Argentati Chiara, Morena Francesco, Montanucci Pia, Rallini Marco, Basta Giuseppe, Calabrese Nicolino, Calafiore Riccardo, Cordellini Marino, Emiliani Carla, Armentano Ilaria, Martino Sabata
Department of Chemistry, Biology and Biotechnologies, Biochemistry and Molecular Biology Unit, University of Perugia, Via del Giochetto, 06126 Perugia, Italy.
Section of Cardiovascular, Endocrine and Metabolic Clinical Physiology, Laboratory for Endocrine Cell Transplants and Biohybrid Organs, Department of Medicine, University of Perugia, 06126 Perugia, Italy.
Polymers (Basel). 2018 Feb 1;10(2):140. doi: 10.3390/polym10020140.
Current knowledge indicates that the molecular cross-talk between stem cells and biomaterials guides the stem cells' fate within a tissue engineering system. In this work, we have explored the effects of the interaction between the poly(l-lactide) acid (PLLA) polymer film and human adult adipose stem cells (hASCs), focusing on the events correlating the materials' surface characteristics and the cells' plasma membrane. hASCs were seeded on films of pristine PLLA polymer and on a PLLA surface modified by the radiofrequency plasma method under oxygen flow (PLLA+O₂). Comparative experiments were performed using human bone-marrow mesenchymal stem cells (hBM-MSCs) and human umbilical matrix stem cells (hUCMSCs). After treatment with oxygen-plasma, the surface of PLLA films became hydrophilic, whereas the bulk properties were not affected. hASCs cultured on pristine PLLA polymer films acquired a spheroid conformation. On the contrary, hASCs seeded on PLLA+O₂ film surface maintained the fibroblast-like morphology typically observed on tissue culture polystyrene. This suggests that the surface hydrophilicity is involved in the acquisition of the spheroid conformation. Noteworthy, the oxygen treatment had no effects on hBM-MSC and hUCMSC cultures and both stem cells maintained the same shape observed on PLLA films. This different behavior suggests that the biomaterial-interaction is stem cell specific.
目前的知识表明,干细胞与生物材料之间的分子相互作用引导着组织工程系统中干细胞的命运。在这项工作中,我们研究了聚左旋乳酸(PLLA)聚合物薄膜与成人脂肪干细胞(hASCs)之间相互作用的影响,重点关注与材料表面特性和细胞质膜相关的事件。将hASCs接种在原始PLLA聚合物薄膜以及在氧气流中通过射频等离子体法改性的PLLA表面(PLLA+O₂)上。使用人骨髓间充质干细胞(hBM-MSCs)和人脐基质干细胞(hUCMSCs)进行了对比实验。经过氧等离子体处理后,PLLA薄膜表面变得亲水,而本体性质未受影响。在原始PLLA聚合物薄膜上培养的hASCs呈现出球形构象。相反,接种在PLLA+O₂薄膜表面的hASCs保持了在组织培养聚苯乙烯上通常观察到的成纤维细胞样形态。这表明表面亲水性与球形构象的形成有关。值得注意的是,氧处理对hBM-MSC和hUCMSC培养物没有影响,两种干细胞在PLLA薄膜上保持相同的形状。这种不同的行为表明生物材料相互作用具有干细胞特异性。