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Journal Article

Metabolic strategy of macrophages under homeostasis or immune stress in Drosophila

Wang Luo; Sumin Liu; Fang Zhang; Long Zhao; Ying Su
Marine Life Science & Technology · Vol. 4, Issue 3 · pp. 291-302 · 2022

Abstract

Macrophages are well known for their phagocytic functions in innate immunity across species. In mammals, they rapidly consume a large amount of energy by shifting their metabolism from mitochondrial oxidative phosphorylation toward aerobic glycolysis, to perform the effective bactericidal function upon infection. Meanwhile, they strive for sufficient energy resources by restricting systemic metabolism. In contrast, under nutrient deprivation, the macrophage population is down-regulated to save energy for survival. Drosophila melanogaster possesses a highly conserved and comparatively simple innate immune system. Intriguingly, recent studies have shown that Drosophila plasmatocytes, the macrophage-like blood cells, adopt comparable metabolic remodeling and signaling pathways to achieve energy reassignment when challenged by pathogens, indicating the conservation of such metabolic strategies between insects and mammals. Here, focusing on Drosophila macrophages (plasmatocytes), we review recent advances regarding their comprehensive roles in local or systemic metabolism under homeostasis or stress, emphasizing macrophages as critical players in the crosstalk between the immune system and organic metabolism from a Drosophila perspective.

Bibliographic Information

JournalMarine Life Science & Technology
PublisherSpringer
Publication Date2022-08-16
Publication Year2022
Volume4
Issue3
Pages291-302
Document TypeJournal Article
eISSN2662-1746
DOI10.1007/s42995-022-00134-1

Access Information

NARA Access Coverage2019-01-01~Current
Journal Homepagehttps://www.springer.com/journal/42995
Publisher PageOpen Publisher Page
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