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Updated: Apr 27, 2026

Using Caenorhabditis elegans as a Model System to Study Protein Homeostasis in a Multicellular Organism
Published on: December 18, 2013
A Systems Engineering Perspective on Homeostasis and Disease.
Yoram Vodovotz1, Gary An2, Ioannis P Androulakis3
1Department of Surgery, University of Pittsburgh , Pittsburgh, PA , USA ; Center for Inflammation and Regenerative Modeling, McGowan Institute for Regenerative Medicine, University of Pittsburgh , Pittsburgh, PA , USA.
Engineered systems and living organisms share complex network dynamics. Understanding engineered systems offers insights into biological complexity, health, and disease through systems engineering principles.
Area of Science:
- Systems Engineering
- Biological Complexity
- Physiology
Background:
- Engineered systems are coupled networks designed for robustness and flexibility in changing environments.
- Living systems exhibit multi-scale architecture with characteristics similar to engineered systems.
- Health and disease can be viewed as dynamically stable or unstable states within biological networks.
Conclusions:
- The study highlights the potential of systems engineering to advance our understanding of health and disease.
- Interdisciplinary approaches integrating engineering and biology can yield novel insights into complex systems.
- Further research can leverage engineered system models to develop new therapeutic strategies and predictive health models.
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