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Published on: September 15, 2017
Arthrospira Platensis Attenuates Endothelial Inflammation and Monocyte Activation
Ilaria Leone1, Valentino Costabile1, Giovanni Smaldone1
1IRCCS SYNLAB SND, 80143 Naples, Italy.
Insights
Arthrospira platensis (spirulina) exhibits anti-inflammatory and anti-atherosclerotic properties by modulating endothelial and immune cell interactions. This natural nutraceutical shows potential for preventing atherosclerosis by targeting key molecular pathways.
Area of Science:
- Cardiovascular research
- Immunology
- Nutraceutical science
Background:
- Cardiovascular diseases (CVDs), particularly coronary artery disease (CAD), are leading causes of death globally.
- Identifying early biomarkers and understanding pharmacological adjuvants are crucial for CVD prevention.
- Nutraceuticals like Arthrospira platensis (spirulina) show promise due to their vascular anti-inflammatory effects.
Purpose of the Study:
- To investigate the anti-inflammatory and anti-atherosclerotic potential of Arthrospira platensis.
- To elucidate the effects of spirulina on endothelial cells and immune cell interactions.
- To identify molecular compounds in spirulina with therapeutic relevance.
Main Methods:
- In vitro assays were performed on endothelial cells and THP-1 monocytic cell lines.
- Bioinformatic profiling was utilized to analyze the molecular composition of spirulina.
- Computational analysis identified compounds structurally similar to known therapeutic agents.
Main Results:
- Spirulina treatment reduced endothelial and angiogenic activation, decreasing pro-inflammatory cytokines and VEGFA/VEGFR2 expression.
- Spirulina decreased the activation and adhesion of THP-1 monocytic cells.
- Identified spirulina compounds structurally mimic a synthetic molecule with TLR9 agonist and anti-angiogenic activity.
Conclusions:
- Arthrospira platensis demonstrates significant anti-inflammatory and anti-atherosclerotic potential.
- Spirulina modulates endothelial-immune cell crosstalk, relevant to atherosclerosis prevention.
- Spirulina serves as a natural source of compounds targeting immune and angiogenic pathways, offering translational potential.
Abstract:
Cardiovascular diseases (CVDs) remain the leading cause of morbidity and mortality in industrialized countries. Coronary artery disease (CAD) represents the most prevalent form of cardiovascular disease and remains a leading cause of morbidity, mortality, and long-term disability worldwide. Therefore, the identification of early biomarkers and clarification of the mechanism of action of pharmacological adjuvants is urgently needed. Nutraceuticals such as Arthrospira platensis (commonly known as spirulina) have emerged as promising modulators for their notable vascular anti-inflammatory properties. In this study, we provide novel evidence of the anti-inflammatory and anti-atherosclerotic potential of Arthrospira platensis toward endothelial cells and immune interactions, combining in vitro assays with bioinformatic profiling. Spirulina treatment significantly attenuated endothelial and angiogenic activation, reducing pro-inflammatory cytokine and VEGFA/VEGFR2 expression. Additionally, it also decreased the activation and adhesion capabilities of THP-1 monocytic cell lines. Through computational analysis of the complex molecular mixture present in Arthrospira platensis, we have identified a subset of compounds exhibiting high structural similarity to CHEMBL3559503, a well-characterized synthetic molecule with dual activity as a TLR9 agonist and anti-angiogenic agent. This represents a novel insight, suggesting that spirulina may serve as a natural source of analogues capable of modulating both immune and angiogenic pathways. These results highlight Arthrospira platensis as a promising candidate nutraceutical for targeting endothelial/immune crosstalk in the context of atherosclerosis prevention, offering both mechanistic insights and translational potential.
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