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The Effect of Water Carbonation on Orthostatic Tolerance

The Effect of Water Carbonation on Orthostatic Tolerance

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05621460
Enrollment
25
Registered
2022-11-18
Start date
2023-09-01
Completion date
2027-04-01
Last updated
2026-04-23

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Orthostatic Hypotension, Syncope, Vasovagal Syncope

Keywords

Tilt table, Osmopressor reflex, Gastropressor reflex

Brief summary

The primary purpose of this investigation is to determine whether water carbonation can improve orthostatic tolerance in healthy control volunteers. Orthostatic tolerance refers to the ability to maintain an adequate blood pressure when standing. In some individuals blood pressure can fall when standing, predisposing to dizzy spells or fainting episodes. Drinking water can boost blood pressure and making fainting episodes less likely. However, it is not clear whether the carbonation of the water has any further impact on the blood pressure response. This is important because it may be that carbonated water expands the stomach (gastric distension), provoking an increase in sympathetic activity. The increase in sympathetic nervous system activity boosts blood pressure. Resolving this question would have important implications for patients with syncope. This study will test whether carbonated water will have any further impact on blood pressure than the already known effect of non-carbonated water.

Detailed description

The primary purpose of this investigation is to determine whether water carbonation can improve orthostatic tolerance in healthy control volunteers. Orthostatic tolerance refers to the ability to maintain an adequate blood pressure when standing \[1\]. In some individuals blood pressure can fall when standing, predisposing to dizzy spells or fainting episodes \[1\]. Drinking water can boost blood pressure and making fainting episodes less likely \[2-8\]. However, it is not clear whether the carbonation of the water has any further impact on the blood pressure response \[9,10\]. This is important because it may be that carbonated water expands the stomach (gastric distension), provoking an increase in sympathetic activity. The increase in sympathetic nervous system activity boosts blood pressure. Resolving this question would have important implications for patients with syncope. This study will test whether carbonated water will have any further impact on blood pressure than the already known effect of non-carbonated water. Volunteers (n=25) will be asked to undergo a "tilt test" to assess cardiovascular reflex control and orthostatic tolerance (measured as time to presyncope, or near fainting, in minutes). It has been previously shown that this technique to be reproducible, reliable, and to have high sensitivity and specificity for differentiating persons with differing orthostatic tolerance, or for examining the effects of interventions aimed at improving orthostatic tolerance \[4,6,11-18\]. Volunteers will undergo this test on three separate days. On each day participants will be asked to drink a glass of water: either a 50ml drink of room temperature water (control condition), a 500ml drink of flat (non-carbonated) room temperature water, or a 500ml drink of carbonated room temperature water. The study will be conducted in a randomised, single-blind fashion. The investigator responsible for terminating the test will be blinded as to the water condition on each test day, rendering the study single blind. It will not be possible to blind participants as to the carbonation of the water, however, participants will not be informed as to the hypothesised impact of the water conditions.

Interventions

OTHER500mL carbonated water

Drink 500mL carbonated water immediately prior to head-up tilt test

OTHER500mL still water

Drink 500mL still water immediately prior to head-up tilt test

OTHER50mL still water

Drink 50mL still water immediately prior to head-up tilt test

Sponsors

Simon Fraser University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
TREATMENT
Masking
SINGLE (Investigator)

Masking description

The investigator determining the end of the test (the time to presyncope) will be blinded to the condition.

Intervention model description

Each participant will complete the test for every condition (3 tests per participant, order of treatment randomized).

Eligibility

Sex/Gender
ALL
Age
19 Years to 50 Years
Healthy volunteers
Yes

Inclusion criteria

* healthy, English-speaking

Exclusion criteria

* pregnancy or suspected pregnancy, history of cardiovascular disease, history of neurological disease, history of recurrent fainting (≥ 2 episodes of fainting with loss of consciousness in the prior 6 months)

Design outcomes

Primary

MeasureTime frameDescription
Orthostatic tolerance0-50 minutesThe time, in minutes, to presyncope (near-fainting) after the initiation of head-up tilt

Countries

Canada

Contacts

CONTACTVictoria E Claydon, PhD
victoria_claydon@sfu.ca7787828513
CONTACTVera-Ellen M Lucci, PhD
vlucci@sfu.ca7787828560
PRINCIPAL_INVESTIGATORVictoria E Claydon, PhD

Professor, Biomedical Physiology and Kinesiology

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Apr 24, 2026