| Literature DB >> 15596492 |
J Pablo Marquez1, Guy M Genin, George I Zahalak, Elliot L Elson.
Abstract
Constitutive models are needed to relate the active and passive mechanical properties of cells to the overall mechanical response of bio-artificial tissues. The Zahalak model attempts to explicitly describe this link for a class of bio-artificial tissues. A fundamental assumption made by Zahalak is that cells stretch in perfect registry with a tissue. We show this assumption to be valid only for special cases, and we correct the Zahalak model accordingly. We focus on short-term and very long-term behavior, and therefore consider tissue constituents that are linear in their loading response (although not necessarily linear in unloading). In such cases, the average strain in a cell is related to the macroscopic tissue strain by a scalar we call the "strain factor". We incorporate a model predicting the strain factor into the Zahalak model, and then reinterpret experiments reported by Zahalak and co-workers to determine the in situ stiffness of cells in a tissue construct. We find that, without the modification in this article, the Zahalak model can underpredict cell stiffness by an order of magnitude.Mesh:
Substances:
Year: 2004 PMID: 15596492 PMCID: PMC1305154 DOI: 10.1529/biophysj.104.040808
Source DB: PubMed Journal: Biophys J ISSN: 0006-3495 Impact factor: 4.033