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Evaluation of Vascular Control Mechanisms Utilizing Video Microscopy of Isolated Resistance Arteries of Rats
Published on: December 5, 2017
[Biomarkers and mechanisms of early vascular damage]
L A Dobrynina1, E V Gnedovskaya1, A A Shabalina1
1Research Center of Neurology, Moscow, Russia.
Insights
Stress markers mediate vascular risk factors and early brain damage. Elevated cortisol and epinephrine link to inflammation and atheromatosis, suggesting potential biomarkers for small vessel disease.
Area of Science:
- Vascular biology and neurology
- Biomarkers of cerebrovascular disease
Background:
- Classic vascular risk factors are associated with early brain damage.
- Stress and inflammation play roles in vascular wall damage.
Purpose of the Study:
- To assess the association of vascular risk factors, stress, and early vascular/brain damage.
- To identify potential biomarkers for early small vessel disease (SVD).
Main Methods:
- Evaluated 87 middle-aged subjects (mean age 51.2) for vascular risk factors.
- Assessed neck artery ultrasound, brain MRI, and blood markers (CRP, TNF-α, TGF-β1, etc.).
Main Results:
- Stress parameters mediate vascular risk factors and damage.
- Hypercortisolemia linked to atheromatosis and inflammation (TGF-β1-HIF-1-VEGF).
- Elevated epinephrine associated with TNF-α-mediated inflammation.
Conclusions:
- TNF-α may be an independent cause and biomarker of early SVD in non-hypertensives.
- Hypertension's influence on SVD involves local vascular damage mechanisms.
- Further research needed to clarify biomarkers for early SVD.
Aim:
To assess the association of classic vascular risk factors, indicators of cerebral arteries wall damage and stress induction, and their role in early vascular and brain damage in middle age subjects without vascular events.
Material And Methods:
87 patients were evaluated (49 women, 38 men, mean age 51.2±6.5). The following vascular risk factors were assessed: hypertension, diabetes, total cholesterol and low density lipoproteins levels, obesity and smoking. Patients underwent ultrasound of neck arteries, brain MRI and laboratory testing of blood parameters, probably associated with vascular wall damage: CRP, TNF-α, sICAM-1, sVCAM, HIF1-α, NO, VAP-1, VEGF-A, VEGF-C, sVEGF-R1, sVEGF-R2, TGF-β1, general antioxidant status.
Results And Conclusion:
Mediating role of stress parameters in risk factors formation, initiation and maintenance of mechanisms of vascular damage was demonstrated. Hypercortisolemia suggested the association with age, atheromatosis, local inflammatory reactions via the TGF-β1-HIF-1-VEGF family, systemic inflammation response via CRP, and elevated epinephrine levels were associated with TNF-α-mediated systemic inflammation. The association of TNF-α and MRI signs of cerebral small vessel disease (SVD) in non-hypertensive patients may indicate that TNF-α-mediated inflammation and increased permeability of vessel wall is an independent cause and potential biomarker of early small vessel damage. Influence of hypertension on age-dependent SVD is probably maintained by local vascular wall damage mechanisms via the TGF-β1-HIF-1-VEGF family. However, hypertension heterogeneity and association of early cerebral vessels damage with various protective reactions require further clarification of the conditions for using these parameters as possible biomarkers of early SVD.
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