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Updated: Feb 15, 2026

Development of New Therapeutic Applications Using Microfluidics
Published on: October 1, 2007
Discovery of Leonuri and therapeutical applications: From bench to bedside
Yi Zhun Zhu1, Weijun Wu2, Qing Zhu3
1State Key Laboratory of Quality Research in Chinese Medicine and School of Pharmacy, Macau University of Science and Technology, Macau, China; Shanghai Key Laboratory of Bioactive Small Molecules, Department of Pharmacology, School of Pharmacy, Fudan University, Shanghai 201203, China.
Insights
Chinese Motherwort
Area of Science:
- Pharmacology
- Cardiovascular Diseases
- Neuroprotection
Background:
- Cardiovascular diseases (CVD) remain a significant health concern in China, with limited reduction in incidence and mortality despite medical advances.
- Existing CVD treatments, while effective, present challenges due to narrow therapeutic indexes and potential side effects influenced by genetic variations.
- Herba Leonuri (Chinese Motherwort) has a long history of traditional use, and its active alkaloid, leonurine, has demonstrated promising bioactivities relevant to CVD.
Purpose of the Study:
- To investigate the therapeutic potential of leonurine, an alkaloid from Herba Leonuri, for the treatment of cardiovascular diseases (CVD) and ischemic conditions.
- To explore the underlying mechanisms of leonurine's protective effects, including its antioxidant, anti-apoptotic, and anti-inflammatory properties.
- To evaluate leonurine's neuroprotective effects and its potential for stroke recovery and prevention.
Main Methods:
- Review of existing pharmacological studies on leonurine's bioactivities.
- Analysis of leonurine's effects on mechanisms underlying ischemic heart diseases and cardiac fibrosis.
- Examination of leonurine's impact on mitochondrial function and oxidative stress in models of cerebral ischemia.
Main Results:
- Leonurine exhibits antioxidant, anti-apoptotic, free radical scavenging, and anti-inflammatory effects, improving micro-circulation.
- Pharmacological studies indicate leonurine's efficacy in treating various aspects of CVD, particularly ischemic heart diseases.
- Leonurine demonstrates neuroprotective effects by inhibiting mitochondrial reactive oxygen species production and restoring mitochondrial function in stroke models.
Conclusions:
- Leonurine possesses significant cardioprotective and neuroprotective properties, suggesting its potential as a therapeutic agent for ischemic heart diseases and stroke.
- Leonurine's favorable pharmacokinetic characteristics and low toxicity present an attractive prospect for clinical application.
- Further development of leonurine could overcome barriers to its market availability, bridging the gap from research to clinical practice.
Abstract:
Despite several advances in percutaneous coronary intervention and the discovery of new drugs, the incidence of myocardial infarction and deaths due to cardiovascular diseases (CVD) has not decreased markedly in China. The quality of life is affected seriously, which further results in great social and family burden. Many drugs, from the century-old aspirin to the newly FDA-approved Byvalson, have been proven to be effective in the treatment and prevention of CVD. As clinically reported, those life-saving drugs still have their side effects in regards to the narrow therapeutic indexes influenced by individual genetic variations. Herba Leonuri, also known as Chinese Motherwort, which are naturally present in plants and traditionally are used for the uterotonic action, postpartum blood stasis, breast pain as well as other gynecological disorders in China for thousands of years. Since the last two decades, our group has reported leonurine, a unique alkaloid found in Herba Leonuri, exhibits various bioactivities such as antioxidant, anti-apoptotic effects, free radical scavenging and anti-inflammatory effects, in addition to improving micro-circulation. These bioactivities are related to the underlying mechanisms of ischemic heart diseases and cardiac fibrosis. Pharmacological studies have proven leonurine to be effective in treating CVD in various ways, particularly ischemic heart diseases. Besides the cardio protective effects, which are similar in the central nervous system, more specifically, inhibited mitochondrial reactive oxygen species production together with the restored mitochondrial function and redox state were observed in middle cerebral artery occlusion rats by leonurine treatment, which strongly reveals its neuroprotective effects and carries a therapeutic potential for recovery and prevention of stroke. Based on their mode of action, we propose that leonurine can be developed as drugs to treat ischemic heart diseases. Taking advantage of the most recent findings in pharmacological research including the effects of low toxicity and good pharmacokinetics characteristics, leonurine has a very attractive prospect of clinical application. Our recent promising pharmacological results may be able to eradicate the barrier hindering its sale on market. In sum, from bench to bedside is no longer a long way for leonurine.
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