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Legume-Enriched Mediterranean Diet and Cellular Hydration in Competitive Swimmers

Legume Consumption Within a Mediterranean Diet Framework and Its Effects on Cellular Hydration, Autonomic Regulation, and Functional Performance in Competitive Swimmers: A Five-Month Intervention Study

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07315529
Acronym
LEGUMES-SWIM
Enrollment
39
Registered
2026-01-02
Start date
2025-02-01
Completion date
2025-07-31
Last updated
2026-01-02

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

Conditions

Athlete, Diet Habits

Keywords

Mediterranean diet, Legume consumption, Competitive swimmers, Athletes, Bioelectrical impedance analysis, Phase angle, Extracellular water, Intracellular water, Heart rate variability, Critical swim speed

Brief summary

This study investigates whether increasing legume consumption within a Mediterranean diet framework improves cellular hydration, autonomic regulation, and functional performance in competitive swimmers. Thirty-nine adolescent and young adult swimmers were monitored over a five-month competitive season under standardized training conditions. Participants were allocated to three groups according to habitual legume intake: a control group (\<1 serving/week, no dietary change), a moderate-intake group (≈2 servings/week increased to 3/week), and a high-intake group (≈3-4 servings/week increased to 6/week). Dietary counseling focused exclusively on adjusting legume intake, while overall training load and other dietary components were maintained. Primary outcomes include bioelectrical impedance-derived phase angle and body water distribution indices (extracellular water, intracellular water, ECW/ICW ratio) as markers of cellular health and hydration. Secondary outcomes include heart rate variability, cardiac coherence as indices of autonomic balance, and critical swim speed as a performance-related measure. The study aims to clarify whether a simple, sustainable increase in legume intake can support athletes' cellular integrity, autonomic function, and functional status without altering standard training programs.

Detailed description

This interventional study was conducted in competitive swimmers to evaluate the impact of higher legume consumption, within a Mediterranean diet framework, on markers of cellular health, body water distribution, autonomic regulation, and functional performance. Thirty-nine competitive swimmers (mean age approximately 20 years; both males and females) were enrolled and followed for five months during the first half of the competitive season. All athletes trained under similar standardized conditions, completing six weekly sessions that combined dry-land pre-activation, in-water training, and, in some sessions, gym-based strength work. At baseline, participants completed an online dietary assessment using the validated MEDI-LITE questionnaire to quantify adherence to the Mediterranean diet and habitual legume intake. Based on baseline legume consumption, swimmers were assigned to one of three groups: a control group (\<1 serving/week, no change in diet), a moderate-intake group (≈2 servings/week increased to 3 servings/week), and a high-intake group (≈3-4 servings/week increased to 6 servings/week). A qualified nutrition professional provided counseling to adjust only legume intake, while other aspects of diet were kept stable. Dietary adherence and legume consumption were monitored regularly throughout the study, and the MEDI-LITE questionnaire was repeated at the end of the intervention. The primary endpoints are phase angle and hydration indices derived from bioelectrical impedance analysis, including extracellular water (ECW), intracellular water (ICW), and the ECW/ICW ratio, which are considered integrated markers of cellular integrity, cell mass, and fluid compartmentalization. Secondary endpoints include measures of autonomic function-heart rate variability and cardiac coherence-assessed with a standardized device, and a critical swim speed test performed in an indoor pool as a functional performance indicator. Anthropometric data and basic clinical information were also collected. The study was approved by the Lazio Area 5 Territorial Ethics Committee (Approval Code: N.57/SR/23) and conducted in accordance with the Declaration of Helsinki; all participants provided written informed consent before enrollment. By focusing on a feasible dietary modification (greater legume intake) within an otherwise stable Mediterranean-style eating pattern and unchanged training load, the study is designed to generate sport-specific evidence on whether plant-based protein sources such as legumes can enhance cellular hydration, autonomic regulation, and performance-related parameters in competitive athletes.

Interventions

OTHERLegume-enriched Mediterranean diet

Adjustment of habitual legume intake within a Mediterranean diet pattern to 3 or 6 servings per week, without altering other dietary components or training regimen.

Sponsors

San Raffaele Telematic University
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
HEALTH_SERVICES_RESEARCH
Masking
NONE

Intervention model description

Parallel-group interventional study with three diet-based arms: control group with no change in legume intake, moderate-intake group increasing to 3 servings/week, and high-intake group increasing to 6 servings/week, under standardized training conditions.

Eligibility

Sex/Gender
ALL
Age
18 Years to 30 Years
Healthy volunteers
Yes

Inclusion criteria

* Competitive swimmers training at least six sessions per week. * Age ≥18 years. * Ability to complete an online questionnaire in Italian prior to the first clinical evaluation. * Willingness to comply with the prescribed legume intake pattern for the assigned group. * Provision of written informed consent.

Exclusion criteria

* Current use of performance-enhancing drugs or any chronic medication. * Musculoskeletal injury or medical conditions that could interfere with training or study assessments. * Consumption of alcohol or caffeinated beverages within 15 hours before testing sessions. * Inability or unwillingness to complete the scheduled assessments or to provide informed consent.

Design outcomes

Primary

MeasureTime frameDescription
Change in phase angle (degrees)Baseline and 5 monthsPhase angle derived from whole-body bioelectrical impedance analysis, reflecting cellular integrity and body cell mass. Measured at baseline and after 5 months in each arm.

Secondary

MeasureTime frameDescription
Change in extracellular water percentage (ECW)Baseline and 5 monthsExtracellular water percentage obtained from bioelectrical impedance analysis, used as an index of fluid distribution.
Change in ECW/ICW ratioBaseline and 5 monthsRatio between extracellular and intracellular water derived from bioelectrical impedance analysis, indicating body water compartmentalization.

Countries

Italy

Outcome results

None listed

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