterials Unit, Brindisi, Italy.
Biomaterials. 2002 Feb;23(4):1053-63. doi: 10.1016/s0142-9612(01)00217-4.
The development of biocompatible materials which can be processed into three-dimensional scaffolds and the design of appropriate configurations in order to enable the cellular infiltration and proliferation is a major issue in the tissue engineering. The hyaluronan total benzyl ester (Hyaff 11) has been found to be suitable substrate to grow a variety of cell types. Since structural, physical, chemical and biological data can help for tailoring appropriate scaffold for tissue engineering, information on chemicophysical properties on degradability of hyaluronan total benzyl ester non-woven has been obtained. The thermal analysis, the evaluation of the surface chemical composition, the morphology, the mechanical behaviour and the swelling tests were carried out on these materials. The hyaluronan total benzyl ester non-woven showed a thermal stability up to 220 degrees C and the surface composition differed from that of the bulk for C-O and C-C contribution. No contaminant were detected. The non-woven swelled in culture medium. Moreover the mechanical tests showed that when submitted to a press treatment, the samples have best mechanical properties. The pressed Hyaff 11 non-woven undergoes degradation when exposed to DMEM. The frying and breaking of the fibres, a decrease of the mechanical properties and a molecular weight loss have been observed. First, the ester bond of the Hyaff 11 non-woven is hydrolysed and the benzylic alcohol is released and the low molecular weight values indicate that a cleavage of the polymer is promoted by the components of the culture medium. After 11 days, some fragments, constituted by hyaluronic acid with a molecular weight of 23,000 Da became soluble in the medium. No oligomer was detected.
能够加工成三维支架的生物相容性材料的开发以及设计合适的结构以实现细胞浸润和增殖是组织工程中的一个主要问题。已发现透明质酸全苄酯(Hyaff 11)是适合多种细胞类型生长的基质。由于结构、物理、化学和生物学数据有助于为组织工程定制合适的支架,因此已获得关于透明质酸全苄酯无纺布降解性的化学物理性质信息。对这些材料进行了热分析、表面化学成分评估、形态学、力学行为和溶胀测试。透明质酸全苄酯无纺布在高达220℃时具有热稳定性,并且对于C-O和C-C贡献,其表面组成与本体不同。未检测到污染物。无纺布在培养基中溶胀。此外,力学测试表明,当进行压制处理时,样品具有最佳的力学性能。压制的Hyaff 11无纺布在暴露于DMEM时会发生降解。观察到纤维的断裂和破碎、力学性能的下降以及分子量的损失。首先,Hyaff 11无纺布的酯键被水解并释放出苄醇,低分子量值表明培养基中的成分促进了聚合物的裂解。11天后,一些由分子量为23,000 Da的透明质酸组成的片段在培养基中变得可溶。未检测到低聚物。