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September 7, 2022Hypertension5 citationsOpen Access

Reservoir Pressure Integral Is Independently Associated With the Reduction in Renal Function in Older Adults

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KAKunihiko AizawaAHAlun D. HughesFCFrancesco Casanova

Structured PICO

Is baseline reservoir pressure integral associated with the reduction in estimated glomerular filtration rate in older adults?

P
Population
542 older adults, mean age 69.4±7.9 years, 194 females
I
Intervention
Reservoir-excess pressure parameters (specifically reservoir pressure integral) obtained by radial artery tonometry
O
Outcome
Reduction in estimated glomerular filtration rate (>5% per year) after 3 yearssurrogate

Higher baseline reservoir pressure integral, derived from radial artery tonometry, is independently associated with a smaller decline in renal function in older adults over 3 years.

Abstract

Background: Arterial hemodynamic parameters derived from reservoir-excess pressure analysis exhibit prognostic utility. Reservoir-excess pressure analysis may provide useful information about an influence of altered hemodynamics on target organ such as the kidneys. We determined whether the parameters derived from the reservoir-excess pressure analysis were associated with the reduction in estimated glomerular filtration rate in 542 older adults (69.4±7.9 years, 194 females) at baseline and after 3 years. Methods: Reservoir-excess pressure parameters, including reservoir pressure integral, excess pressure integral, systolic, and diastolic rate constants, were obtained by radial artery tonometry. Results: After 3 years, and in a group of 94 individuals (72.4±7.6 years, 26 females), there was an estimated glomerular filtration rate reduction of >5% per year (median reduction of 20.5% over 3 years). A multivariable logistic regression analysis revealed that higher baseline reservoir pressure integral was independently associated with a smaller reduction in estimated glomerular filtration rate after accounting for conventional cardiovascular risk factors and study centers (odds ratio: 0.660 95% CIs, 0.494–0.883; P =0.005). The association remained unchanged after further adjustments for potential confounders and baseline renal function (odds ratio: 0.528 95% CIs, 0.351–0.794; P =0.002). No other reservoir-excess pressure parameters exhibited associations with the reduction in renal function. Conclusions: This study demonstrates that baseline reservoir pressure integral was associated with the decline in renal function in older adults at 3-year follow-up, independently of conventional cardiovascular risk factors. This suggests that reservoir pressure integral may play a role in the functional decline of the kidneys.

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Cite This Study

Aizawa et al. (2022) studied this question.

synapsesocial.com/papers/6a968eb97c15eaca02578202https://doi.org/10.1161/hypertensionaha.122.19483
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