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Monitoring Astrocyte Reactivity and Proliferation in Vitro Under Ischemic-Like Conditions
Published on: October 21, 2017
Hyperglycemia induces microglial pyroptosis by increasing oxygen extraction rate: Implication in neurological
Ensi Luo1, Zhuo Li2, Shiying Zhang2
1Department of Endocrinology, Binhaiwan Central Hospital of Dongguan, Dongguan Hospital Affiliated to Medical College of Jinan University, Dongguan, Guangdong 523903, P.R. China.
Abstract:
Elevated levels of blood glucose in patients with ischemic stroke are associated with a worse prognosis. The present study aimed to explore whether hyperglycemia promotes microglial pyroptosis by increasing the oxygen extraction rate in an acute ischemic stroke model. C57BL/6 mice that underwent middle cerebral artery occlusion were used for assessment of blood glucose level and neurological function. The cerebral oxygen extraction ratio (CERO2), oxygen consumption rate (OCR) and partial pressure of brain tissue oxygen (PbtO2) were measured. To investigate the significance of the NOD‑like receptor protein 3 (NLRP3) inflammasome, NLRP3‑/‑ mice were used, and the expression levels of NLRP3, caspase‑1, full‑length gasdermin D (GSDMD‑FL), GSDMD‑N domain (GSDMD‑N), IL‑1β and IL‑18 were evaluated. In addition, Z‑YVAD‑FMK, a caspase‑1 inhibitor, was used to treat microglia to determine whether activation of the NLRP3 inflammasome was required for the enhancing effect of hyperglycemia on pyroptosis. It was revealed that hyperglycemia accelerated cerebral injury in the acute ischemic stroke model, as evidenced by decreased latency to fall and the percentage of foot fault. Hyperglycemia aggravated hypoxia by increasing the oxygen extraction rate, as evidenced by increased CERO2 and OCR, and decreased PbtO2 in response to high glucose treatment. Furthermore, hyperglycemia‑induced microglial pyroptosis was confirmed by detection of increased levels of caspase‑1, GSDMD‑N, IL‑1β and IL‑18 and a decreased level of GSDMD‑FL. However, the knockout of NLRP3 attenuated these effects. Pharmacological inhibition of caspase‑1 also reduced the expression levels of GSDMD‑N, IL‑1β and IL‑18 in microglial cells. These results suggested that hyperglycemia stimulated NLRP3 inflammasome activation by increasing the oxygen extraction rate, thus leading to the aggravation of pyroptosis following ischemic stroke.
Insights
Hyperglycemia worsens ischemic stroke by increasing brain oxygen extraction, promoting microglial pyroptosis via the NLRP3 inflammasome pathway. This leads to accelerated brain injury and poorer outcomes.
Area of Science:
- Neuroscience
- Pathology
- Biochemistry
Background:
- Elevated blood glucose (hyperglycemia) is linked to poor outcomes in ischemic stroke patients.
- Microglial pyroptosis, a form of programmed cell death, plays a role in brain injury.
Purpose of the Study:
- To investigate if hyperglycemia exacerbates ischemic stroke by promoting microglial pyroptosis.
- To determine the role of the oxygen extraction rate and the NLRP3 inflammasome in this process.
Main Methods:
- Used a middle cerebral artery occlusion (MCAO) mouse model to simulate acute ischemic stroke.
- Measured neurological function, cerebral oxygen extraction ratio (CERO2), oxygen consumption rate (OCR), and partial pressure of brain tissue oxygen (PbtO2).
- Utilized NLRP3 knockout mice and a caspase-1 inhibitor (Z-YVAD-FMK) to assess the involvement of the NLRP3 inflammasome and pyroptosis.
Main Results:
- Hyperglycemia accelerated cerebral injury, indicated by poorer neurological function.
- Hyperglycemia increased the oxygen extraction rate (higher CERO2 and OCR, lower PbtO2), worsening hypoxia.
- Hyperglycemia-induced microglial pyroptosis was confirmed, with increased caspase-1, GSDMD-N, IL-1β, and IL-18 levels.
- NLRP3 knockout and caspase-1 inhibition attenuated hyperglycemia-induced pyroptosis and brain injury.
Conclusions:
- Hyperglycemia aggravates ischemic stroke by increasing the cerebral oxygen extraction rate, leading to hypoxia.
- The NLRP3 inflammasome pathway is crucial in mediating hyperglycemia-induced microglial pyroptosis and subsequent brain injury.
- Targeting the NLRP3 inflammasome may offer therapeutic potential for ischemic stroke patients with hyperglycemia.

