Brelle Laura, Faÿ Fabienne, Ozturk Teoman, Didier Nathalie, Renard Estelle, Langlois Valérie
Univ Paris Est Créteil, CNRS, ICMPE, Creteil F-94010, France.
Laboratoire de Biotechnologie et Chimie Marines, Université Bretagne Sud, EMR CNRS 6076, IUEM, Lorient 56100, France.
Biomacromolecules. 2023 Apr 10;24(4):1871-1880. doi: 10.1021/acs.biomac.3c00059. Epub 2023 Mar 26.
Hydrogels based on poly(3-hydroxyalkanoate) (PHA) sulfonate and poly(ethylene glycol) diacrylate, PEGDA, are prepared. First, PHA sulfonate is synthesized from unsaturated PHA by a thiol-ene reaction in the presence of sodium-3-mercapto-1-ethanesulfonate. The hydrophilicity of PHAs is considerably increased by adding sulfonate functions, and three amphiphilic PHAs are synthesized, containing 10, 22, or 29% sulfonate functions. Then, hydrogels are formed in the presence of PEGDA having different molar masses, that is, 575 or 2000 g mol. The hydrogels show fibrillar and porous structures observed in cryo-MEB with pore sizes that vary according to the content of sulfonated groups (10 to 29 mol %) ranging from 50 to more than 150 nm. Furthermore, depending on the proportions of the two polymers, a variable rigidity is observed from 2 to 40 Pa. In fact, the evaluation of the dynamic mechanical properties of the hydrogel determined by DMA reveals that the less rigid hydrogels hinder the adhesion of bacteria. Finally, these hydrogels swelling up to 5000% are noncytotoxic, allowing the adhesion and amplification of immortalized C2C12 cells, and they are therefore seen as promising materials both for repelling bacteria and for amplifying myogenic cells.
制备了基于聚(3-羟基链烷酸酯)(PHA)磺酸盐和聚乙二醇二丙烯酸酯(PEGDA)的水凝胶。首先,在3-巯基-1-乙磺酸钠存在下,通过硫醇-烯反应由不饱和PHA合成PHA磺酸盐。通过添加磺酸盐官能团,PHA的亲水性显著增加,合成了三种两亲性PHA,其磺酸盐官能团含量分别为10%、22%或29%。然后,在具有不同摩尔质量(即575或2000 g/mol)的PEGDA存在下形成水凝胶。水凝胶呈现出在低温扫描电子显微镜(cryo-MEB)中观察到的纤维状和多孔结构,孔径根据磺化基团含量(10至29 mol%)在50至150 nm以上变化。此外,根据两种聚合物的比例,观察到从2到40 Pa的可变刚度。事实上,通过动态热机械分析(DMA)对水凝胶动态力学性能的评估表明,刚度较小的水凝胶会阻碍细菌的粘附。最后,这些溶胀高达5000%的水凝胶无细胞毒性,能够使永生化C2C12细胞粘附并扩增,因此它们被视为用于抗菌和扩增成肌细胞的有前景的材料。