» Articles » PMID: 22406453

Isorhynchophylline: A Plant Alkaloid with Therapeutic Potential for Cardiovascular and Central Nervous System Diseases

Overview
Journal Fitoterapia
Publisher Elsevier
Date 2012 Mar 13
PMID 22406453
Citations 27
Authors
Affiliations
Soon will be listed here.
Abstract

Uncaria species (Gouteng in Chinese) have been used as a plant medicine to treat ailments of cardiovascular and central nervous systems. As the main alkaloid constituent of Uncaria species, isorhynchophylline has drawn extensive attention toward antihypertensive and neuroprotective activities in recent years. Isorhynchophylline mainly acts on cardiovascular and central nervous systems diseases including hypertension, brachycardia, arrhythmia, and sedation, vascular dementia, and amnesia. Isorhynchophylline also has effects on anticoagulation, inhibition vascular smooth muscle cell apoptosis and proliferation, anti-multidrug resistant of lung cells, anti-endotoxemic, and antispasmodic. The active mechanisms are related to modulation on calcium ion channel, protection neural and neuroglial cells against β-amyloid(25-35)-induced neurotoxicity and via inducing autophagy. As a candidate drug of several cardiovascular and central nervous systems diseases, isorhynchophylline will attract scientists to pursue the potential related pharmacological effects and its mechanism with new technologies. But relatively few clinical application of isorhynchophylline has been conducted on its pharmacological activities. It requires more in vivo validations and further investigations of antihypertensive and neuroprotective mechanisms of isorhynchophylline.

Citing Articles

Study of Cytotoxicity of Spiro-Fused [3-Azabicyclo[3.1.0]hexane]oxindoles and Cyclopropa[a]pyrrolizidine-oxindoles Against Tumor Cell Lines.

Kornev A, Shmakov S, Ponyaev A, Stepakov A, Boitsov V Pharmaceuticals (Basel). 2025; 17(12.

PMID: 39770424 PMC: 11680018. DOI: 10.3390/ph17121582.


Safety evaluation of seeds: a metabolomic profiling and network toxicology approach.

Le V, Huynh T, Chen L, Praristiya M, Lin H, Lai K RSC Adv. 2024; 14(40):29319-29329.

PMID: 39285883 PMC: 11403395. DOI: 10.1039/d4ra03767g.


Targeting epigenetic and posttranslational modifications regulating ferroptosis for the treatment of diseases.

Wang Y, Hu J, Wu S, Fleishman J, Li Y, Xu Y Signal Transduct Target Ther. 2023; 8(1):449.

PMID: 38072908 PMC: 10711040. DOI: 10.1038/s41392-023-01720-0.


Role of bZIP transcription factors in the regulation of plant secondary metabolism.

Han H, Wang C, Yang X, Wang L, Ye J, Xu F Planta. 2023; 258(1):13.

PMID: 37300575 DOI: 10.1007/s00425-023-04174-4.


Isorhynchophylline inhibits inflammatory responses in endothelial cells and macrophages through the NF-κB/NLRP3 signaling pathway.

Wang L, Gu Z, Li J, Yang W, Li Y, Qi D BMC Complement Med Ther. 2023; 23(1):80.

PMID: 36906555 PMC: 10007741. DOI: 10.1186/s12906-023-03902-3.