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Variability in Human Fatty Acids Profiles Based on Blood Fractions and Metabolic Conditions

Variability in Human Fatty Acids Profiles Based on Blood Fractions and Metabolic Conditions

Status
Not yet recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06731400
Enrollment
6
Registered
2024-12-12
Start date
2024-12-03
Completion date
2025-03-30
Last updated
2024-12-12

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

Conditions

Atherosclerosis Cardiovascular Disease

Keywords

EPA, DHA, supplementation, leukocytes

Brief summary

Fatty acids play a crucial role in various metabolic pathways, with their proportions and distributions across different cells and tissues influenced by diet and metabolism. In addition to providing energy through oxidative reactions, fatty acids serve as substrates for the synthesis of numerous molecules involved in cellular signaling processes. Therefore, quantifying fatty acids in biological samples is essential for ensuring the quality of clinical trials involving lipids and for understanding the relationship between fats and health conditions. However, the fatty acid profiles reported in clinical trials can exhibit significant heterogeneity due to both endogenous and exogenous factors, including the metabolic condition of the patients and the specific blood fraction analyzed. This variability makes difficult the comparison of results across studies. Moreover, despite the crucial role of fatty acids in immune response, most results are derived from erythrocytes, plasma, or serum, providing limited information on their variability in leukocytes. Thus, the hypothesis of this study is that metabolic conditions, characterized by fasting or postprandial states, can influence the fatty acid profile depending on the blood fraction analyzed. To evaluate this hypothesis, six healthy individuals will be supplemented with fish oil for eight weeks, with blood samples collected before and after the intervention. Fatty acid levels will be measured using gas chromatography coupled with mass spectrometry in total plasma, phospholipids, erythrocytes, and leukocytes. The results will help estimate the variability caused by metabolic states according to the blood fraction, which is critical when conducting clinical trials in patients where fasting cannot be assured and is essential for comparing fatty acid profiles in studies involving leukocytes.

Detailed description

In summary, it is known that numerous factors can interfere with the effects of administering polyunsaturated fatty acids (n-3 PUFA), including aspects related to the experimental design, such as the form and dosage used, the duration of treatments, the blood fraction and the metabolic state of the individuals. In this context, given the importance of precise quantification of fatty acids in biological samples obtained from humans, the present study will aim to evaluate the variability caused by the administration of fish oil before and after 8 weeks of supplementation. This will involve comparing the fatty acid profiles according to different fractions (plasma, leukocytes, and erythrocytes) and fasting conditions (fasting or post-prandial). In plasma, the analysis will also consider both the total sample and the phospholipidic fraction.

Interventions

DIETARY_SUPPLEMENTEPA supplementation

Six healthy individuals will be supplemented with fish oil contains omega 3 (EPA) for eight weeks, with blood samples collected before and after the intervention.

Sponsors

University of Sao Paulo
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
SINGLE_GROUP
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
FEMALE
Age
20 Years to 50 Years
Healthy volunteers
No

Inclusion criteria

* Individuals of both sexes * Aged between 20 and 50 years * No contraindications for the use of fish oil supplements

Exclusion criteria

* Use of medications or supplements to reduce triacylglycerols; * Consumption of fish oil or other supplements/medicines rich in n-3 or n-6 PUFA in the month before the test; * Consumption of fatty fish (salmon, herring, mackerel, white tuna or sardines) more than twice a month in the month before the test; * Refusal to avoid PUFA supplements and seafood during the study period; * Severe heart failure; * Severe active liver disease; * Planned coronary intervention or surgery, * History of acute or chronic pancreatitis; * Hypersensitivity to fish, shellfish or capsule ingredients; * Autoimmune diseases requiring immunosuppressive therapy; * Current corticosteroid use systemic, * Neoplasms; * Chemotherapy or radiotherapy within the past 12 months (patients who have undergone curative surgery without requiring additional treatment within the past year may be included); * Inflammatory bowel disease; * Chronic diarrhea; * Significant non-transient hematological abnormalities; * Kidney dysfunction; * Severe liver disease; * Inability to provide informed record; * Participation in another clinical trial with an experimental agent in the last 90 days; * Malabsorption syndrome; * Recent drug or alcohol abuse; * Atrial fibrillation; * Bleeding disorders. * Pregnancy * Breastfeeding.

Design outcomes

Primary

MeasureTime frameDescription
The fasting or postprandial states on the fatty acid profileFrom December 2024 to February 2025This study will assess whether fasting or postprandial states affect the fatty acid profile based on the blood fraction analyzed. Six healthy individuals will be supplemented with 2 g/day of fish oil for eight weeks, with blood samples collected before and after the intervention. Fatty acid levels will be measured using gas chromatography-mass spectrometry in total plasma, phospholipids, erythrocytes, and leukocytes.

Contacts

Primary ContactInar Castro Erger, Professor
inar@usp.br+55(11)97429-3369
Backup ContactVivian Massari Massari, Master
vivianmoura@usp.br+55(11)96645-2370

Outcome results

None listed

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