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Duc T Nguyen

Publications and source records attributed to Duc T Nguyen.

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Real-World Experience of Midodrine in Hospital Setting in Pulmonary Arterial Hypertension.

BACKGROUND: Pulmonary arterial hypertension (PAH), a progressive disease, is characterized by increased pulmonary vascular resistance (PVR) and leads to right ventricular failure and premature death. PAH therapies aim to reduce PVR; however, these treatments as vasodilators may also result in reduced systemic vascular resistance and mean arterial pressure (MAP), leading to clinical or symptomatic hypotension. Low MAP can limit the administration of optimal dosage of PAH drugs. Midodrine, an oral alpha-1 adrenergic agonist, as a promising intervention, can potentially increase mean MAP and improve tolerance to PAH therapies. RESEARCH QUESTION: Does the use of midodrine improve MAP and allow for simultaneous uptitration of PAH therapy while hospitalized? STUDY DESIGN AND METHODS: A retrospective analysis of 433 patients treated at Houston Methodist Lung Center was undertaken between January 2005 and September 2022. Of these, 57 patients were prescribed midodrine during their hospital stay. We matched 57 patients 1:1 with propensity score matching between patients with PAH not given midodrine (control patients) based on age, sex, World Health Organization functional class, B-type natriuretic peptide, and 6-minute walk distance. RESULTS: Among hospitalized patients with PAH, those receiving midodrine were more likely to undergo uptitration of their PAH medications compared with those not receiving midodrine (n = 30 vs n = 17, respectively; P < .05). Patients on midodrine during hospitalization received higher doses of epoprostenol (P < .001), treprostinil (P < .05), and selexipag (P < .05). Additionally, no adverse effects attributable to midodrine were reported. INTERPRETATION: This study, to our knowledge the first large-scale analysis of PAH data, investigated the use of midodrine in hospitalized patients with PAH. In this single-center study, we share real-world experience of using midodrine to mitigate systemic hypotension, thereby facilitating the uptitration of PAH-targeted therapies.

B-type natriuretic peptide (BNP)

Direct Oral Anticoagulant Transition Strategies Using Anti-Xa Concentrations Upon Intensive Care Unit Admission.

Background: The increased utilization of oral factor Xa inhibitors (FXaI) has led to a growing interest in the clinical utility of FXaI-specific anti-Xa concentrations. Critically ill populations are at risk of bleeding secondary to FXaI accumulation in the setting of end-organ dysfunction. To mitigate this risk, an FXaI anti-Xa concentration-guided approach to transitioning between oral and parenteral anticoagulation has been explored. Objective: To compare the incidence of bleeding upon intensive care unit (ICU) admission between 2 different FXaI transition strategies: concentration versus non-concentration-guided. Methods: We performed a retrospective chart review of patients admitted between January 2019 and May 2022 with objective evidence of FXaI exposure within 48 hours preceding ICU admission. Patients were excluded if they were admitted to the ICU with a primary diagnosis related to a bleeding event, received a non-FXaI anticoagulant 48 hours preceding ICU admission, remained off anticoagulation during their ICU admission, or underwent surgical procedures. The primary outcome was the incidence of major bleeding within 5 days of ICU admission. Thromboembolic events were evaluated as a secondary endpoint. Results: A total of 433 patients (184 concentration-guided vs 249 non-concentration-guided) were included. There was no difference in major bleeding between groups (2.7% in concentration-guided vs 3.6% in non-concentration-guided; P = 0.79). Thromboembolic complications were similar between groups (1.6% in concentration-guided vs 2.0% in non-concentration-guided; P = 1.00) despite a longer time from last FXaI dose to anticoagulant transition in the concentration-guided group (29.9 hours vs 19.4 hours; P < 0.01). Conclusion and relevance: Use of FXaI concentrations to guide anticoagulation transition in the ICU had no impact on major bleeding events or thromboembolic complications. Further analyses are needed to validate FXaI concentration-guided strategies and solidify anti-Xa cutoffs to create a standardized approach to FXaI transitions in the critically ill patient population.

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