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Macrophages and the maintenance of homeostasis

Journal

CELLULAR & MOLECULAR IMMUNOLOGY
Volume 18, Issue 3, Pages 579-587

Publisher

CHIN SOCIETY IMMUNOLOGY
DOI: 10.1038/s41423-020-00541-3

Keywords

Macrophages; polarization; cytokines; development; inflammation

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Macrophages should not only be considered immune cells, but more broadly as cellular transducers that interpret microenvironmental changes and actuate vital tissue responses. They sense a variety of inputs from their environment and transduce these inputs into different response outcomes to maintain homeostasis.
There have been many chapters written about macrophage polarization. These chapters generally focus on the role of macrophages in orchestrating immune responses by highlighting the T-cell-derived cytokines that shape these polarizing responses. This bias toward immunity is understandable, given the importance of macrophages to host defense. However, macrophages are ubiquitous and are involved in many different cellular processes, and describing them as immune cells is undoubtedly an oversimplification. It disregards their important roles in development, tissue remodeling, wound healing, angiogenesis, and metabolism, to name just a few processes. In this chapter, we propose that macrophages function as transducers in the body. According to Wikipedia, A transducer is a device that converts energy from one form to another. The word transducer is a term used to describe both the sensor, which can interpret a wide range of energy forms, and the actuator, which can switch voltages or currents to affect the environment. Macrophages are able to sense a seemingly endless variety of inputs from their environment and transduce these inputs into a variety of different response outcomes. Thus, rather than functioning as immune cells, they should be considered more broadly as cellular transducers that interpret microenvironmental changes and actuate vital tissue responses. In this chapter, we will describe some of the sensory stimuli that macrophages perceive and the responses they make to these stimuli to achieve their prime directive, which is the maintenance of homeostasis.

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