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Published on: December 28, 2015
Clonal selection versus clonal cooperation: the integrated perception of immune objects
1Bank of Tissues and Cells, Lyon University Hospital (Hospices Civils de Lyon), CarMeN Laboratory, INSERM 1060, INRA 1397, INSA Lyon, Université Claude Bernard Lyon-1, University Lyon-1, Lyon, France.
Insights
The immune system processes information like the nervous system, integrating signals for perception. This immune perception relies on clonal cooperation, not just clonal selection, for effective responses.
Area of Science:
- Neuroscience
- Immunology
- Cognitive Immunology
Background:
- Niels Jerne first proposed analogies between immune and nervous systems with "recognition" and "memory".
- Irun Cohen's cognitive immunology paradigm further explored immune functions through neuroscience.
- This paper revisits the immune-nervous system analogy, focusing on perception processes.
Purpose of the Study:
- To draw parallels between brain visual perception pathways and immune object perception.
- To propose a new framework for understanding integrated immune perception in secondary lymphoid organs (SLOs).
- To suggest that immune responses rely on clonal cooperation over clonal selection.
Main Methods:
- Re-interpreting existing experimental data on immune cell interactions.
- Comparing visual perception mechanisms (separate feature processing, integrated perception) with immune signal processing.
- Analyzing signal integration by T helper (TH) cells in SLO niches.
Main Results:
- Immune objects are perceived through distinct signal categories (antigenic, contextual, temporal, localization) processed by separate cell networks.
- TH-cells integrate these signals at a single-cell level within SLO niches.
- This integration generates diverse T-cell and B-cell clones for a global immune object perception.
Conclusions:
- Integrated immune perception mirrors higher-order visual perception, involving cooperative tasks.
- Immune responses are proposed to be driven by clonal cooperation, enhancing integrated perception.
- This framework shifts the understanding of immune function from selection to cooperation.
Abstract:
Analogies between the immune and nervous systems were first envisioned by the immunologist Niels Jerne who introduced the concepts of antigen "recognition" and immune "memory". However, since then, it appears that only the cognitive immunology paradigm proposed by Irun Cohen, attempted to further theorize the immune system functions through the prism of neurosciences. The present paper is aimed at revisiting this analogy-based reasoning. In particular, a parallel is drawn between the brain pathways of visual perception and the processes allowing the global perception of an "immune object". Thus, in the visual system, distinct features of a visual object (shape, color, motion) are perceived separately by distinct neuronal populations during a primary perception task. The output signals generated during this first step instruct then an integrated perception task performed by other neuronal networks. Such a higher order perception step is by essence a cooperative task that is mandatory for the global perception of visual objects. Based on a re-interpretation of recent experimental data, it is suggested that similar general principles drive the integrated perception of immune objects in secondary lymphoid organs (SLOs). In this scheme, the four main categories of signals characterizing an immune object (antigenic, contextual, temporal and localization signals) are first perceived separately by distinct networks of immunocompetent cells. Then, in a multitude of SLO niches, the output signals generated during this primary perception step are integrated by TH-cells at the single cell level. This process eventually generates a multitude of T-cell and B-cell clones that perform, at the scale of SLOs, an integrated perception of immune objects. Overall, this new framework proposes that integrated immune perception and, consequently, integrated immune responses, rely essentially on clonal cooperation rather than clonal selection.
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