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Published on: September 7, 2019
Role of microglia in diabetic neuropathic pain
Qian Wang1,2, Yilin Xie2, Shichao Ma2
1Department of Endocrinology and Metabolism, Jiujiang Hospital of Traditional Chinese Medicine, Jiujiang, Jiangxi, China.
Abstract:
Approximately one-third of the patients with diabetes worldwide suffer from neuropathic pain, mainly categorized by spontaneous and stimulus-induced pain. Microglia are a class of immune effector cells residing in the central nervous system and play a pivotal role in diabetic neuropathic pain (DNP). Microglia specifically respond to hyperglycemia along with inflammatory cytokines and adenosine triphosphate produced during hyperglycemic damage to nerve fibers. Because of the presence of multiple receptors on the microglial surface, microglia are dynamically and highly responsive to their immediate environment. Following peripheral sensitization caused by hyperglycemia, microglia are affected by the cascade of inflammatory factors and other substances and respond accordingly, resulting in a change in their functional state for DNP pathogenesis. Inhibition of receptors such as P2X reporters, reducing cytokine expression levels in the microglial reactivity mechanisms, and inhibiting their intracellular signaling pathways can effectively alleviate DNP. A variety of drugs attenuate DNP by inhibiting the aforementioned processes induced by microglial reactivity. In this review, we summarize the pathological mechanisms by which microglia promote and maintain DNP, the drugs and therapeutic techniques available, and the latest advances in this field.
Insights
Microglia play a key role in diabetic neuropathic pain (DNP). Targeting microglial activation pathways offers promising therapeutic strategies for alleviating DNP symptoms in diabetic patients.
Area of Science:
- Neuroscience
- Immunology
- Endocrinology
Background:
- Diabetic neuropathic pain (DNP) affects approximately one-third of diabetic patients globally.
- Microglia, the immune cells of the central nervous system, are central to DNP pathogenesis.
- Hyperglycemia and nerve fiber damage trigger microglial activation via inflammatory cytokines and ATP.
Purpose of the Study:
- To review the pathological mechanisms of microglial involvement in DNP.
- To summarize current and emerging therapeutic strategies targeting microglia for DNP.
- To highlight recent advancements in the field of DNP and microglial research.
Main Methods:
- Review of existing literature on microglial function in DNP.
- Analysis of molecular pathways involved in microglial activation.
- Examination of pharmacological and therapeutic interventions targeting microglia.
Main Results:
- Microglia are dynamically responsive to hyperglycemic conditions and nerve damage.
- Microglial activation involves inflammatory cascades and signaling pathways.
- Inhibiting microglial receptors (e.g., P2X), cytokine expression, and signaling pathways alleviates DNP.
Conclusions:
- Microglial reactivity is a critical factor in the development and maintenance of DNP.
- Targeting microglial pathways presents a viable therapeutic approach for DNP.
- Further research into microglial mechanisms can lead to novel DNP treatments.
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