ArticleStem cell research & therapy2022
Toll-like receptors 2 and 4 differentially regulate the self-renewal and differentiation of spinal cord neural precursor cells.
Article in Stem cell research & therapy, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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15 citing papers in PubMed, 23 citations in OpenAlex.
- A modified hot phenol-based protocol for high-purity Escherichia coli lipopolysaccharide extraction: Biochemical validation, stem cell cytotoxicity, and dose dependent multi-organ inflammation in a rat model.Biotechnology reports (Amsterdam, Netherlands) · 2025Article
- TLR4 deletion reduces small fiber sensory abnormalities and nerve degeneration in diabetic male mice.Neuroscience · 2025Article
- Role of Glial Cells and Receptors in Schizophrenia Pathogenesis.Neurochemical research · 2025Review
- The Rise of Pluripotent Stem Cell-Derived Glia Models of Neuroinflammation.Neurology international · 2025Review
- Role of glial cells in neurotoxicological effects of alcohol.Advances in neurotoxicology · 2025Article
- Review
- Toll-like receptor 4 deficiency in Purkinje neurons drives cerebellar ataxia by impairing the BK channel-mediated after-hyperpolarization and cytosolic calcium homeostasis.Cell death & disease · 2024Article
- Heavy Metal Interactions with Neuroglia and Gut Microbiota: Implications for Huntington's Disease.Cells · 2024Review
- Role of Glial Cells in Neuronal Function, Mood Disorders, and Drug Addiction.Brain sciences · 2024Review
- From Immunity to Neurogenesis: Toll-like Receptors as Versatile Regulators in the Nervous System.International journal of molecular sciences · 2024Review
- Review
- Nicotinic Acetylcholine Receptors in Glial Cells as Molecular Target for Parkinson's Disease.Cells · 2024Review
- Toll-like receptors as a missing link in Notch signaling cascade during neurodevelopment.Frontiers in molecular neuroscience · 2024Article
- KDM6B Negatively Regulates the Neurogenesis Potential of Apical Papilla Stem Cells via HES1.International journal of molecular sciences · 2023Article
- Involvement of TLR2-TLR4, NLRP3, and IL-17 in pain induced by a novel Sprague-Dawley rat model of experimental autoimmune encephalomyelitis.Frontiers in pain research (Lausanne, Switzerland) · 2022Article
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Authors and funding
3 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundToll-like receptors (TLRs) represent critical effectors in the host defense response against various pathogens; however, their known function during development has also highlighted a potential role in cell fate determination and neural differentiation. While glial cells and neural precursor cells (NPCs) of the spinal cord express both TLR2 and TLR4, their influence on self-renewal and cell differentiation remains incompletely described.
methodsTLR2, TLR4 knock-out and the wild type mice were employed for spinal cord tissue analysis and NPCs isolation at early post-natal stage. Sox2, FoxJ1 and Ki67 expression among others served to identify the undifferentiated and proliferative NPCs; GFAP, Olig2 and β-III-tubulin markers served to identify astrocytes, oligodendrocytes and neurons respectively after NPC spontaneous differentiation. Multiple comparisons were analyzed using one-way ANOVA, with appropriate corrections such as Tukey's post hoc tests used for comparisons.
resultsWe discovered that the deletion of TLR2 or TLR4 significantly reduced the number of Sox2-expressing NPCs in the neonatal mouse spinal cord. While TLR2-knockout NPCs displayed enhanced self-renewal, increased proliferation and apoptosis, and delayed neural differentiation, the absence of TLR4 promoted the neural differentiation of NPCs without affecting proliferation, producing long projecting neurons. TLR4 knock-out NPCs showed significantly higher expression of Neurogenin1, that would be involved in the activation of this neurogenic program by a ligand and microenvironment-independent mechanism. Interestingly, the absence of both TLR2 and TLR4, which induces also a significant reduction in the expression of TLR1, in NPCs impeded oligodendrocyte precursor cell maturation to a similar degree.
conclusionsOur data suggest that Toll-like receptors are needed to maintain Sox2 positive neural progenitors in the spinal cord, however possess distinct regulatory roles in mouse neonatal spinal cord NPCs-while TLR2 and TLR4 play a similar role in oligodendrocytic differentiation, they differentially influence neural differentiation.
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