Modulation of NLRP3 inflammasome-related-inflammation via RIPK1/RIPK3-DRP1 or HIF-1α signaling by phenothiazine in hypothermic and normothermic neuroprotection after acute ischemic stroke

Модуляция воспаления, связанного с NLRP3-инфламмасомой, через сигналы RIPK1/RIPK3–DRP1 или HIF-1α фенотиазином в гипотермической и нормотермической нейропротекции после острого ишемического инсульта
Fengwu Li, Yuchuan Ding, Qian Jiang, Honglian Duan, Xiaokun Geng, Aminah I. Fayyaz
2024-04-26

HIF-1α signalingNLRP3 inflammasomeRIPK1/RIPK3-DRP1 signalingchlorpromazine and promethazine (C + P)hypothermic and normothermic neuroprotection
BACKGROUND: Inflammation and subsequent mitochondrial dysfunction and cell death worsen outcomes after revascularization in ischemic stroke. Receptor-interacting protein kinase 1 (RIPK1) activated dynamin-related protein 1 (DRP1) in a NLRPyrin domain containing 3 (NLRP3) inflammasome-dependent fashion and Hypoxia-Inducible Factor (HIF)-1α play key roles in the process. This study determined how phenothiazine drugs (chlorpromazine and promethazine (C + P)) with the hypothermic and normothermic modality impacts the RIPK1/RIPK3-DRP1 and HIF-1α pathways in providing neuroprotection. METHODS: A total of 150 adult male Sprague-Dawley rats were subjected to 2 h middle cerebral artery occlusion (MCAO) followed by 24 h reperfusion. 8 mg/kg of C + P was administered at onset of reperfusion. Infarct volumes, mRNA and protein expressions of HIF-1α, RIPK1, RIPK3, DRP-1, NLRP3-inflammation and cytochrome c-apoptosis were assessed. Apoptotic cell death, infiltration of neutrophils and macrophages, and mitochondrial function were evaluated. Interaction between RIPK1/RIPK3 and HIF-1α/NLRP3 were determined. In SH-SY5Y cells subjected to oxygen/glucose deprivation (OGD), the normothermic effect of C + P on inflammation and apoptosis were examined. RESULTS: C + P significantly reduced infarct volumes, mitochondrial dysfunction (ATP and ROS concentration, citrate synthase and ATPase activity), inflammation and apoptosis with and without induced hypothermia. Overexpression of RIPK1, RIPK3, DRP-1, NLRP3-inflammasome and cytochrome c-apoptosis were all significantly reduced by C + P at 33 °C and the RIPK1 inhibitor (Nec1s), suggesting hypothermic effect of C + P via RIPK1/RIPK3-DRP1pathway. When body temperature was maintained at 37 °C, C + P and HIF-1α inhibitor (YC-1) reduced HIF-1α expression, leading to reduction in mitochondrial dysfunction, NLRP3 inflammasome and cytochrome c-apoptosis, as well as the interaction of HIF-1α and NLRP3. These were also evidenced in vitro, indicating a normothermic effect of C + P via HIF-1α. CONCLUSION: Hypothermic and normothermic neuroprotection of C + P involve different pathways. The normothermic effect was mediated by HIF-1α, while hypothermic effect was via RIPK1/RIPK3-DRP1 signaling. This provides a theoretical basis for future precise exploration of hypothermic and normothermic neuroprotection.
1
C+P reduced mitochondrial dysfunction (ATP and ROS levels, citrate synthase and ATPase activity), inflammation, apoptosis, neutrophil/macrophage infiltration, and cytochrome c–mediated apoptosis.
2
Chlorpromazine plus promethazine (C+P) administered at reperfusion significantly reduced infarct volumes after MCAO in rats.
3
In vitro OGD experiments in SH-SY5Y cells confirmed the normothermic anti-inflammatory and anti-apoptotic effects of C+P via HIF-1α, supporting distinct temperature-dependent mechanisms of neuroprotection.
4
Under hypothermic conditions (33 °C), C+P decreased overexpression of RIPK1, RIPK3, DRP1, NLRP3 inflammasome and cytochrome c; effects mirrored by RIPK1 inhibitor Nec1s, implicating RIPK1/RIPK3-DRP1 pathway in hypothermic protection.
5
Under normothermic conditions (37 °C), C+P reduced HIF-1α expression and its interaction with NLRP3, leading to decreased mitochondrial dysfunction, NLRP3 inflammasome activation and cytochrome c–mediated apoptosis; effects mirrored by HIF-1α inhibitor YC-1.

Phenothiazine treatment (chlorpromazine + promethazine) applied in hypothermic and normothermic neuroprotection after acute ischemic stroke

Modulation of NLRP3 inflammasome–related inflammation, mitochondrial dysfunction and apoptosis via RIPK1/RIPK3-DRP1 signaling (hypothermic effect) or HIF-1α signaling (normothermic effect) leading to reduced infarct volume and improved neuroprotection

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2024-04-26
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Fengwu Li
Yuchuan Ding
Qian Jiang
Honglian Duan
Xiaokun Geng
Aminah I. Fayyaz
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