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Catheter Directed Therapy in Intermediate Risk Pulmonary Embolism Patients

Catheter Directed Therapy for Intermediate Risk Pulmonary Embolism Patients Guided by Prediction Model for Impending Shock

Status
UNKNOWN
Phases
Early Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05612854
Enrollment
200
Registered
2022-11-10
Start date
2022-12-30
Completion date
2024-12-30
Last updated
2022-11-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Pulmonary Embolism Subacute Massive

Keywords

catheter directed therapy, intermediate risk pulmonary embolism

Brief summary

Aim of the work: 1. To compare conventional medical therapy versus catheter-directed therapy in intermediate high risk acute pulmonary embolism. 2. To define predictors of progression from intermediate to high-risk in medically-treated patients for ideal timing for intervention.

Detailed description

Based on history, physical examination, surface 12-lead ECG, bed-side echocardiography, patients with a high probability of acute pulmonary embolism are selected and subjected to CT pulmonary angiography to confirm the diagnosis and calculate the pulmonary artery obstruction score. Routine labs are withdrawn, including cardiac troponin.Methods: Detailed TTE will be done with emphasis on the following indicators of RV strain and/or dysfunction: 1. Echocardiography findings that are indicative of RV dysfunction * tricuspid annular plane systolic excursion (TAPSE) * S' Velocity * the McConnell's sign 2. RV dilation 3. interventricular septal flattening. 4. elevated right ventricular pressures 5. plethoric inferior vena cava 6. tricuspid regurgitation 7. Direct visualization of thromboembolic in the RT heart and PA 8. RV stroke volume measured by RVOT VTI. 9. LV stroke volume measured by LVOT VTI Intermediate-high risk patient will be identified (based on the calculated pulmonary embolism severity index, RV dysfunction on TTE and/or CT, cardiac troponin), and then randomized to either receiving conventional medical treatment or catheter-directed interventional therapy if the patient consents. 7\. Catheter directed therapy A. Mechanical embolectomy: Mechanical fragmentation will be done using a 6 F pigtail catheter inserted inside the thrombus guided by the CTPA images. Hydro-mechanical defragmentation (HMD) is one of the CDT modalities for high-risk PE patients, in which rapid pigtail rotation is combined with heparinized saline injection for thrombus fragmentation.(4) B. Suction embolectomy: Suction embolectomy was one of the earliest techniques for transcatheter treatment of PE, and was introduced by Greenfield et al, using a 12-Fr catheter with a cup on its distal end. Suction was applied manually to the catheter hub with a large syringe. (13) The Penumbra Indigo aspiration system (Penumbra Inc., Alameda, CA, USA) that will be used, is an 8-Fr device and its associated tubing, pump, and separator, has the flexibility for placement in segmental branches of the pulmonary arteries. The Indigo aspiration system is indicated for use in the peripheral arterial system and the pulmonary arteries, receiving U.S. Food and Drug Administration 510(k) clearance for PE in December 2019.(14) C. Catheter directed thrombolysis: Catheter-directed thrombolysis allows delivery of the thrombolytic agent directly to the area of highest embolic burden via a catheter. Intermediate-high risk patient will be identified (based on the calculated pulmonary embolism severity index, RV dysfunction on TTE and/or CT, cardiac troponin), and then randomized to either receiving conventional medical treatment or catheter-directed interventional therapy if the patient consents.

Interventions

PROCEDUREMechanical embolectomy: by hydromechanical defragmentation by pigtail

Hydro-mechanical defragmentation (HMD) is one of the CDT modalities for high-risk PE patients, in which rapid pigtail rotation is combined with heparinized saline injection for thrombus fragmentation

DEVICESuction embolectomy by the Penumbra Indigo aspiration system

The Penumbra Indigo aspiration system (Penumbra Inc., Alameda, CA, USA) that will be used, is an 8-Fr device and its associated tubing, pump, and separator, has the flexibility for placement in segmental branches of the pulmonary arteries. 510(k) Number :K160449 FOIA Releasable 510(k) K160449 Device Name:Penumbra System, Penumbra Pump MAX

Sponsors

Assiut University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

Randomized controlled, open-label, parallel-assignment, prospective study

Eligibility

Sex/Gender
ALL
Age
20 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* Acute pulmonary embolism patients (confirmed by CT pulmonary angiography \[CTPA\]) * symptoms started within 15 days of enrollment * intermediate-high risk pulmonary embolism patients , i.e., who have all of the following risk indicators combined :(2) i.Pulmonary Embolism Severity Index (PESI) class III-V or sPESI ≥1, ii.AND RV dysfunction on TTE or CTPA, iii.AND elevated cardiac troponin levels * with none of the following high-risk presentations: cardiac arrest, systolic blood pressure \<90 mmHg, or vasopressors required to achieve a BP ≥90 mmHg despite an adequate filling status, or end-organ hypoperfusion.

Exclusion criteria

* high risk patients who are hemodynamically unstable (cardiogenic shock, SBP \<90 mmHg, or use of intotropic support). * low risk patients with no RV dysfunction. * Patients with history of CTEPH (or previous acute PE) * Patients known to have other pulmonary hypertension, apart from group IV (CTEPH). * Patients with sever kidney injury (eGFR \<30 mg/dl/1.7m2).

Design outcomes

Primary

MeasureTime frameDescription
1.comparison between conventional medical therapy and catheter-directed therapy in intermediate high risk acute pulmonary embolism patientsup to 2 yearscomparison in intermediate high risk acute pulmonary embolism patients between conventional medical therapy and catheter-directed therapy as regarding safety and efficacy of the therapy by clinical assessment of occurrence of major adverse cardiac events.

Secondary

MeasureTime frameDescription
predictors of progression from intermediate to high-risk acute pulmonary embolism patientsup to 2 yearsidentifying predictors for ideal timing for intervention in intermediate risk pulmonary embolism patients who are medically-treated by new echocardiographic parameters (LVOT velocity time integral and RVOT velocity time integral)

Other

MeasureTime frameDescription
Implementation of pulmonary embolism response team at Assiut university hospitalsup to 2 yearsinstitutional reconstruction and communication between different departments (chest, cardiology, radiology and clinical pathology departments) aiming to implement a pulmonary embolism response team with clear structure and operational levels for decision making

Contacts

Primary ContactShrouk K Ali, MSc
shrouk31@aun.edu.eg+0201225134030
Backup ContactAyman Kh Hassan, MD
Aymankhairy11@gmail.com+0201094438055

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026