Key result
Acute inflammatory challenge with Typhoid vaccine significantly increased diastolic blood pressure (p=0.026) and low-to-high frequency heart rate variability ratio (p=0.01) compared to placebo.
Why the study?
Does acute inflammation induced by Salmonella-typhi vaccine alter autonomic cardiovascular control and brain metabolism in healthy males?
RCT (n=20)
Double-blind
Randomized
No
Does acute inflammation induced by Salmonella-typhi vaccine alter autonomic cardiovascular control and brain metabolism in healthy males?
p-value: p=0.026
Acute inflammation increases diastolic blood pressure and shifts autonomic balance via central brain mechanisms, highlighting a potential pathway for increased cardiovascular risk in inflammatory states.
Acute inflammation may warrant closer BP monitoring in at-risk patients; confirms causal autonomic effects on cardiovascular control.
Inflammation is a risk factor for both depression and cardiovascular disease. Depressed mood is also a cardiovascular risk factor. To date, research into mechanisms through which inflammation impacts cardiovascular health rarely takes into account central effects on autonomic cardiovascular control, instead emphasizing direct effects of peripheral inflammatory responses on endothelial reactivity and myocardial function. However, brain responses to inflammation engage neural systems for motivational and homeostatic control and are expressed through depressed mood state and changes in autonomic cardiovascular regulation. Here we combined an inflammatory challenge, known to evoke an acute reduction in mood, with neuroimaging to identify the functional brain substrates underlying potentially detrimental changes in autonomic cardiovascular control. We first demonstrated that alterations in the balance of low to high frequency (LF/HF) changes in heart rate variability (a measure of baroreflex sensitivity) could account for some of the inflammation-evoked changes in diastolic blood pressure, indicating a central (rather than solely local endothelial) origin. Accompanying alterations in regional brain metabolism (measured using (18)FDG-PET) were analysed to localise central mechanisms of inflammation-induced changes in cardiovascular state: three discrete regions previously implicated in stressor-evoked blood pressure reactivity, the dorsal anterior and posterior cingulate and pons, strongly mediated the relationship between inflammation and blood pressure. Moreover, activity changes within each region predicted the inflammation-induced shift in LF/HF balance. These data are consistent with a centrally-driven component originating within brain areas supporting stressor evoked blood pressure reactivity. Together our findings highlight mechanisms binding psychological and physiological well-being and their perturbation by peripheral inflammation.
No takes yet. Share an insight, caveat, or question.
Harrison et al. (2013) conducted an RCT in Healthy (n=20). Salmonella-typhi capsular polysaccharide vaccine (Typhim Vi) vs. 0.5 ml normal saline (placebo) was evaluated on Change in diastolic blood pressure (p=0.026). Acute inflammatory challenge with Typhoid vaccine significantly increased diastolic blood pressure (p=0.026) and low-to-high frequency heart rate variability ratio (p=0.01) compared to placebo.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: