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Article Abstract

Background: The phagocytosis and homeostasis of microglia play an important role in promoting blood clearance and improving prognosis after subarachnoid hemorrhage (SAH). LC3-assocaited phagocytosis (LAP) contributes to the microglial phagocytosis and homeostasis via autophagy-related components. With RNA-seq sequencing, we found potential signal pathways and genes which were important for the LAP of microglia.

Methods: We used an in vitro model of oxyhemoglobin exposure as SAH model in the study. RNA-seq sequencing was performed to seek critical signal pathways and genes in regulating LAP. Bioparticles were used to access the phagocytic ability of microglia. Western blot (WB), immunoprecipitation, quantitative polymerase chain reaction (qPCR) and immunofluorescence were performed to detect the expression change of LAP-related components and investigate the potential mechanisms.

Results: In vitro SAH model, there were increased inflammation and decreased phagocytosis in microglia. At the same time, we found that the LAP of microglia was inhibited in all stages. RNA-seq sequencing revealed the importance of P38 MAPK signal pathway and DAPK1 in regulating microglial LAP. P38 was found to regulate the expression of DAPK1, and P38-DAPK1 axis was identified to regulate the LAP and homeostasis of microglia after SAH. Finally, we found that P38-DAPK1 axis regulated expression of BECN1, which indicated the potential mechanism of P38-DAPK1 axis regulating microglial LAP.

Conclusion: P38-DAPK1 axis regulated the LAP of microglia via BECN1, affecting the phagocytosis and homeostasis of microglia in vitro SAH model. Video Abstract.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10362611PMC
http://dx.doi.org/10.1186/s12964-023-01173-6DOI Listing

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P38-DAPK1 axis regulated LC3-associated phagocytosis (LAP) of microglia in an in vitro subarachnoid hemorrhage model.

Cell Commun Signal

July 2023

Department of Neurosurgery, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing, China.

Article Synopsis
  • The study investigates how microglia, a type of immune cell in the brain, clear blood and maintain homeostasis after a subarachnoid hemorrhage (SAH), focusing on LC3-associated phagocytosis (LAP) and its regulation through specific gene pathways.
  • Researchers utilized an in vitro model simulating SAH to explore key signaling pathways, particularly emphasizing the P38 MAPK and DAPK1 pathways, which were linked to inhibited LAP and increased inflammation in microglia.
  • Findings revealed that the P38-DAPK1 signaling axis influences the expression of the gene BECN1, thereby affecting both the phagocytic ability and overall health of microglia in the context of SAH.
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