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Published on: January 1, 2008
Immunology discovers physiology
K W Kelley1, R W Johnson, R Dantzer
1Department of Animal Sciences, University of Illinois, Urbana 61801.
Insights
The immune system is not autonomous; it interacts with other physiological systems like the neuroendocrine and central nervous systems (CNS). This integrated view of immunophysiology is crucial for understanding complex immune regulation.
Area of Science:
- Immunology
- Neuroscience
- Endocrinology
- Physiology
Background:
- Traditional views held the brain and immune system as separate, with cytokines acting solely between leukocytes.
- The immune system was considered autonomous, unaffected by other physiological systems.
Purpose of the Study:
- To challenge outdated notions of immune system autonomy.
- To highlight the interconnectedness of the immune system with neuroendocrine, cardiovascular, reproductive, and central nervous systems (CNS).
- To advocate for the integration of immunophysiology into domestic animal immunology.
Main Methods:
- Review of existing scientific literature and traditional viewpoints.
- Exploration of emerging research integrating immunology with neuroscience, endocrinology, and pharmacology.
Main Results:
- Evidence suggests a dynamic interplay between the immune system and other physiological systems.
- Communication loops likely exist between immune cells and other tissues to maintain homeostasis during inflammation.
- Cytokine properties (redundancy, pleiotropy) may be better understood through an integrated lens.
Conclusions:
- The immune system is intricately linked with other bodily systems, not isolated.
- The field of immunophysiology offers a new paradigm for understanding immunoregulation.
- Integrating immunophysiology is essential for advancing the study of animal immunity.
Abstract:
Not so long ago, it was believed that the brain is totally devoid of immunologic reactions, that cytokines derived from activated leukocytes serve only as communication molecules between leukocytes and that the immune system is regulated solely by intrinsic mechanisms. One by one, these old-time, traditional views have fallen by the wayside as neuroscientists, endocrinologists and pharmacologists have begun to explore immunology. The old view was that the immune system is autonomous because it neither affects nor is it affected by other physiologic systems. The new view is that cells of the immune system are inextricably linked with other physiological systems, including the neuroendocrine, cardiovascular, reproductive and central nervous systems (CNS). Changes in one system evoke changes in the other, and it is likely that communication loops have evolved between cells of the immune system and those of other tissues to coordinate and regulate functional activities aimed at preserving homeostasis during inflammation. The integrated view of immunophysiologists that cells of the immune system interact with the entire body, rather than existing as a separate physiologic system that operates autonomously, should help to unravel a number of mysteries in immunoregulation, such as the well-recognized redundant and pleiotropic properties of cytokines. Unfortunately, very few of these ideas have been incorporated into studying immunity of domestic animals. A complete understanding of immunobiology will be achieved only after this new field of immunophysiology is integrated into current immunological thinking.(ABSTRACT TRUNCATED AT 250 WORDS)
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