Yang Lanti, Fitié Carel F C, van der Werf Kees O, Bennink Martin L, Dijkstra Pieter J, Feijen Jan
Polymer Chemistry and Biomaterials, Faculty of Science and Technology and Institute for Biomedical Technology (BMTI), University of Twente, P.O. Box 217, 7500 AE, Enschede, The Netherlands.
Biomaterials. 2008 Mar;29(8):955-62. doi: 10.1016/j.biomaterials.2007.10.058.
The mechanical properties of single electrospun collagen fibers were investigated using scanning mode bending tests performed with an AFM. Electrospun collagen fibers with diameters ranging from 100 to 600 nm were successfully produced by electrospinning of an 8% w/v solution of acid soluble collagen in 1,1,1,3,3,3-hexafluoro-2-propanol (HFP). Circular dichroism (CD) spectroscopy showed that 45% of the triple helical structure of collagen molecules was denatured in the electrospun fibers. The electrospun fibers were water soluble and became insoluble after cross-linking with glutaraldehyde vapor for 24h. The bending moduli and shear moduli of both non- and cross-linked single electrospun collagen fibers were determined by scanning mode bending tests after depositing the fibers on glass substrates containing micro-channels. The bending moduli of the electrospun fibers ranged from 1.3 to 7.8 GPa at ambient conditions and ranged from 0.07 to 0.26 MPa when immersed in PBS buffer. As the diameter of the fibrils increased, a decrease in bending modulus was measured clearly indicating mechanical anisotropy of the fiber. Cross-linking of the electrospun fibers with glutaraldehyde vapor increased the shear modulus of the fiber from approximately 30 to approximately 50 MPa at ambient conditions.
使用原子力显微镜(AFM)进行扫描模式弯曲试验,研究了单根电纺胶原纤维的力学性能。通过将8% w/v的酸溶性胶原溶液在1,1,1,3,3,3-六氟-2-丙醇(HFP)中进行电纺,成功制备了直径范围为100至600 nm的电纺胶原纤维。圆二色性(CD)光谱表明,电纺纤维中45%的胶原分子三螺旋结构发生了变性。电纺纤维可溶于水,在与戊二醛蒸汽交联24小时后变得不溶。在将纤维沉积在含有微通道的玻璃基板上后,通过扫描模式弯曲试验测定了未交联和交联的单根电纺胶原纤维的弯曲模量和剪切模量。在环境条件下,电纺纤维的弯曲模量范围为1.3至7.8 GPa,浸入PBS缓冲液中时范围为0.07至0.26 MPa。随着原纤维直径的增加,弯曲模量明显降低,清楚地表明了纤维的力学各向异性。在环境条件下,用电纺纤维与戊二醛蒸汽交联可使纤维的剪切模量从约30 MPa增加到约50 MPa。