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Published on: March 1, 2024
Stimulating Fungi Pleurotus ostreatus with Hydrocortisone
Mohammad Mahdi Dehshibi1, Alessandro Chiolerio2,3, Anna Nikolaidou2,4
1Department of Computer Science, Universitat Oberta de Catalunya, Barcelona, Spain.
Abstract:
Fungi cells can sense extracellular signals via reception, transduction, and response mechanisms, allowing them to communicate with their host and adapt to their environment. They feature effective regulatory protein expressions that enhance and regulate their response and adaptation to various triggers such as stress, hormones, physical stimuli such as light, and host factors. In our recent studies, we have shown that Pleurotus oyster fungi generate electrical potential impulses in the form of spike events in response to their exposure to environmental, mechanical, and chemical triggers, suggesting that the nature of stimuli may be deduced from the fungal electrical responses. In this study, we explored the communication protocols of fungi as reporters of human chemical secretions such as hormones, addressing whether fungi can sense human signals. We exposed Pleurotus oyster fungi to hydrocortisone, which was directly applied to the surface of a fungal-colonized hemp shavings substrate, and recorded the electrical activity of the fungi. Hydrocortisone is a medicinal hormone replacement that is similar to the natural stress hormone cortisol. Changes in cortisol levels released by the body indicate the presence of disease and can have a detrimental effect on physiological process regulation. The response of fungi to hydrocortisone was also explored further using X-rays to reveal changes in the fungi tissue, where receiving hydrocortisone by the substrate can inhibit the flow of calcium and, as a result, reduce its physiological changes. This research could open the way for future studies on adaptive fungal wearables capable of detecting human physiological states and biosensors built of living fungi.
Insights
Oyster fungi generate electrical signals in response to human hormones like hydrocortisone. This discovery suggests fungi could be used as biosensors for detecting human physiological states.
Area of Science:
- Mycology
- Biophysics
- Biochemistry
Background:
- Fungi possess sophisticated mechanisms for sensing and responding to environmental cues, including electrical signaling.
- Oyster fungi (Pleurotus) exhibit electrical potential impulses (spike events) in response to various stimuli.
- Understanding fungal communication could reveal novel biological sensing capabilities.
Purpose of the Study:
- To investigate if fungi can detect human chemical signals, specifically hormones.
- To explore the potential of fungi as reporters for human physiological states.
Main Methods:
- Exposure of Pleurotus oyster fungi to hydrocortisone applied to a hemp shavings substrate.
- Recording of fungal electrical activity in response to hydrocortisone.
- X-ray analysis to observe changes in fungal tissue and calcium flow.
Main Results:
- Fungal electrical activity was altered upon exposure to hydrocortisone.
- Hydrocortisone potentially inhibits calcium flow within the fungal substrate, affecting physiological responses.
- Fungal responses suggest a capacity to sense human-secreted hormones.
Conclusions:
- Fungi, specifically oyster fungi, can sense and respond to human hormones like hydrocortisone.
- This sensing capability opens avenues for developing fungal-based biosensors and adaptive wearables.
- Further research is warranted to fully elucidate fungal communication and sensing mechanisms for human health applications.
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