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Isolation of Murine Peritoneal Macrophages to Carry Out Gene Expression Analysis Upon Toll-like Receptors Stimulation
Published on: April 29, 2015
Tissue-Specific Role of Macrophages in Noninfectious Inflammatory Disorders
Daria Skuratovskaia1, Maria Vulf1, Olga Khaziakhmatova1
1Center for Immunology and Cellular Biotechnology, Immanuel Kant Baltic Federal University, 236001 Kaliningrad, Russia.
Abstract:
Chronic inflammation may not begin with local tissue disorders, such as hypoxia, but with the accumulation of critically activated macrophages in one site. The purpose of this review is to analyze the data reported in the scientific literature on the features of the functions of macrophages and their contributions to the development of pathology in various tissues during aseptic inflammation in obese subjects. In individuals with obesity, increased migration of monocytes from the peripheral blood to various tissues, the proliferation of resident macrophages and a change in the balance between alternatively activated anti-inflammatory macrophages (M2) and pro-inflammatory classically activated macrophages (M1) towards the latter have been observed. The primary cause of some metabolic pathologies has been precisely identified as the recruitment of macrophages with an altered phenotype, which is probably typical for many other pathologies. Recent studies have identified phenotypes, such as metabolically activated M (MMe), oxidized (Mox), hemoglobin-related macrophages (Mhem and MHb), M4 and neuroimmunological macrophages (NAM, SAM), which directly and indirectly affect energy metabolism. The high heterogeneity of macrophages in tissues contributes to the involvement of these cells in the development of a wide range of immune responses, including pathological ones. The replenishment of tissue-specific macrophages occurs at the expense of infiltrating monocyte-derived macrophages (MoMFs) in the pathological process. The origin of MoMFs from a general precursor retains their common regulatory mechanisms and similar sensitivity to regulatory stimuli. This makes it possible to find universal approaches to the effect on these cells and, as a consequence, universal approaches for the treatment of various pathological conditions.
Insights
Chronic inflammation in obesity involves activated macrophages. Targeting these diverse macrophage phenotypes offers potential universal treatments for various pathologies.
Area of Science:
- Immunology
- Pathology
- Metabolism
Background:
- Chronic inflammation may originate from macrophage accumulation, not just local tissue issues.
- Obesity is linked to altered monocyte migration, macrophage proliferation, and a shift towards pro-inflammatory M1 macrophages.
Purpose of the Study:
- To review scientific literature on macrophage functions and their role in aseptic inflammation pathology in obese individuals.
- To analyze the contribution of diverse macrophage phenotypes to metabolic pathologies.
Main Methods:
- Literature review of scientific data on macrophage functions and pathology.
- Analysis of studies identifying novel macrophage phenotypes and their metabolic effects.
Main Results:
- Obesity promotes monocyte infiltration and M1 macrophage dominance, contributing to metabolic diseases.
- Newly identified macrophage phenotypes (MMe, Mox, Mhem, MHb, M4, NAM, SAM) impact energy metabolism.
- Monocyte-derived macrophages (MoMFs) replenish tissue macrophages during pathology.
Conclusions:
- Macrophage heterogeneity is central to diverse immune responses, including pathological ones.
- Understanding MoMFs' common regulatory mechanisms suggests universal therapeutic targets.
- Targeting macrophage phenotypes may offer novel treatment strategies for obesity-related pathologies.
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