👤 Tabea Thies

🔍 Search 📋 Browse 🏷️ Tags ❤️ Favourites ➕ Add 🧬 Extraction
2
Articles
2
Name variants
Also published as: Frank Thies,
articles
Tabea Thies, Hannah Jergas, Doris Mücke +4 more · 2023 · Brain stimulation · Elsevier · added 2026-04-24
no PDF DOI: 10.1016/j.brs.2023.10.013
LPL
Jane McEneny, Sarah-Louise Henry, Jayne Woodside +4 more · 2022 · Frontiers in nutrition · Frontiers · added 2026-04-24
The consumption of lycopene-rich foods may lower cardiovascular disease (CVD) risk. Lycopene circulates in the blood bound to lipoproteins, including high-density lipoproteins (HDLs). Preliminary data Show more
The consumption of lycopene-rich foods may lower cardiovascular disease (CVD) risk. Lycopene circulates in the blood bound to lipoproteins, including high-density lipoproteins (HDLs). Preliminary data from our group showed that increased consumption of tomato-based food or lycopene supplement in middle-aged subjects led to functional changes to HDL's sub-fractions, HDL We carried out a comprehensive randomized controlled intervention trial with healthy middle-aged volunteers to assess whether the consumption of tomato-based foods or lycopene supplements affects HDL functionality and associated inflammatory markers, and lipoprotein subfractions size and distribution. Volunteers (225, aged 40-65 years) were randomly assigned to one of three dietary intervention groups and asked to consume a control diet (low in tomato-based foods, <10 mg lycopene/week), a lycopene-rich diet (224-350 mg lycopene/week), or the control diet with a lycopene supplement (70 mg lycopene/week). HDL Lycopene in serum and HDL significantly increased following consumption of both the high tomato diet and lycopene supplement ( Our results showed that dietary lycopene can significantly enhance HDL functionality, without associated changes in particle size and distribution, by modulating the activity of HDL-associated enzymes. Concomitantly, dietary lycopene significantly decreased serum- and HDL (https://www.isrctn.com), ISRCTN34203810. Show less
📄 PDF DOI: 10.3389/fnut.2022.954593
CETP