Bacterial spores respond to humidity similarly to hydrogels
Document Type
Article
Publication Date
3-5-2024
Abstract
Bacterial spores have outstanding properties from the materials science perspective, which allow them to survive extreme environmental conditions. Recent work by [S. G. Harrellson et al., Nature 619, 500–505 (2023)] studied the mechanical properties of Bacillus subtilis spores and the evolution of these properties with the change of humidity. The experimental measurements were interpreted assuming that the spores behave as water-filled porous solids, subjected to hydration forces. Here, we revisit their experimental data using literature data on vapor sorption on spores and ideas from polymer physics. We demonstrate that upon the change of humidity, the spores behave like rubber with respect to their swelling, elasticity, and relaxation times. This picture is consistent with the knowledge of the materials comprising the bacterial cell walls—cross-linked peptidoglycan. Our results provide an interpretation of the mechanics of bacterial spores and can help in developing synthetic materials mimicking the mechanical properties of the spores.
Identifier
85186740332 (Scopus)
Publication Title
Proceedings of the National Academy of Sciences of the United States of America
External Full Text Location
https://doi.org/10.1073/pnas.2320763121
e-ISSN
10916490
ISSN
00278424
PubMed ID
38416680
Issue
10
Volume
121
Grant
CBET-1944495
Fund Ref
National Science Foundation
Recommended Citation
Gor, Gennady Y.; Scherer, George W.; and Stone, Howard A., "Bacterial spores respond to humidity similarly to hydrogels" (2024). Faculty Publications. 569.
https://digitalcommons.njit.edu/fac_pubs/569