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עמוד בית
Mon, 29.04.24

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February 2016
Michal Laufer Perl MD, Ariel Finkelstein MD, Miri Revivo MHA, Shlomo Berliner MD, Itzhak Herz MD, Itay Rabinovich MD, Tomer Ziv-Baran PhD, Dalit Gotler, Gad Keren MD, Shmuel Bana MD and Yaron Arbel MD

Background: Atherosclerosis is a systemic disease. Nevertheless, the role of specific biomarkers as indicators for both coronary and carotid diseases is debatable.

Objectives: To evaluate the association of biomarkers with coronary and carotid disease.

Methods: We studied 522 consecutive patients with stable angina. All underwent coronary angiography and carotid duplex study on the same day. Patients with no apparent carotid plaques were evaluated for carotid intima-media thickness (CIMT) using an automated system that sampled over 100 samples in each carotid artery. Biochemical markers of cardiovascular disease risk were obtained at the time of coronary angiography, including serum lipid levels, hemoglobin A1C (HbA1c), white blood cell count, fibrinogen and high sensitivity C-reactive protein (hs-CRP).

Results: The mean age of the patients was 66 ± 11; 73% were males. Significant carotid stenosis was associated with higher hs-CRP (9.4 ± 17 vs. 6.3 ± 13 mg/L, P = 0.001), while high HbA1c (6.7 ± 1.6 vs. 5.8 ± 0.8%, P < 0.001) and low high density lipoprotein levels (40 ± 9 vs. 47 ± 14 mg/dl, P < 0.001) were linked with advanced coronary artery disease severity. In contrast, CIMT was not related to any of the biomarkers evaluated.

Conclusions: Although atherosclerosis is considered a systemic disease, different biomarkers are associated with coronary and carotid artery disease. Identifying the specific biomarkers for each disease is important for both prevention and for exposing the underlying pathophysiologic mechanism.

 

March 2011
G. Kerekes, P. Soltész, G. Szűcs, S. Szamosi, H. Dér, Z. Szabó, L. Csáthy, A. Váncsa, P. Szodoray, G. Szegedi and Z. Szekanecz

Background: Increased cardiovascular morbidity has become a leading cause of mortality in rheumatoid arthritis (RA). Tumor necrosis factor-alpha (TNFα) inhibitors may influence flow-mediated vasodilation (FMD) of the brachial artery, common carotid intima-media thickness (ccIMT) and arterial stiffness indicated by pulse-wave velocity (PWV) in RA.

Objectives: To assess the effects of adalimumab treatment on FMD[1], ccIMT[2] and PWV[3] in early RA[4].

Methods: Eight RA patients with a disease duration ≤ 1 year received 40 mg adalimumab subcutaneously every 2 weeks. Ultrasound was used to assess brachial FMD and ccIMT. PWV was determined by arteriograph. These parameters were correlated with C-reacive protein, vonWillebrand factor (vWF), immunoglobulin M (IgM)-rheumatoid factor (RF), anti-CCP levels and 28-joint Disease Activity Score (DAS28).

Results: Adalimumab therapy successfully ameliorated arthritis as it decreased CRP[5] levels (P = 0.04) and DAS28[6] (P < 0.0001). Endothelial function (FMD) improved in comparison to baseline (P < 0.05). ccIMT decreased after 24 weeks, indicating a mean 11.9% significant improvement (P = 0.002). Adalimumab relieved arterial stiffness (PWV) after 24 weeks. Although plasma vWF[7] levels decreased only non-significantly after 12 weeks of treatment, an inverse correlation was found between FMD and vWF (R = -0.643, P = 0.007). FMD also inversely correlated with CRP (R = -0.596, P = 0.015). CRP and vWF also correlated with each other (R = 0.598, P = 0.014). PWV and ccIMT showed a positive correlation (R = 0.735, P = 0.038).

Conclusions: Treatment with adalimumab exerted favorable effects on disease activity and endothelial dysfunction. It also ameliorated carotid atherosclerosis and arterial stiffness in patients with early RA. Early adalimumab therapy may have an important role in the prevention and management of vascular comorbidity in RA.






[1] FMD = flow-mediated vasodilation



[2] ccIMT = common carotid intima-media thickness



[3] PWV = pulse-wave velocity



[4] RA = rheumatoid arthritis



[5] CRP = C-reactive protein



[6] DAS28 = 28-joint Disease Activity Score



[7] vWF = vonWillebrand factor


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