Hypercarotenemia in Anorexia Nervosa Patients May Influence Weight Balance
Results of a Clinical Cross-Sectional Cohort Study
Bibliographic Data
| ID | 15522159 |
|---|---|
| Authors | Sonja Lackner (0000-0002-5002-4460, Medical University of Graz), Nathalie Meier‐Allard (Medical University of Graz), Nathalie Meier-Allard, Sabrina Mörkl (0000-0001-5034-6358, Medical University of Graz), Wolfram Müller (0000-0002-7433-9926, Medical University of Graz), Alfred Fürhapter-Rieger (0000-0002-6653-0173, Medical University of Graz), Harald MANGGE (0000-0003-4067-247X, Medical University of Graz), Sieglinde Zelzer (0000-0002-8653-0779, Medical University of Graz), Sandra Holasek (0000-0002-2958-3516, Medical University of Graz, corresponding author) |
| Year | 2021 |
| Volume | 12 |
| Pages | 758300-758300 |
| Publication date | 2021-12-20 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Frontiers in Psychiatry (JOURNAL) |
| Journal identifiers | ISSN: 1664-0640 • E-ISSN: 1664-0640 |
| Publisher | Frontiers Media (PUBLISHER • CH) |
| DOI | 10.3389/fpsyt.2021.758300 |
| PMID | 34992554 |
| OpenAlex | W4200323881 |
| Language | EN |
| References cited | 36 |
Introduction: Anorexia nervosa (AN) can co-occur with hypercarotenemia, a clinical condition characterized by elevated β-carotene in plasma and skin tissue. Carotenoids have known anti-obesogenic effects in adipocyte biology. Thus, carotenoids may potentially play a retarding role in weight gain during the recovery of AN patients. This study evaluated the plasma carotenoid profile and subcutaneous adipose tissue (SAT) in a cohort of AN patients and normal weight (NW) controls. Methods: Plasma concentrations of α-carotene, β-carotene, β-cryptoxanthin, and lycopene were determined by HPLC analysis. SAT thicknesses were measured by a highly accurate and reliable ultrasound technique. Information on dietary intakes were collected by repeated 24-h recalls. Results: Sixty-two females (AN: n = 18, NW: n = 44) were included. The concentrations of β-cryptoxanthin ( p = 0.045) and lycopene ( p = 0.004) were significantly lower in AN patients. β-carotene levels were higher in AN patients (n.s.) and α-carotene did not differ significantly. SAT thickness was significantly lower in AN patients compared to controls ( p r s = -0.471) and lycopene significantly positive ( r s = 0.366) correlated with SAT. The correlation of β-carotene and SAT was even higher in the AN group alone ( r s = -0.742). Also, β- cryptoxanthin and the sum of provitamin A carotenoids were correlated to SAT ( r s = -0.647 and r s = -0.746, respectively) in AN patients. Fruits and vegetable intake did not differ significantly between AN and NW but adjusted for SAT, AN patients consumed relatively higher amounts ( p = 0.006). Conclusion: Higher plasma β-carotene concentrations were associated with reduced SAT levels, most probably due to a reduced ability of the remaining adipose tissue to store carotenoids. Thus, the antiobesity effects of carotenoids might impact the treatment success of undernutrition and AN. A systemic carotenoid overload may contribute to changes in adipogenesis and metabolic capacities for energy storage. Therefore, high plasma β-carotene may be a marker of delay in weight recovery in AN patients. Interventional studies should consider including carotenoid-status in AN treatment
Anorexia · Anorexia nervosa · Balance (ability · Cohort · Cross-sectional study · Eating disorders · Pathology · Physical therapy · Psychiatry · Antioxidant Activity and Oxidative Stress · Clinical Psychology · Eating Disorders and Behaviors · Medicine · Psychology · Retinoids in leukemia and cellular processes · Internal Medicine
| Citation velocity | historical |
|---|---|
| Highly cited | No |