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Sinomenine significantly reduces cerebral infarct volume and improves neurological scores in ischemic stroke animal modelsSinomenine may protect brain tissue after a stroke

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Key Takeaway
Note that sinomenine shows potential as a neuroprotective agent in animal models of ischemic stroke.

This meta-analysis synthesized data from 15 preclinical studies to evaluate the effects of sinomenine on animal models of ischemic stroke. The analysis focused on several outcomes, including cerebral infarct volume, neurological function score (NFS), blood-brain barrier (BBB) integrity, and various neuroinflammation-related biomarkers.

The primary finding was a significant reduction in cerebral infarct volume, with a reported effect size of SMD -3.02 before adjustment and SMD -1.97 after trim-and-fill. Additionally, the meta-analysis found that sinomenine improved neurological function scores (SMD -1.06 post-trim-and-fill). Other observed effects included preserved blood-brain barrier integrity, downregulated neuroinflammation-related biomarkers, enhanced superoxide dismutase (SOD) activity, and modulated apoptosis-related marker levels.

The authors noted that the findings are subject to the methodological limitations of the included studies. Because these results are derived from preclinical animal models, the clinical translation and therapeutic potential of sinomenine for human stroke patients remain uncertain. These findings suggest sinomenine may have potential as an adjunctive neuroprotective intervention, but further clinical research is required to establish safety and efficacy in humans.

How this fits prior evidence

This meta-analysis extends prior evidence regarding sinomenine's pharmacological effects. While previous reports established that sinomenine modulates macrophage polarization and metabolic pathways in rheumatoid arthritis models, and reduced arthritis markers in rodent models, this study specifically addresses its role in ischemic stroke. It provides evidence for sinomenine's potential as a neuroprotective agent in animal models, though human validation remains absent across all reported findings.

When a stroke occurs, the brain faces immediate damage from inflammation and cell death. Researchers are looking for ways to protect brain tissue and improve recovery. A review of 15 different studies looked at how a compound called sinomenine affects the brain in animal models of stroke.

The analysis found that sinomenine significantly reduced the size of the damaged area in the brain. It also improved neurological function scores and helped maintain the integrity of the blood-brain barrier, which acts as a protective shield for the brain. Additionally, the compound appeared to lower markers of inflammation and boost certain protective enzymes.

Because these results come from preclinical animal studies, we cannot say yet if this will work in humans. The researchers noted that the quality of the original studies varied, so these findings should be viewed with caution. While it shows potential as a supportive treatment, more human trials are needed to see if it is safe and effective for people.

What this means for you:
Sinomenine showed promise in reducing brain damage in animal models, but human trials are still needed.

Common questions

What did the study find about brain damage?

The analysis of 15 studies showed that sinomenine significantly reduced the size of the damaged area in the brain. It also helped preserve the blood-brain barrier and lowered markers related to inflammation in the brain.

Did the treatment improve physical movement?

Yes, the study found that sinomenine improved neurological function scores in the animal models tested. This suggests it may help with the physical effects of a stroke, though more human research is required.

Is sinomenine safe for humans to use after a stroke?

The study was conducted on animal models, not humans. Because of these limitations and the early stage of research, you should talk to your doctor about any specific treatments or medications.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
BackgroundIschemic stroke is a leading cause of long-term disability and mortality worldwide. Despite substantial advances in reperfusion therapy, effective neuroprotective strategies remain limited. Sinomenine, a bioactive alkaloid derived from plants of the Menispermaceae family, has shown neuroprotective effects in preclinical models of ischemic stroke. However, the available preclinical evidence has not been systematically quantified, and the relationship between sinomenine dosage and therapeutic efficacy remains unclear.MethodsEight electronic databases were searched from inception to 30 March 2026. The risk of bias, reporting quality, and translational readiness were assessed using the SYRCLE risk-of-bias tool, the ARRIVE 2.0 guidelines, and the Stroke Therapy Academic Industry Roundtable criteria, respectively. Data synthesis and quantitative analyses were performed with RevMan 5.3 and Stata 17.0. Subgroup and sensitivity analyses were conducted for outcomes with high heterogeneity. Additionally, dose-response curves were fitted using restricted cubic spline models.ResultsThis meta-analysis included 15 studies. In animal models of ischemic stroke, sinomenine significantly reduced cerebral infarct volume, improved neurological function score (NFS), and preserved blood-brain barrier (BBB) integrity. Sinomenine also downregulated neuroinflammation-related biomarkers, enhanced superoxide dismutase (SOD) activity, and modulated apoptosis-related marker levels. RCS analysis suggested nonlinear dose-response relationships between sinomenine dosage and cerebral infarct volume, NFS, and brain water content. Subgroup analyses revealed that animal strain, comorbidity status, experimental blinding, drug dosage, and timing of administration may influence effect sizes. Trim-and-fill analysis showed that the pooled standardized mean difference (SMD) for cerebral infarct volume attenuated from −3.02 (95% CI [-3.96, −2.08]) to −1.97 (95% CI [-2.93, −1.01]) after adjustment, whereas that for NFS attenuated from −1.57 (95% CI [-2.18, −0.97]) to −1.06 (95% CI [-1.72, −0.40]).ConclusionIn animal models, sinomenine may mitigate ischemic stroke injury through multiple pathways, with the efficacy following nonlinear dose-response relationships, suggesting its potential as an adjunctive neuroprotective intervention warranting further investigation. However, given the methodological limitations of the included studies, these findings should be interpreted cautiously. To facilitate clinical translation, future studies should incorporate more rigorous and standardized experimental designs to strengthen the evidence base and validate its therapeutic potential.Systematic Review Registrationhttps://www.crd.york.ac.uk/PROSPERO/view/CRD420261359581, identifier CRD420261359581.
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