科研产出
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1Lovastatin inhibits Toll-like receptor 4 signaling in microglia by targeting its co-receptor myeloid differentiation protein 2 and attenuates neuropathic pain
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来源:BRAIN BEHAVIOR AND IMMUNITY
关键词: Toll-like receptor 4; Myeloid differentiation protein 2; Rats; Microglia; NFkB; Proinflammatory cytokines; CD11b; Allodynia
年份:2019
2Stereochemistry and innate immune recognition: (+)-norbinaltorphimine targets myeloid differentiation protein 2 and inhibits toll-like receptor 4 signaling
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来源:FASEB JOURNAL
关键词: norbinaltorphimine; enantioselective modulation; TLR4; MD-2; morphine analgesia
年份:2019
3Targeting trimeric transmembrane domain 5 of oncogenic latent membrane protein 1 using a computationally designed peptide
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来源:CHEMICAL SCIENCE
年份:2019
4Dissecting the Innate Immune Recognition of Opioid Inactive Isomer (+)-Naltrexone Derived Toll-like Receptor 4 (TLR4) Antagonists
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来源:JOURNAL OF CHEMICAL INFORMATION AND MODELING
年份:2018
5Nicotine and its metabolite cotinine target MD2 and inhibit TLR4 signaling
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来源:INNOVATION
关键词: nicotine; cotinine; Toll-like receptor 4; myeloid differentiation protein 2; microglia; molecular dynamics simulation
年份:2021
6Cannabidiol Analogue CIAC001 for the Treatment of Morphine-Induced Addiction by Targeting PKM2
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来源:JOURNAL OF MEDICINAL CHEMISTRY
年份:2023
7Cannabidiol alleviates neuroinflammation and attenuates neuropathic pain via targeting FKBP5
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来源:BRAIN BEHAVIOR AND IMMUNITY
关键词: Cannabidiol; FKBP5; NF-xB; Neuroinflammation; Neuropathic pain
年份:2023
8Artemisinin inhibits TLR4 signaling by targeting co-receptor MD2 in microglial BV-2 cells and prevents lipopolysaccharide-induced blood-brain barrier leakage in mice
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来源:JOURNAL OF NEUROCHEMISTRY
关键词: artemisinin; blood-brain barrier; microglia; myeloid differentiation protein 2; Toll-like receptor
年份:2021
9Exploring Methamphetamine Nonenantioselectively Targeting Toll-like Receptor 4/Myeloid Differentiation Protein 2 by in Silico Simulations and Wet-Lab Techniques
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来源:JOURNAL OF CHEMICAL INFORMATION AND MODELING
年份:2020
10Dissecting Role of Charged Residue from Transmembrane Domain 5 of Latent Membrane Protein 1 via In Silico Simulations and Wet-Lab Experiments
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来源:JOURNAL OF PHYSICAL CHEMISTRY B
年份:2021