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Screening Assays to Characterize Novel Endothelial Regulators Involved in the Inflammatory Response
Published on: September 15, 2017
Circulating soluble endoglin modifies the inflammatory response in mice
Laura Ruiz-Remolina1,2, Claudia Ollauri-Ibáñez1,2, Lucía Pérez-Roque1,2
1Department of Physiology and Pharmacology, University of Salamanca, Salamanca, Spain.
Insights
Soluble endoglin reduces inflammation and tissue injury in mouse models. This protein may offer new therapeutic strategies for inflammatory and cardiovascular diseases.
Area of Science:
- Biomedical Science
- Immunology
- Cardiovascular Research
Background:
- Inflammation is a key factor in many diseases, including cardiovascular conditions.
- Elevated soluble endoglin levels are observed in cardiovascular disease patients with inflammation.
Purpose of the Study:
- To investigate the role of circulating soluble endoglin in the inflammatory response.
- To assess the potential of soluble endoglin as a therapeutic target for inflammatory diseases.
Main Methods:
- Utilized transgenic mice expressing human soluble endoglin (sEng+).
- Induced inflammation in lung and kidney tissues using three different models.
- Quantified leukocyte infiltration, inflammatory cytokines, adhesion molecules, and vascular permeability.
Main Results:
- sEng+ mice showed reduced lung and kidney injury and neutrophil infiltration compared to wild-type mice.
- Soluble endoglin significantly decreased pro-inflammatory cytokines (TNFα, IL1β, IL6).
- It also reduced inflammatory-induced adhesion molecules (ICAM, VCAM, E-selectin) and vascular permeability.
Conclusions:
- Soluble endoglin plays a protective role by modulating inflammatory responses.
- These findings suggest soluble endoglin's potential in treating inflammatory and cardiovascular diseases.
Abstract:
Inflammation is associated with every health condition, and is an important component of many pathologies such as cardiovascular diseases. Circulating levels of soluble endoglin have been shown to be higher in the serum of patients with cardiovascular diseases with a significant inflammatory component. The aim of this study was to evaluate the implication of circulating soluble endoglin in the inflammatory response. For this purpose, a transgenic mouse expressing human soluble endoglin (sEng+) was employed, and three different inflammatory approaches were used to mimic inflammatory conditions in different tissues. This study shows that control sEng+ mice have a normal inflammatory state. The lung and kidney injury induced by the inflammatory agents was reduced in sEng+ mice, especially the intra-alveolar and kidney infiltrates, suggesting a possible reduction in inflammation induced by soluble endoglin. To deepen into this possible effect, the leukocyte number in the bronchoalveolar lavage and air pouch lavage was evaluated and a significant reduction of neutrophil infiltration in LPS-treated lungs and ischemic kidneys from sEng+ with respect to WT mice was observed. Additionally, the mechanisms through which soluble endoglin prevents inflammation were studied. We found that in sEng+ animals the increment of proinflammatory cytokines, TNFα, IL1β and IL6, induced by the inflammatory stimulus was reduced. Soluble endoglin also prevents the augmented adhesion molecules, ICAM, VCAM and E-selectin induced by the inflammatory stimulus. In addition, vascular permeability increased by inflammatory agents was also reduced by soluble endoglin. These results suggest that soluble endoglin modulates inflammatory-related diseases and open new perspectives leading to the development of novel and targeted approaches for the prevention and treatment of cardiovascular diseases.
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