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Updated: May 20, 2026

Processing Embryo, Eggshell, and Fungal Culture for Scanning Electron Microscopy
Published on: August 16, 2019
Methodological estimation of pore size in hen eggshell membranes.
Masahide Hagiri1,2, Mayuko Suzuki3
1Department of Chemistry and Materials Science, Gunma College, National Institute of Technology, 580, Toribamachi, Maebashi, 371-8530, Gunma, Japan. hagiri@gunma-ct.ac.jp.
This study quantifies eggshell membrane (ESM) pore size using two methods, finding dimensions around 100-200 nm. These validated techniques offer insights into biological barriers and potential biomaterial applications.
Area of Science:
- Materials Science
- Biotechnology
- Biophysics
Background:
- Eggshell membranes (ESM) are vital proteinaceous biobarriers in avian development.
- Quantitative data on ESM pore dimensions are currently limited.
- Understanding pore structure is crucial for exploring ESM applications.
Purpose of the Study:
- To determine the effective pore size of chicken eggshell membranes (ESM).
- To validate complementary methodological approaches for pore size estimation.
- To assess the potential of ESM in bioinspired membrane technologies.
Main Methods:
- Pressure-driven water permeation analyzed via the Guéout-Bjerrum-Manegold relation.
- Size-selective filtration using colloidal silica and polystyrene latex particles (14-204 nm).
- Ferry-Renkin model interpretation of particle rejection rates.
Main Results:
- Consistent pore dimension estimates obtained from both permeation and filtration methods.
- Effective pore sizes were determined to be in the range of approximately 100-200 nm.
- Validation of orthogonal methods for characterizing semipermeable biological barriers.
Conclusions:
- The study successfully validated two complementary methods for estimating ESM pore size.
- ESM exhibits pore dimensions suitable for potential applications in filtration and biosafety.
- These findings support the use of ESM as a sustainable biowaste resource for advanced membrane technologies.
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