Related Experiment Video
Updated: Jul 30, 2026

Tractable Mammalian Cell Infections with Protozoan-primed Bacteria
Published on: April 2, 2013
Mechanics of solid tissue invasion by the mammalian pathogen Pythium insidiosum
J P Ravishankar1, C M Davis, D J Davis
1Department of Botany, Miami University, Oxford, Ohio 45056, USA.
Abstract:
The relative significance of mechanical penetration versus the action of substrate-degrading enzymes during solid tissue invasion has not been established for any fungal disease. Pythium insidiosum is an oomycete fungus (or stramenopile) that causes a rare, but potentially lethal infection in humans and other mammalian hosts. Experiments with miniature strain gauges showed that single hyphal apices of this pathogen exert forces of up to 6.9 microN, corresponding to maximum pressures of 0.3 microN microm(-2) or MPa. Samples of cutaneous and subcutaneous tissue from fresh human cadavers displayed a mean strength (resistance to needle puncture) of 24 microN microm(-2), and a mean pressure of 30 microN microm(-2) was necessary to penetrate skin strips from slaughtered horses. These experiments demonstrate that P. insidiosum does not exert sufficient pressure to penetrate undamaged skin by mechanics alone, but must effect a decisive reduction in tissue strength by proteinase secretion.
Insights
Pythium insidiosum cannot mechanically penetrate intact mammalian tissues. This oomycete requires secreted proteinases to degrade tissue, highlighting the importance of enzymatic action in fungal invasion.
Area of Science:
- Mycology and Pathogenesis
- Oomycete Biology
- Infectious Diseases
Background:
- Solid tissue invasion by fungal pathogens is crucial for disease development.
- The relative roles of mechanical force and enzymatic degradation in tissue penetration remain unclear for most fungal diseases.
- Pythium insidiosum, an oomycete, causes severe infections in mammals.
Purpose of the Study:
- To determine the physical forces exerted by Pythium insidiosum hyphae.
- To compare the pathogen's mechanical pressure with the strength of mammalian tissues.
- To elucidate the mechanism of tissue invasion by Pythium insidiosum.
Main Methods:
- Utilized miniature strain gauges to measure the force exerted by single hyphal tips of P. insidiosum.
- Quantified the mechanical strength of human cutaneous and subcutaneous tissues via puncture resistance.
- Assessed the pressure required to penetrate equine skin strips.
Main Results:
- P. insidiosum hyphal apices generate pressures up to 0.3 microN/µm².
- Human dermal and subcutaneous tissues exhibit mean strengths of 24 microN/µm².
- Equine skin requires a mean pressure of 30 microN/µm² for penetration.
Conclusions:
- P. insidiosum lacks the mechanical force to breach intact skin or underlying tissues.
- The pathogen must rely on secreting proteinases to weaken tissue barriers.
- Enzymatic degradation is essential for P. insidiosum to initiate solid tissue invasion.
More Related Videos
11:50Bacterial Leaf Infiltration Assay for Fine Characterization of Plant Defense Responses using the Arabidopsis thaliana-Pseudomonas syringae Pathosystem
Published on: October 1, 2015
09:29Live Imaging of Microtubule Dynamics in Glioblastoma Cells Invading the Zebrafish Brain
Published on: July 29, 2022
Related Concept Videos
Cancer Cell Migration through Invadopodia
Fungal Phylum Microsporidia
Diversity of Protists II
Colonisation of Pathogens
Determinants of Bacterial Pathogenicity and Virulence
Amebiasis