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1. The role of T cells in vascular aging, hypertension, and atherosclerosis.

2. CD8 + T-cell metabolism is related to cerebrovascular reactivity in middle-aged adults.

3. P2X7 -Mediated Antigen-Independent Activation of CD8 + T Cells Promotes Salt-Sensitive Hypertension.

4. Early life thymectomy induces arterial dysfunction in mice.

5. Glycocalyx-targeted therapy ameliorates age-related arterial dysfunction.

6. Heterozygosity for ADP-ribosylation factor 6 suppresses the burden and severity of atherosclerosis.

7. Senolytic drugs, dasatinib and quercetin, attenuate adipose tissue inflammation, and ameliorate metabolic function in old age.

9. Augmented T-cell mitochondrial reactive oxygen species in adults with major depressive disorder.

10. T cells mediate cell non-autonomous arterial ageing in mice.

11. T lymphocyte depletion ameliorates age-related metabolic impairments in mice.

12. Inflammation as a mediator of arterial ageing.

13. Induced Trf2 deletion leads to aging vascular phenotype in mice associated with arterial telomere uncapping, senescence signaling, and oxidative stress.

14. Age-related arterial immune cell infiltration in mice is attenuated by caloric restriction or voluntary exercise.

15. Selected life-extending interventions reduce arterial CXCL10 and macrophage colony-stimulating factor in aged mouse arteries.

16. Dietary rapamycin supplementation reverses age-related vascular dysfunction and oxidative stress, while modulating nutrient-sensing, cell cycle, and senescence pathways.

17. Oligoclonal CD8+ T cells play a critical role in the development of hypertension.

18. DC isoketal-modified proteins activate T cells and promote hypertension.

19. The immune system in hypertension.

20. Inflammation and mechanical stretch promote aortic stiffening in hypertension through activation of p38 mitogen-activated protein kinase.

21. Aging impairs PI3K/Akt signaling and NO-mediated dilation in soleus muscle feed arteries.

22. NAD(P)H oxidase-derived reactive oxygen species contribute to age-related impairments of endothelium-dependent dilation in rat soleus feed arteries.

24. Exercise training reverses age-related decrements in endothelium-dependent dilation in skeletal muscle feed arteries.

25. Short-term increases in intraluminal pressure reverse age-related decrements in endothelium-dependent dilation in soleus muscle feed arteries.

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