ArticleThe Journal of neuroscience : the official journal of the Society for Neuroscience2025
Distinct Roles of Astrocytes and GABAergic Neurons in the Paraventricular Thalamic Nucleus in Modulating Diabetic Neuropathic Pain.
Article in The Journal of neuroscience : the official journal of the Society for Neuroscience, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- Glial cells in neuropathic pain.Physiological reviews · 2026Review
- Interspecies differences in the expression of cannabinoid receptors at the tissue and cellular levels.Neural regeneration research · 2026Article
- Pain Modulation and Central Sensitization in Painful Diabetic Peripheral Neuropathy: Updated Narrative Review and Future Directions.Journal of diabetes · 2026Review
- Transcriptomic and molecular evidence for baclofen-associated modulation of inhibitory synaptic and neuroinflammatory pathways in diabetic neuropathic pain.Frontiers in pharmacology · 2026Article
- Gmelinol ameliorates type 2 diabetes and multi-organ complications in streptozotocin-nicotinamide-induced diabetic rats.Naunyn-Schmiedeberg's archives of pharmacology · 2026Article
- Recent Insights on Supraspinal Astrocytes in Chronic Pain.Neurochemical research · 2025Review
- The role of brain mechanisms in diabetic peripheral neuropathy: recent advances and comprehensive analysis.Frontiers in cellular neuroscience · 2025Review
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Abstract
Diabetic neuropathic pain (DNP) is a common chronic complication of diabetes mellitus and a clinically common form of neuropathic pain. The thalamus is an important center for the conduction and modulation of nociceptive signals. The paraventricular thalamic nucleus (PVT) is an important midline nucleus of the thalamus involved in sensory processing, but the specific role of PVT astrocytes and GABAergic neurons in DNP remains unclear. Here, we examined the activity of PVT astrocytes and neurons at various time points during the development of DNP by fluorescence immunohistochemistry and found that the activity of PVT astrocytes was significantly increased while that of PVT neurons was significantly decreased 14 d after streptozotocin injection in male rats. The inhibition of PVT astrocytes by chemogenetic manipulation relieved mechanical allodynia in male DNP model rats, whereas the activation of PVT astrocytes induced mechanical allodynia in normal male rats. Interestingly, chemogenetic activation of GABAergic neurons in the PVT alleviated mechanical allodynia in male DNP model rats, whereas chemogenetic inhibition of GABAergic neurons in the PVT induced mechanical allodynia in normal male rats. These data demonstrate the distinct roles of PVT astrocytes and GABAergic neurons in modulating DNP, revealing the mechanism of DNP pathogenesis and the role of the PVT in pain modulation.
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