Department of Chemistry and Applied Biosciences, Institute for Chemical and Bioengineering, HCI E 107, ETH Zurich, Wolfgang-Pauli-Str. 10, CH-8093, Zurich, Switzerland.
Nanoscale. 2011 Feb;3(2):401-9. doi: 10.1039/c0nr00615g. Epub 2010 Nov 9.
The present study evaluates the in vitro biomedical performance of an electrospun, flexible, anisotropic bilayer with one layer containing a collagen to mineral ratio similar to that in bone. The double membrane consists of a poly(lactide-co-glycolide) (PLGA) layer and an amorphous calcium phosphate (a-CaP)/collagen (Col)/PLGA layer. In vitro biomineralisation and a cell culture study with human mesenchymal stem cells (hMSC) were conducted to characterise such membranes for possible application as biomaterials. Nanofibres with different a-CaP/Col/PLGA compositions were synthesised by electrospinning to mimic the actual composition of bone tissue. Immersion in simulated body fluid and in cell culture medium resulted in the deposition of a hydroxyapatite layer. Incubation of hMSC for 4 weeks allowed for assessment of the proliferation and osteogenic differentiation of the cells on both sides of the double membrane. Confocal laser scanning microscopy was used to observe the proper adhesion of the cells. Calcium and collagen content was proven by Alizarin red S and Sirius red assays. Acute cytotoxic effects of the nanoparticles or the chemicals used in the scaffold preparation could be excluded based on viability assays (alamarBlue and alkaline phosphatase activity). The findings suggest possible application of such double membranes is in treatment of bone defects with complex geometries as wound dressing material.
本研究评估了一种具有纤维各向异性的电纺双层柔性生物医学性能,其中一层的胶原与矿物质比例与骨相似。双层膜由聚乳酸-共-乙醇酸(PLGA)层和无定形磷酸钙(a-CaP)/胶原(Col)/PLGA 层组成。通过体外生物矿化和人骨髓间充质干细胞(hMSC)的细胞培养研究,对这种膜进行了表征,以评估其作为生物材料的潜在应用。通过静电纺丝合成了具有不同 a-CaP/Col/PLGA 组成的纳米纤维,以模拟骨组织的实际组成。在模拟体液和细胞培养液中的浸泡导致了羟基磷灰石层的沉积。将 hMSC 孵育 4 周,可评估双层膜两侧细胞的增殖和成骨分化情况。共聚焦激光扫描显微镜用于观察细胞的适当黏附。茜素红 S 和 Sirius 红测定法证明了钙和胶原蛋白的含量。基于细胞活力测定(alamarBlue 和碱性磷酸酶活性),可以排除纳米颗粒或支架制备中使用的化学物质的急性细胞毒性作用。这些发现表明,这种双层膜可能适用于治疗具有复杂几何形状的骨缺损,作为伤口敷料材料。