Microglia-mediated neuron death requires TNF and is exacerbated by mutant Huntingtin

Alexander P Young1, Eileen M Denovan-Wright1

  • 1Department of Pharmacology, Dalhousie University, Halifax, Nova Scotia B3H 4R2, Canada.

Pharmacological Research
|October 3, 2024
PubMed

Insights

Microglia contribute to neuron death in Huntington's disease (HD). HD neurons are hypersensitive to microglial inflammatory factors, with tumor necrosis factor (TNF) being crucial for cell death.

Area of Science:

  • Neuroscience
  • Immunology
  • Cell Biology

Background:

  • Microglia, the brain's immune cells, regulate central nervous system inflammation.
  • Huntington's disease (HD) involves activated microglia and elevated pro-inflammatory cytokines.
  • Chronic microglial activation contributes to brain pathology and neuronal death in HD.

Purpose of the Study:

  • To investigate specific cytokines mediating microglial-induced neuron death in HD.
  • To determine if HD neurons exhibit hypersensitivity to neuroinflammation.
  • To explore therapeutic targets for mitigating microglial-driven neurotoxicity in HD.

Main Methods:

  • Assessed microglia-secreted proteins in response to inflammatory stimuli (LPS, IFNγ).
  • Utilized conditioned media to examine effects on wild-type (STHdhQ7/Q7) and HD (STHdhQ111/Q111) neuronal cells.
  • Employed JAK-STAT and TNF inhibitors to block microglia-mediated neuronal death.

Main Results:

  • HD neurons (STHdhQ111/Q111) showed hypersensitivity to microglial pro-inflammatory factors.
  • Tumor necrosis factor (TNF) was essential for inducing neuronal death.
  • Inhibiting JAK-STAT or TNF pathways effectively halted microglia-mediated neuronal death.
  • Human HD patients and mice exhibited increased TNF receptor 1 (TNFR1) and IFNγ receptor (IFNGR) density.

Conclusions:

  • Microglia contribute to HD pathogenesis through specific cytokine-mediated neurotoxicity.
  • HD neurons are sensitized to inflammatory cytokines like TNF and IFNγ due to enhanced receptor expression.
  • Targeting microglial inflammatory pathways, particularly TNF signaling, offers a potential therapeutic strategy for HD.

Related Concept Videos

The Extrinsic Apoptotic Pathway01:17

The Extrinsic Apoptotic Pathway

The extrinsic apoptotic pathway is initiated when extracellular death-inducing signals, such as specific cytokines, activate the death receptors expressed on the cell surface. The immune cells involved in this pathway are natural killer cells (NK cells) and cytotoxic T-lymphocytes. NK cells are critical in innate immune response, while cytotoxic T-lymphocytes are associated with adaptive immune response. These cells recognize specific receptors expressed on the altered cells and activate...
Phagocytosis of Apoptotic Cells01:17

Phagocytosis of Apoptotic Cells

Cells undergoing apoptosis form apoptotic bodies that must be removed immediately to prevent inflammation, autoimmune diseases, and necrosis. Phagocytosis is carried out by professional phagocytes such as macrophages or  immature dendritic cells. Non-professional phagocytes such as  epithelial cells and fibroblasts also take part in this process; however, they are not as effective as professional phagocytes. 
Normal cells contain receptors that prevent them from being recognized by phagocytes.
Autophagic Cell Death01:18

Autophagic Cell Death

Christian de Duve discovered “autophagy,” a process in which cellular components are engulfed by membrane-bound organelles called autophagosomes. The autophagosomes then fuse with lysosomes to digest the enclosed contents. Autophagy is generally activated in cells to prevent cell death. However, cell death is triggered when the damage is beyond repair.
Autophagy and Apoptosis
Autophagy can activate apoptosis. In normal conditions, the autophagy activating protein Beclin-1 and pro-apoptotic...
Necrosis01:16

Necrosis

Necrosis is considered as an “accidental” or unexpected form of cell death that ends in cell lysis. The first noticeable mention of “necrosis” was in 1859 when Rudolf Virchow used this term to describe advanced tissue breakdown in his compilation titled “Cell Pathology”.
Morphological Manifestations of Necrosis
Necrotic cells show different types of morphological appearance depending on the type of tissue and infection. In coagulative necrosis, cells become anucleated and die, but their...
Cellular Injury IlI: Cellular Death01:11

Cellular Injury IlI: Cellular Death

Cell death is the irreversible loss of cellular structure and function, representing the final stage of severe injury. It plays a key role in both normal physiology and disease.Types of Cell DeathThe two main types are necrosis and apoptosis, though others like necroptosis and pyroptosis also exist.Necrosis:Necrosis is an unregulated form of cell death caused by severe injury such as trauma, toxins, or ischemia. It is characterized by cell swelling, membrane loss, rupture, and leakage of...
Cellular Injury IV: Necrosis01:16

Cellular Injury IV: Necrosis

Necrosis is a form of irreversible cell death caused by severe injury such as ischemia, toxins, or trauma. Unlike programmed cell death, it is an uncontrolled, pathological process that typically provokes inflammation in surrounding tissues.Pathophysiologic ChangesNecrosis begins when cells sustain critical damage, leading to swelling of organelles, particularly mitochondria, and rapid ATP depletion. As energy levels decline, membrane ion pumps fail, leading to calcium influx and eventually,...