Abstract
The zona pellucida (ZP) is an extracellular membrane surrounding mammalian oocytes. The
so-called zona hardening plays a key role in fertilization process, as it blocks polyspermy,
which may also be caused by an increase in the mechanical stiffness of the ZP membrane.
However, structural reorganization mechanisms leading to ZP’s biomechanical hardening
are not fully understood yet. Furthermore, a correct estimate of the elastic properties of
the ZP is still lacking. Therefore, the aim of the present study was to investigate the biomechanical
behaviour of ZP membranes extracted from mature and fertilized bovine
oocytes to better understand the mechanisms involved in the structural reorganization of
the ZP that may lead to the biomechanical hardening of the ZP. For that purpose, a hybrid
procedure is developed by combining atomic force microscopy nanoindentation measurements,
nonlinear finite element analysis and nonlinear optimization. The proposed approach allows us
to determine the biomechanical properties of the ZP more realistically than the classical analysis
based on Hertz’s contact theory, as it accounts for the nonlinearity of finite indentation
process, hyperelastic behaviour and material heterogeneity. Experimental results show the
presence of significant biomechanical hardening induced by the fertilization process. By
comparing various hyperelastic constitutive models, it is found that the Arruda–Boyce
eight-chain model best describes the biomechanical response of the ZP. Fertilization leads
to an increase in the degree of heterogeneity of membrane elastic properties. The Young
modulus changes sharply within a superficial layer whose thickness is related to the characteristic
distance between cross-links in the ZP filamentous network. These findings support
the hypothesis that biomechanical hardening of bovine ZP is caused by an increase in the
number of inter-filaments cross-links whose density should be higher in the ZP inner side.
Lingua originale | English |
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pagine (da-a) | 1-12 |
Numero di pagine | 12 |
Rivista | Journal of the Royal Society Interface |
Volume | 2012 |
DOI | |
Stato di pubblicazione | Pubblicato - 2012 |
Keywords
- force spectroscopy
- zona pellucida