Therapeutic effects of JLX-001 on ischemic stroke by inducing autophagy via AMPK-ULK1 signaling pathway in rats

•JLX-001 attenuated cerebral ischemia/reperfusion injury in MCAO/R rats.•JLX-001 induced neuronal autophagy in MCAO/R rats.•JLX-001 upregulated AMPK-ULK1 signaling pathway in vivo. (3β,5α,16α,20S)-4,4,14-trimethyl-3,20-bis(methylamino)-9,19-cyclopregnan-16-ol-dihydrochloride (JLX-001), a structural...

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Veröffentlicht in:Brain research bulletin 2019-11, Vol.153, p.162-170
Hauptverfasser: Ao, Lu-yao, Li, Wan-ting, Zhou, Lin, Yan, Yun-yi, Ye, An-qi, Liang, Bing-wen, Shen, Wei-yang, Zhu, Xiong, Li, Yun-man
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Sprache:eng
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Zusammenfassung:•JLX-001 attenuated cerebral ischemia/reperfusion injury in MCAO/R rats.•JLX-001 induced neuronal autophagy in MCAO/R rats.•JLX-001 upregulated AMPK-ULK1 signaling pathway in vivo. (3β,5α,16α,20S)-4,4,14-trimethyl-3,20-bis(methylamino)-9,19-cyclopregnan-16-ol-dihydrochloride (JLX-001), a structural analogue of cyclovirobuxine D (CVB-D), is a novel compound from synthesis. This study aims to confirm the therapeutic effects of JLX001 on ischemic stroke (IS) and research its induction of autophagy function via 5′-AMP-activated protein kinase (AMPK)-Human Serine/threonine-protein kinase (ULK1) signaling pathway activation. The therapeutic effects of JLX001 were evaluated by infarct sizes, brain edema, neurological scores and proportion of apoptotic neurons in Sprague-Dawley (SD) rats with middle cerebral artery occlusion/reperfusion (MCAO/R). The number of autophagosomes was obtained by transmission electron microscopy. The expression of LC3-II was measured by immunofluorescence. p-AMPK and activated ULK1 were detected by western blots. Results showed that JLX001 treatment markedly alleviated cerebral infarcts, edema, neurological scores and proportion of apoptotic neurons in MCAO/R rats. The number of autophagosomes was increased, accompanying with the increased expressions of LC3-II, p-AMPK and ULK1. In summary, JLX001 attenuates cerebral ischemia injury and the underlying mechanisms may relate to inducing autophagy via AMPK-ULK1 signaling pathway activation.
ISSN:0361-9230
1873-2747
DOI:10.1016/j.brainresbull.2019.08.017