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Exercise Pressor Reflex and Lifelong Training

The Effects of Lifelong Endurance and Strength Training on the Central and Peripheral Cardiovascular Responses

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04013022
Acronym
LEaSTCaRe
Enrollment
48
Registered
2019-07-09
Start date
2019-08-01
Completion date
2021-11-29
Last updated
2019-07-09

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

Conditions

Cardiovascular Risk Factor, Healthy Aging

Keywords

Exercise Pressor Reflex, Metaboreflex, Mechanoreflex, Lifelong exercise training

Brief summary

Cardiovascular diseases represent the first mortality cause in the world. Ageing is considered as the most prominent risk factor for this kind of diseases. Also, hypertension represents one of the modifiable risk factors. Blood pressure response to exercise is governed by three systems: central command, baroreflex, and a feedback mechanism originating in the skeletal muscle. An abnormal cardiovascular response to exercise facilitates the occurrence of cardiovascular events. The goal of the study is to characterize the cardiovascular response in lifelong trained individuals and explore the potential benefits of endurance and strength training on cardiovascular regulation to exercise onset.

Detailed description

Population ageing represents a problem both for health outcomes and for social dynamics in the social welfare states. Currently, the over 60 represents the fastest growing segment of the population. Despite a downward trend in the incidence of cardiovascular diseases, they remain the main culprits for what concern mortality rates in the world. Increasing age is considered the major risk factor for cardiovascular mortality. One of the main components of the cardiovascular response to exercise is dictated by the exercise pressor reflex originating in the exercising muscle and responding to metabolic and mechanical stimuli. Research indicates that at least 20% of the regulation of blood pressure could be ascribed to these cardiovascular reflexes. A dysfunctional reflex-mediated response increases the chances of cardiovascular events that may end up in severe consequences. Chronic exercise training is recognized to be an important tool to control blood pressure. The mechanisms through which exercise exerts its effect are multiple. Among these, an improvement of the neural control of the reflex originating in the muscle seems a likely contributor. However, at present, the effect of chronic exercise training on the EPR response in the elderly has not been elucidated. The aim of the study is to characterize the central and peripheral cardiovascular response in the lifelong endurance and strength trained elders population.

Interventions

BEHAVIORALExercise History

The groups will be divided based on their exercise history

Sponsors

Universita di Verona
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
MALE
Age
18 Years to 75 Years
Healthy volunteers
Yes

Inclusion criteria

General: * Young: 18 - 30, males, non smokers * Old Sedentary: 65 -75, males, non smokers * Old Endurance Trained: 65 -75, males, non smokers * Old Strength Trained: 65 - 75, males, non smokers Exercise history (different for each group): * Young: ≤ 5 h/week * Old Sedentary: ≤ 2h/week * Old Endurance Trained: ≥ 5 h/week, ≥ 30 years of practice, ≥ 4 sessions/week * Old Strength Trained: ≥ 5 h/week, ≥ 30 years of practice, ≥ 4 sessions/week

Exclusion criteria

* History of cardiovascular events/diseases * Respiratory, musculoskeletal, renal, and insulin-resistant diseases * Hypercholesterolemia * Use of beta-blockers * BMI ≥ 30

Design outcomes

Primary

MeasureTime frameDescription
Mean Arterial Blood Pressure (MAP)1 week after recruitment of the subject - We will measure the changes from baseline to the steady state response ( average of 3rd minute)Difference in MAP between groups to post-exercise cuff occlusion
Heart Rate (HR)1 week after recruitment of the subject - We will measure the change from baseline to peak (peak response in HR due to PLM)Difference in heart rate between groups to passive leg movement (PLM)
Muscle Sympathetic Nerve Activity - Microneurography1 week after recruitment - We will measure the change from baseline to mean value (during stimulation)Difference in muscle sympathetic nerve activity between groups to the different stimulations

Secondary

MeasureTime frameDescription
Muscle oxidative capacity in vivo / blood pressure response10 days after recruitment - Cross-sectional comparison at one time point onlyLinear regression to check whether an abnormal blood pressure response is explained by the different muscle oxidative capacity measured by NIRS in vivo

Countries

Italy

Contacts

Primary ContactMassimo Venturelli, PhD
massimo.venturelli@univr.it+39 0458425114
Backup ContactFabio Giuseppe Laginestra, MSc
fabiogiuseppe.laginestra@univr.it+39 0458425146

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026