Paeoniflorin Alleviates Oxygen–Glucose Deprivation/Reoxygenation Injury by Mediating Crosstalk Between Neurons and Endothelial Cells Through the VEGF/PI3K-AKT/mTOR Pathway
Aug 2026· Pharmaceuticals· Vol 19· 0 citations· 37 references
Medicine
TL;DR
Paeoniflorin alleviated CIRI by directly protecting neurons and indirectly modulating neuron–endothelial crosstalk through VEGF/PI3K-AKT/mTOR activation, supporting its multi-target therapeutic potential.
Abstract
Background/Objectives: Cerebral ischemia–reperfusion injury (CIRI) poses therapeutic challenges because of oxidative stress, blood–brain barrier disruption, and neuronal apoptosis, limiting current treatments. Paeoniflorin (PF) from Paeonia lactiflora has neuroprotective potential, but its multi-target mechanisms remain unclear. This study investigated the role and mechanisms of PF in CIRI, focusing on neuron–endothelial crosstalk. Methods: Oxygen–glucose deprivation/reoxygenation (OGD/R) models were established using SH-SY5Y (human neuroblastoma) and HCMEC/D3 cells (human cerebral microvascular endothelial). Network pharmacology was used to predict potential PF targets and pathways. RNA sequencing, molecular docking, and molecular dynamics simulation were performed to screen and evaluate PF binding characteristics with key targets, and MTT, flow cytometry, Western blotting, and co-cultures were employed to detect paracrine interactions. Results: Network pharmacology and transcriptomics identified VEGF/PI3K-AKT/mTOR pathway enrichment. Molecular docking confirmed stable PF binding to VEGF-A (−8.4 kcal/mol), AKT (−5.5 kcal/mol), and mTOR (−9.6 kcal/mol). PF (10–80 μM) showed no cytotoxicity and reduced OGD/R injury in a concentration-dependent manner (maximal at 40 μM). PF activated VEGF/PI3K-AKT/mTOR signaling, reducing apoptosis by 57% (SH-SY5Y) and 33% (HCMEC/D3); PI3K inhibitor LY294002 abolished these effects. PF-treated HCMEC/D3-conditioned media enhanced OGD/R neuronal viability, verifying paracrine crosstalk. Conclusions: PF alleviated CIRI by directly protecting neurons and indirectly modulating neuron–endothelial crosstalk through VEGF/PI3K-AKT/mTOR activation, supporting its multi-target therapeutic potential.
Findings indicate that TZ may protect against CIRI by suppressing apoptosis and neuroinflammation through activation of the PI3K/AKT/mTOR signaling pathway, thereby providing preclinical evidence for its potential repurposing as a treatment for ischemic stroke.
Lin-Lin Xie, Yu-Kun Ping, Jie Zhao et al.· Current Neuropharmacology· 0 citations
BACKGROUND
Cerebral small vessel disease (CSVD) is a leading cause of vascular cognitive impairment and stroke. Quercetin is a natural flavonoid with neuroprotective effects in various cerebrovascular disorders. However, its specific molecular targets and mechanisms in CSVD remain elusive.
METHODS
Bioinformatic analy...
Meng-Jie Cao, Ying-Xiao Ji, Bin Zhang et al.· Pathology, Research and Prac...· 0 citations
Luteolin attenuates hypoxia-induced ferroptosis-associated changes in human brain microvascular endothelial cells by restoring redox homeostasis and is associated with coordinated modulation of the PPARγ/FABP5/ALOX15 pathway.
Sirirak Mukem, Patcharakorn Kiatamornrak, S. Suwansa-ard et al.· Biomedicines· 0 citations
The data suggest that AS-IV does not merely inhibit Notch1 but acts by modulating its signaling toward a protective equilibrium, thereby attenuating endothelial senescence and inflammation associated with the restoration of Notch1/VCAM-1 signaling balance.
De-Hui Huang, Rong-Jing Zhou, J. Ling· Frontiers in Aging Neuroscie...· 0 citations
It is suggested that Gomisin A exerts neuroprotective effects against CIRI by enhancing angiogenic activity while attenuating oxidative stress and apoptosis, partly through activation of the VEGF/PI3K/AKT/NOS3 pathway.
Cheng-He Zhao, Jia-Yue Yu, Kexin Liu et al.· Cell Biochemistry and Biophy...· 2 citations
Findings indicate that Echinocystic acid protects against CIRI, at least in part, through a PPARγ-dependent mechanism involving promotion of microglial M2 polarization and attenuation of NLRP3/Caspase-1/GSDMD-associated pyroptotic signaling, highlighting the therapeutic potential of EA in CIRI.
Yi Zou, Hui Zhang, Jian-Xia Liu et al.· International Immunopharmaco...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.