Antioxidized LDL Antibodies Are Associated With Different Metabolic Pathways in Patients With Atherosclerotic Plaque and Type 2 Diabetes

Author:

Bernal-Lopez M. Rosa12,Garrido-Sanchez Lourdes34,Gomez-Carrillo Victor5,Gallego-Perales Jose Luis6,Llorente-Cortes Vicenta7,Calleja Fernando8,Gomez-Huelgas Ricardo25,Badimon Lina27,Tinahones Francisco J.12

Affiliation:

1. Biomedical Research Laboratory, Endocrinology and Nutrition Department, Hospital Clinico Virgen de la Victoria, Málaga, Spain

2. CIBER Fisiopatología de la Obesidad y Nutrición (CB06/003), Instituto de Salud Carlos III, Madrid, Spain

3. Endocrinology and Diabetes Unit, Joan XXIII University Hospital, IISPV, Universitat Rovira i Virgili, Tarragona, Spain

4. CIBERDEM, Barcelona, Spain

5. Internal Medicine Department, Hospital Regional Universitario Carlos Haya, Málaga, Spain

6. General Surgery Department, Hospital Regional Universitario Carlos Haya, Málaga, Spain

7. Cardiovascular Research Center, CSIC-ICCC, Hospital de la Santa Creu i Sant Pau, Barcelona, Spain

8. Cardiovascular Surgery Department, Hospital Regional Universitario Carlos Haya, Málaga, Spain

Abstract

OBJECTIVE Oxidized lipoproteins and antioxidized LDL antibodies (antioxLDL abs) have been detected in human plasma and atherosclerotic lesions. The principle aim of this study was to analyze the possible relationship between IgG and IgM antioxLDL abs and factors involved in different metabolic pathways (inflammation, lipid metabolism, apoptosis, and cell cycle arrest profile) in the occluded popliteal artery (OPA) compared with the femoral vein (FV). RESEARCH DESIGN AND METHODS Fifteen patients with advanced atherosclerosis and type 2 diabetes undergoing lower limb amputation participated in this study. Each patient had OPA and FV biopsy specimens and peripheral arterial occlusive disease. By real-time PCR, gene expression was analyzed from the OPA and FV specimens, and antioxLDL ab levels were measured by specific enzyme-linked immunosorbent assay . RESULTS The OPA and FV showed a positive correlation between only IgM antioxLDL ab levels and the expression of genes involved in different metabolic pathways, including inflammation (TFPI), apoptosis (BAX, caspase 3, AKT1), plaque disruption (MMP2 and MMP10), lipid metabolism (SCARB1, PPARg), and cell turnover (CDKN1A), and genes for transcription and growth factors (NFkB and VEGFA, respectively). CONCLUSIONS The results show that gene expression in the metabolic pathways (apoptosis, lipid metabolism, and inflammation) in the OPA and FV are directly related to the levels of IgM antioxLDL abs.

Publisher

American Diabetes Association

Subject

Advanced and Specialized Nursing,Endocrinology, Diabetes and Metabolism,Internal Medicine

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