Physical Phenomena Governing Mineral Morphogenesis in Molluscan Nacre.
biomineralization
growth anisotropy
nacre formation
phase-field modeling
reverse engineering
Journal
Small (Weinheim an der Bergstrasse, Germany)
ISSN: 1613-6829
Titre abrégé: Small
Pays: Germany
ID NLM: 101235338
Informations de publication
Date de publication:
27 Sep 2023
27 Sep 2023
Historique:
revised:
09
08
2023
received:
18
05
2023
pubmed:
28
9
2023
medline:
28
9
2023
entrez:
28
9
2023
Statut:
aheadofprint
Résumé
Mollusks, as well as many other living organisms, have the ability to shape mineral crystals into unconventional morphologies and to assemble them into complex functional mineral-organic structures, an observation that inspired tremendous research efforts in scientific and technological domains. Despite these, a biochemical toolkit that accounts for the formation of the vast variety of the observed mineral morphologies cannot be identified yet. Herein, phase-field modeling of molluscan nacre formation, an intensively studied biomineralization process, is used to identify key physical parameters that govern mineral morphogenesis. Manipulating such parameters, various nacre properties ranging from the morphology of a single mineral building block to that of the entire nacreous assembly are reproduced. The results support the hypothesis that the control over mineral morphogenesis in mineralized tissues happens via regulating the physico-chemical environment, in which biomineralization occurs: the organic content manipulates the geometric and thermodynamic boundary conditions, which in turn, determine the process of growth and the form of the biomineral phase. The approach developed here has the potential of providing explicit guidelines for the morphogenetic control of synthetically formed composite materials.
Identifiants
pubmed: 37759411
doi: 10.1002/smll.202304183
doi:
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
e2304183Subventions
Organisme : National Research, Development and Innovation Office
ID : KKP-126749
Informations de copyright
© 2023 The Authors. Small published by Wiley-VCH GmbH.
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