DocumentCode :
2948467
Title :
Force measurement study of engineered collagen-chitosan scaffold using Atomic Force Microscopy
Author :
Dong, Zhuxin ; Wejinya, Uchechukwu C. ; Zhu, Yanxia ; Ye, Kaiming
Author_Institution :
Dept. of Mech. Eng., Univ. of Arkansas, Fayetteville, AR, USA
fYear :
2010
fDate :
5-9 Dec. 2010
Firstpage :
184
Lastpage :
187
Abstract :
The structure and properties of scaffold are important in cell-based tissue engineering, especially the mechanical property. Here, we quantify the dynamic oscillatory mechanical behavior of two kinds of porous collagen/chitosan scaffolds. The Young´s Modulus were measured in PBS using Atomic Force Microscopy (AFM)-based nano-indentation in response to an imposed oscillatory deformation as a function of force, which can be converted to Young´s Modulus. Collagen/chitosan scaffolds with different ratio (8:2 and 7:3, V/V), which already showed good properties for cell culture, were tested. The Young´s Modulus of collagen/chitosan scaffold with ratio 7:3 is bigger than that of 8:2, which is consistent with our expectation. Force curves were obtained first from indentation, and then Young´s Modulus was determined using a proper Hertz contact mathematical model. Meanwhile, the mechanical properties of mice pancreas and heart were obtained as controls. The results indicated that AFM-based nano-indentation is a good method for the mechanical property testing of porous scaffold.
Keywords :
Young´s modulus; atomic force microscopy; biomechanics; deformation; force measurement; nanoindentation; proteins; tissue engineering; AFM-based nanoindentation; Hertz contact mathematical model; Young´s modulus; atomic force microscopy; cell-based tissue engineering; dynamic oscillatory mechanical behavior; engineered collagen-chitosan scaffold; force curves; force measurement; imposed oscillatory deformation; mechanical property; porous collagen-chitosan scaffold; Force; Force measurement; Heart; Mice; Nanobioscience; Pancreas; AFM; Collagen/Chitosan; Nano-indentation; Scaffold; Tissue Engineering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nano/Molecular Medicine and Engineering (NANOMED), 2010 IEEE 4th International Conference on
Conference_Location :
Hong Kong/Macau
ISSN :
2159-6964
Print_ISBN :
978-1-61284-152-6
Type :
conf
DOI :
10.1109/NANOMED.2010.5749831
Filename :
5749831
Link To Document :
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