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עמוד בית
Wed, 13.11.24

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November 2024
Yana Kakzanov MD, Yamama Alsana, Tal Brosh-Nissimov MD, Emanuel Harari MD, Michael Rahkovich MD, Yonatan Kogan MD, Emma Shvets RN MA, Gergana Marincheva MD, Lubov Vasilenko MD, Avishag Laish-Farkash MD PhD

Background: Cardiac implantable electronic devices (CIEDs) are associated with risks of device-related infections (DRI) impacting major adverse outcomes. Staphylococcus aureus (SA) is a leading cause of early pocket infection and bacteremia. While studies in other surgical contexts have suggested that nasal mupirocin treatment and chlorhexidine skin washing may reduce colonization and infection risk, limited data exist for CIED interventions.

Objectives: To assess the impact of SA decolonization on DRI rates.

Methods: We conducted a retrospective, single-center observational study on consecutive patients undergoing CIED interventions (March 2020–March 2022). All patients received pre-procedure antibiotics and chlorhexidine skin washing. Starting in March 2021, additional pre-treatment with mupirocin for SA decolonization was administered. DRI rates within 6 months post-implantation were compared between patients treated according to guidelines (Group 1) and those receiving mupirocin in addition to the recommended guidelines (Group 2).

Results: The study comprised 276 patients (age 77 ± 10 years; 60% male). DRI occurred in five patients (1.8%);80% underwent cardiac resynchronization therapy procedures. In Group 1 (n=177), four patients (2.2%) experienced DRI 11–48 days post-procedure; three with pocket infection (two with negative cultures and one with local Pseudomonas) and one with methicillin-sensitive SA endocarditis necessitating device extraction. In Group 2 (n=99), only one patient (1%) had DRI (Strep. dysgalactiae endocarditis) 135 days post-procedure (P = NS).

Conclusions: The routine decolonization of SA with mupirocin, in addition to guideline-directed protocols, did not significantly affect DRI rates. Larger prospective studies are needed to evaluate the preventive role of routine SA decolonization in CIED procedures.

June 2021
Yana Kakzanov MD, Ziv Sevilya PhD, Mordehay Vaturi MD, Alexander Goldman MD, and Eli I. Lev MD

Background: Heart failure with preserved ejection fraction (HFpEF) is a common clinical entity, with a mechanism that appears to involve endothelial dysfunction of the cardiac microcirculation. Endothelial progenitor cells (EPC) are bone marrow derived cells that are able to differentiate into functional endothelial cells and participate in endothelial surface repair.

Objectives: To compare the level and function of EPCs in patients with HFpEF compared with heart failure with reduced ejection fraction (HFrEF) and control subjects.

Methods: We enrolled 21 patients with HFpEF (LVEF ≥ 50%, age 74.5 ± 9.9 years, 43% men, 48% diabetes), 20 patients with HFrEF (LVEF < 40%, age 70 ± 11.5 years, 90% men, 60% diabetes), and 11 control subjects with cardiovascular risk factors (age 53.3 ± 6.1years, 90% men, 64% diabetes). Circulating EPC levels were evaluated by expression of vascular endothelial growth factor receptor-2 (VEGFR-2), CD34, and CD133 by flow-cytometry. EPCs colony forming units (CFUs) were quantified after 7 days in culture.

Results: The proportion of cells that co-expressed VEGFR-2 and CD34 or VEGFR-2 and CD133 was similar among the HFpEF and HFrEF groups, and significantly lower than in the control group. The number of EPC-CFUs was also similar among the two heart failure groups and significantly lower than the control group.

Conclusions: Patients with HFpEF, like HFrEF, have significant reduction in EPC level and function.

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