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TCAR Cerebral Protection And MicroNET-Covered Stent To Reduce Strokes

Carotid Artery Revascularization Using TransCarotid flOw Reversal Cerebral Protection And CGUARD MicroNET-Covered Embolic Prevention Stent System to Reduce Strokes in Patients With Symptoms or Signs of Cerebral Ischemia: TOP-GUARD Study

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04547387
Acronym
TOP-GUARD
Enrollment
50
Registered
2020-09-14
Start date
2020-05-10
Completion date
2021-04-30
Last updated
2021-01-06

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

Conditions

Carotid Artery Diseases

Brief summary

Prospective, single center clinical study in consecutive patients with symptoms or signs of carotid stenosis related ischemic cerebral injury undergoing carotid revascularization in primary and secondary stroke prevention. MicroNET-covered stent is implanted using direct carotid artery access and temporary flow reversal to combine optimal intraprocedural cerebral protection and optimal plaque exclusion.

Detailed description

Prospective, single-center clinical study in consecutive patients undergoing carotid revascularization with MicroNET-covered stent implanted through direct carotid artery access with temporary, intraprocedural flow reversal neuroprotection to provide primary and secondary stroke prevention. It is an open-label, non-randomized single-arm study supported by the grant from Jagiellonian University Medical college (K/ZDS/007819). Stroke is a major health problem affecting individual patients and their families and entire societies with death and disability impact (fundamental disability cause in Poland, Europe, and the USA). Atherosclerotic carotid artery stenosis plays an important part in a stroke etiology through embolic and/or hemodynamic mechanism). Endovascular treatment with first-generation carotid stents is inherently related to plaque and thrombus prolapse through stent struts, as confirmed with the intravascular imaging (IVUS and OCT), and monitoring of cerebral embolism by DW-MRI. Plaque prolapse related embolism may occur after neuroprotection device removal. Postprocedural plaque-prolapse related ischemic events are responsible for 40-60% complications up to 30 days, as indicated by 30-day results of large clinical trials (CAPTURE, CREST, or ICSS). A successful attempt to address this problem has been an introduction and routine use of MicroNET-covered stent. The MicroNET attached to the metallic stent prevents intraluminal plaque prolapse. MRI imaging indicated a significant reduction of intraprocedural embolism and near-elimination of post-procedural brain embolism by CGuard application. Clinical research and meta-analysis of studies confirmed the safety and efficacy of the stent. Consistent results were demonstrated in registries such as PARADIGM. Another critical approach in increasing the safety of the endovascular route of carotid revascularization is development and increased clinical uptake of minimally invasive endovascular strategies is the direct common carotid artery access for stenting procedures. This way, one can avoid femoral cannulation and navigation through the aorta and aortic arch branches. Trans-Carotid Arterial Revascularization (TCAR) offers a neuroprotection mechanism by a temporary reversal of the cerebral flow similar to Mo.Ma Ultra or GORE Flow Reversal systems, but without limitations of femoral access and aortic arch cannulation. TCAR system was CE marked in 2014, and more than 20 000 TCAR procedures were performed worldwide. A recent analysis by Yee et al. demonstrated that TCAR carotid stenting procedures are equivalent to surgical endarterectomy regarding safety and efficacy, but with lower invasiveness, avoiding the aortic arch (and its cannulation-related cerebral embolism) and shortened procedure time. According to published studies and our own experience, proximal neuroprotection, and in particular, the one achieved through direct carotid artery access, minimizes cerebral (micro)embolization risk. Our prospective TOP-GUARD study aims to evaluate early-, mid- and longterm outcome data (up to 5 years) on the results of carotid revascularization combining two systems that are currently considered safest: temporary cerebral flow-reversal during stent introduction via direct carotid artery access and MicroNET-covered stent implantation. Both systems are CE-marked (from 2014), have been successfully used in our center, and will follow their on-label indications. The TCAR system from SilkRoad Medical (EnRoute) is the preferred method to obtain flow reversal for transcervical CAS in the study. However, due to interruption of the EnRoute system supplies (COVID19, SARS-CoV-2 Pandemic), routinely available sheaths, catheters, and blood filters may be used according to literature to assemble the flow reversal circuit, enabling continuation of the study as per the Ethical Committee updated approval. Consecutive patients with symptoms or signs of cerebral ischemia (ie. patients with an increased risk of complications when conventional carotid stents and neuroprotection systems are used) will undergo NeuroVascular Team (neurologist, interventionalist, and vascular surgeon) evaluation for their eligibility. They will be treated according to the center standard of care, including necessary peri- and postprocedural medication. MRI cerebral imaging will be performed at baseline, 24-48 hours post-procedurally and at 90 days in 50% of study participants.

Interventions

DEVICETrans-carotid access revascularization with MicroNET covered stent implantation

Implantation of the micronet covered self-expanding carotid stent during temporary cerebral flow reversal achieved with direct common carotid artery puncture

Sponsors

John Paul II Hospital, Krakow
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

General Inclusion Criteria: * Consecutive adult patients with clinical symptoms and/or signs (on cerebral imaging) of of carotid stenosis-related cerebral ischemic injury eligible for TCAR carotid revascularization according to NeuroVascular Team evaluation and local standards * Symptomatic and asymptomatic carotid artery stenosis with ipsilateral ischemic lesions in brain imaging (CT or MRI) * Informed written consent * Declared compliance and consent to adhere to scheduled follow up and routine long term follow up Angiographic Inclusion Criteria: * De novo or neo-atherosclerotic carotid artery lesion * NASCET criteria ≥50% carotid artery stenosis in patients with ipsilateral TIA, stroke or amaurosis fugax within last 6 months * NASCET criteria ≥70-80% carotid artery stenosis in asymptomatic patients especially with ipsilateral ischemic lesions in brain imaging (CT or MRI) General

Exclusion criteria

* Lack of technical feasibility or logistic opportunity to perform procedure (device availability) * Life expectancy less than 1 year * Renal insufficiency with creatinine \>3mg/dL * Myocardial infarction within last 72 hours before procedure * Pregnant women * Coagulopathies * Allergy to contrast media not amenable to pharmacotherapy Angiographic

Design outcomes

Primary

MeasureTime frameDescription
Immediate procedural success rate48 hours or hospital discharge, whatever comes firstCombined endpoint of TECHNICAL SUCCESS (insertion and removal of the embolic protection device, successful stent delivery, implantation and delivery system retrieval, with residual stenosis ≤30%) AND CLINICAL SUCCESS (freedom from MACNE (death, stroke, myocardial infarction) up to 48 hrs or hospital discharge)

Secondary

MeasureTime frameDescription
Freedom from MACNE up to 90 days90 days postproceduralFreedom from MACNE (death, ipsi- and contralateral stroke, myocardial infarction)
Occurence of new, postprocedural ipsilateral DW-MRI ischemic lesions48 hours post procedureOccurence of new, postprocedural ipsilateral DW-MRI ischemic lesions (evaluated in 50% of eligible study population)
Rate of complete stent expansion and appositionDuring procedureComplete stent expansion and apposition on IVUS (if performed) in absence of plaque prolapse
Rate of ipsilateral stroke30 days to 1 year post procedureRate of ipsilateral stroke
Freedom from MACNE up to 30 days30 days postproceduralFreedom from MACNE (death, ipsi- and contralateral stroke, myocardial infarction)
Stroke free survivalUp to 5 years post procedureStroke free survival
Ipsilateral stroke free survivalUp to 5 years post procedureIpsilateral stroke free survival
Rate of target vessel restenosis requiring treatmentUp to 5 years post procedureRate of target vessel restenosis requiring treatment
Ultrasound measured Peak Systolic Velocity in target artery48 hours post procedureUltrasound measured Peak Systolic Velocity in target artery
Rate of any strokeUp to 5 years post procedureRate of any stroke

Countries

Poland

Contacts

Primary ContactPiotr Musialek, MD, DPhil
pmusialek@szpitaljp2.krakow.pl+48126142287

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 6, 2026