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1.
Cureus ; 16(9): e68520, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39376801

ABSTRACT

INTRODUCTION: Venous thromboembolic disease (VTE) is an episodic condition of multifactorial origin, commonly manifesting as deep vein thrombosis (DVT) and pulmonary embolism (PE). VTE is a major cause of morbidity and mortality. As an acute condition, it has the potential for recurrence and is associated with major consequences; this disease poses significant challenges to the healthcare system. VTE is a widespread concern in developed and developing countries; therefore, it is not limited to specific regions or populations. OBJECTIVES: To evaluate the risk factors associated with unprovoked PE in patients in a hospital center in Sincelejo, Colombia. METHODS: This is an observational, analytical cross-sectional study utilizing retrospective data. From 2010 to 2023, we reviewed 126 medical records of patients who experienced their first unprovoked VTE events and met the inclusion criteria. We performed data analysis using R software version 3.5.1. RESULTS: Of the patients, 36.5% (n = 46) were women; 63.5% (n = 80) were men, with a mean age of 62.22 years (SD = 10.62). About 53% of women presented with PE, compared to 47% of men. The coagulation factor VIII acted as a PE risk factor (p = 0.098). The best model to predict PE development obtained an Akaike information criterion (AIC) of 176.67, indicating that the A1 positive phenotype is the risk factor with the highest prediction for PE occurrence. CONCLUSIONS: High levels of coagulation factor VIII and an A1-positive phenotype are risk factors that may increase PE development. These findings suggest the need for preventive strategies in this risk setting to reduce the incidence and recurrence of PE.

2.
J Vasc Surg Venous Lymphat Disord ; 8(5): 869-881.e2, 2020 09.
Article in English | MEDLINE | ID: mdl-32330639

ABSTRACT

OBJECTIVE: Perioperative venous thromboembolism (VTE) is generally considered preventable. Whereas the non-vascular surgery literature is rich in providing data about the impact of VTE prophylaxis on VTE outcomes, vascular surgery data are relatively sparse on this topic. This study sought to evaluate the evidence for VTE prophylaxis specifically for the population of vascular surgery patients. METHODS: A systematic search was conducted in MEDLINE, Cochrane, and Embase databases in December 2018. Included were studies reporting primary and secondary outcomes for common vascular surgery procedures (open aortic operation, endovascular aneurysm repair [EVAR], peripheral artery bypass, amputation, venous reflux operation). A meta-analysis was performed comparing the patients who did not receive VTE prophylaxis and had VTE complications with patients who developed VTE despite receiving prophylaxis. RESULTS: From 3757 uniquely identified articles, 42 publications met the criteria for inclusion in this review (1 for the category of all vascular operations, 5 for open aortic reconstructions, 2 for EVAR, 1 for open aortic surgery or EVAR, 3 for abdominal or bypass surgery, 2 for peripheral bypass surgery, 2 for amputations, 1 for vascular trauma, and 25 for surgical treatment of superficial venous disease). Five studies met the criteria for inclusion in the meta-analysis. The results demonstrated slightly lower relative risk for development of VTE among patients receiving VTE prophylaxis (relative risk, 0.70; 95% confidence interval, 0.26-1.87). After open aortic reconstruction, the risk of VTE is 13% to 18% and is not reduced by VTE prophylaxis. For EVAR patients, the risk of VTE without prophylaxis is 6%. For patients undergoing peripheral bypass surgery and not receiving therapeutic or prophylactic anticoagulation, the risk of VTE is <2%. For patients undergoing amputations, VTE prophylaxis reduces the risk of VTE. For patients undergoing surgical treatment of superficial venous disease, there is an abundance of literature exploring the utility of VTE prophylaxis, but the evidence is conflicting; some studies demonstrated a benefit, whereas others showed no reduction of VTE with prophylaxis. CONCLUSIONS: Overall, there is a paucity of literature that addresses the effectiveness of VTE prophylaxis specifically in the population of vascular surgery patients. Our meta-analysis of the literature does not demonstrate a statistically significant benefit of VTE prophylaxis among the vascular surgery patients evaluated; however, it does suggest a low incidence of VTE among patients who receive VTE prophylaxis. Clinicians should identify the patients at high risk for development of postoperative VTE as the risk-benefit ratio may favor VTE prophylaxis in a selected group of patients. Clinicians should use their judgment and established VTE risk prediction models to assess VTE risk for patients. Vascular surgeons should consider reporting VTE incidence as a secondary outcome in publications.


Subject(s)
Anticoagulants/administration & dosage , Vascular Surgical Procedures/adverse effects , Venous Thromboembolism/prevention & control , Adult , Aged , Anticoagulants/adverse effects , Drug Administration Schedule , Female , Humans , Male , Middle Aged , Protective Factors , Risk Assessment , Risk Factors , Treatment Outcome , Venous Thromboembolism/diagnosis , Venous Thromboembolism/etiology
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