What Can We Learn from the Scalp Hair’s Trace Element Content? The Relationship with the Advancement of Coronary Artery Disease

Author:

Urbanowicz Tomasz12ORCID,Hanć Anetta3ORCID,Frąckowiak Julia3,Białasik-Misiorny Maksymilian4ORCID,Radek Zofia4,Krama Marta4,Filipiak Krzysztof J.56ORCID,Krasińska-Płachta Aleksandra7ORCID,Iwańczyk Sylwia8,Kowalewski Mariusz2910,Tykarski Andrzej5,Jemielity Marek1ORCID

Affiliation:

1. Cardiac Surgery and Transplantology Department, Poznan University of Medical Sciences, 61-701 Poznan, Poland

2. Thoracic Research Centre, Collegium Medicum Nicolaus Copernicus University, Innovative Medical Forum, 85-094 Bydgoszcz, Poland

3. Department of Trace Analysis, Faculty of Chemistry, Adam Mickiewicz University, 61-614 Poznan, Poland

4. Poznan University of Medical Sciences, 61-701 Poznan, Poland

5. Department of Hypertensiology, Angiology and Internal Medicine, Poznan University of Medical Sciences, 61-701 Poznan, Poland

6. Institute of Clinical Science, Maria Sklodowska-Curie Medical Academy, 00-136 Warsaw, Poland

7. Department of Ophthalmology, Poznan University of Medical Sciences, 61-107 Poznan, Poland

8. 1st Cardiology Department, Poznan University of Medical Sciences, 61-107 Poznan, Poland

9. Department of Cardiac Surgery and Transplantology, National Medical Institute of the Ministry of Interior and Administration, 02-507 Warsaw, Poland

10. Cardio-Thoracic Surgery Department, Heart and Vascular Center, Maastricht University Medical Center (MUMC), Cardiovascular Research Center Maastricht (CARIM), 6229 Maastricht, The Netherlands

Abstract

Background: Multiple risk factors for coronary artery disease have been identified without answering one of the leading questions related to the extent of the involvement of the epicardial arteries. Trace elements are involved in various stages of atherosclerotic lesion formation and may play a significant role in the advancement of coronary artery disease. Methods: A total of 157 (92 (59%) men and 65 (41%) women) patients with a median age of 71 (65–75) years presenting with chronic coronary syndrome were enrolled in the prospective single-center analysis. The coronary angiography results were compared with the concentration of trace elements in scalp hair. Results: Through Spearman analysis, a positive correlation between the number of diseased coronary arteries and hair trace element concentration was found for sodium (r = 0.198, p = 0.013), vanadium (r = 0.164, p = 0.040), chromium (r = 0.242, p = 0.002), and nickel (r = 0.176, p = 0.026). A negative relationship was noted between magnesium (r = −0.237, p = 0.003) and calcium (r = −0.217, p = 0.007) and the extent of epicardial lesions. Conclusions: Scalp hair trace element analysis indicates the possible modulatory role of trace elements in advancing coronary artery disease. Since a significant correlation with one- and two-vessel but not with three-vessel disease was noted, it might be considered an “all or nothing” phenomenon. A positive correlation between the number of diseased coronary arteries and sodium, vanadium, chromium, and nickel and an inverse correlation with magnesium and calcium were noted. The presented analysis is hypothesis-generating, and further studies are necessary to corroborate the results from a clinical perspective.

Publisher

MDPI AG

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