BACKGROUND:The temporal trend of cardiovascular disease (CVD) mortality in patients with classic Hodgkin lymphoma (cHL) throughout follow-up remains unclear. This study aimed to assess this temporal trend in patients with cHL. METHODS: This multicenter cohort included 15,889 patients with cHL diagnosed between 1983 and 2015, covering all ages. The proportional mortality ratio, cumulative incidence of cause-specific mortality accounting for competing risk, standard mortality ratio, and absolute excess risk were analyzed. RESULTS: Among patients in stage I and stage II cHL, the proportional mortality ratio for CVD exceeded that for cHL, after approximately 60 or 120 months of follow-up, respectively. For almost all the patients with stage I or stage II disease, the cumulative incidence of CVD mortality exceeded that of cHL and other neoplasms over time. In recent decades, the risk of cHL mortality declined sharply, but the risk of CVD mortality among patients with cHL declined quite slowly or even remained unchanged among some populations. Patients with stage I or stage II disease experienced a higher risk of CVD mortality than the general population in almost all follow-up intervals. The absolute excess CVD risk among patients in stage I reached 48.5. CONCLUSIONS: The risk of CVD mortality exceeded that of cHL and other neoplasms and became the leading cause of death over time, among patients with stage I or stage II disease. More effective measures should be taken to reduce the risk of CVD mortality.
Vascular calcification (VC) is prevalent in hypertension, diabetes mellitus, chronic kidney disease, and aging and has been identified as an important predictor of adverse cardiovascular events. With the complicated mechanisms involved in VC, there is no effective therapy. Thus, a strategy for attenuating the development of VC is of clinical importance. Recent studies suggest that grape exosome-like nanoparticles (GENs) are involved in cell–cell communication as a means of regulating oxidative stress, inflammation, and apoptosis, which are known to modulate VC development. In this review, we discuss the roles of GENs and their potential mechanisms in the development of VC.
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