DocumentCode
3517487
Title
Cell spreading on biocompatible materials studied by computer simulations
Author
Robu, A. ; Stoicu-Tivadar, L. ; Neagu, A.
Author_Institution
Dept. of Autom. & Appl. Inf., Politeh. Univ. of Timisoara, Timisoara, Romania
fYear
2011
fDate
19-21 May 2011
Firstpage
641
Lastpage
644
Abstract
The goal of tissue engineering is to create functional tissue constructs that can be implanted into the human organism. A classical approach to tissue engineering consists in the culturing of cells on porous scaffolds made of biocompatible and biodegradable materials. An important step in this approach is the cell seeding of scaffolds. It has been shown that uniform seeding leads to faster development of the tissue construct and superior mechanical properties in comparison to non-uniform seeding. The success of seeding depends on cell spreading on the scaffold´s material. This paper presents a computational model of a biological system used in experiments on cell spreading on biomaterials. The model describes a cell aggregate placed on a parallelepipedic slab of biomaterial bathed in cell culture medium. Experiments suggest that cell spreading results from a competition between cell-cell and cell-biomaterial interactions, in accord with Steinberg´s differential adhesion hypothesis, which considers that the cellular system evolves towards the state of minimum energy of adhesion. Using the Metropolis Monte Carlo method, we simulated cell spreading on a biomaterial for different values of the cell-cell and cell-biomaterial interactions and found that cell spreading is governed by the difference between half the cell-cell cohesion energy and the cell-biomaterial adhesion energy.
Keywords
Monte Carlo methods; adhesion; aggregation; biodegradable materials; biomechanics; biomedical materials; cellular biophysics; physiological models; porous materials; prosthetics; tissue engineering; Metropolis Monte Carlo method; Steinberg differential adhesion; biocompatible materials; biodegradable materials; biomaterials; cell aggregation; cell seeding; cell spreading; cell-biomaterial interactions; cell-cell cohesion energy; cell-cell interactions; functional tissue constructs; implant; porous scaffolds; superior mechanical properties; tissue engineering; Adhesives; Aggregates; Biological system modeling; Computational modeling; Solid modeling; Substrates;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Computational Intelligence and Informatics (SACI), 2011 6th IEEE International Symposium on
Conference_Location
Timisoara
Print_ISBN
978-1-4244-9108-7
Type
conf
DOI
10.1109/SACI.2011.5873082
Filename
5873082
Link To Document