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CompletedNCT05920889GALLOPUpdated Mar 7, 2025

Glucagon-like Peptide 1 Receptor Agonist in Acute Large Vessel Occlusion Stroke Treated by Reperfusion Therapies

A Phase 2 interventional study of Semaglutide in Stroke, Stroke, Acute and Stroke, Ischemic, sponsored by Chinese University of Hong Kong. Completed at 2 sites in 2 countries. Open to participants aged 18 Years to 100 Years. Per ClinicalTrials.gov, last updated 2025-03-07.

Sponsored by Chinese University of Hong Kong · Phase 2, Interventional, and Treatment

From the registry’s dates

  • Primary completion was Oct 2024, 1 year 11 months ago, and no results have been posted to the registry.
Phase
Phase 2
Study type
Interventional
Enrollment
140
Allocation
Randomized
Ages
18 Years to 100 Years
Sex
All
01

Study summary

Endovascular thrombectomy (EVT) is a highly effective therapy for acute ischemic stroke with large vessel occlusion (LVO). EVT was proven efficacious in selected patients with symptoms onset or last-known-well time of up to 24 hours. With a number-needed-to-treat (NNT) of 2.3-2.8 to achieve functional independence, EVT had become the current state-of-the-art treatment for ischemic stroke with LVO. Nevertheless, more than half of LVO strokes suffered from functional dependence or death despite EVT. Futile EVTs were contributed by peri-procedural malignant brain edema (MBE) and symptomatic intracranial hemorrhage (sICH). Studies suggested that 26.9% of EVTs were complicated by MBE, whereas sICH was present in 6-9% of LVO patients who received EVT. The fundamental pathophysiology of MBE and sICH is blood-brain-barrier (BBB) disruption secondary to ischemia, mechanical and reperfusion injury. These pathological processes can result in increased tissue permeability, excess production of oxygen free radicals and inflammatory response that eventually lead to hemorrhage and edema. Poor collateral circulation, proximal LVOs, intravenous thrombolysis, blood pressure and glucose fluctuation had all been implicated to in MBE and sICH. However, these risk factors were either unmodifiable or not shown to improve EVT outcomes. The preliminary results of a recent randomized trial even suggested harmful effects of intensive blood pressure following EVT. With indications of EVT are expanding to patients with prolonged ischemia and large ischemic cores, enhancing BBB and neuronal tolerance to ischemia and reperfusion therapies may hugely impact on EVT outcomes. Recent animal models have shown that glucagon-like peptide peptide-1 receptor agonists (GLP-1RA) significantly reduced infarct volume and neurological deficits following temporary or permanent middle cerebral artery occlusion. These effects were likely due to the anti-oxidant, anti-inflammatory and anti-apoptotic properties of GLP-1RA that protected BBB integrity and ischemic neurons during induced LVO and/or reperfusion. Investigator hypothesizes that compared to standard reperfusion strategies, administration of GLP-1RA in LVO patients who receive EVT may prevent the development of MBE and sICH, and improve neurological outcomes. In this randomized, open-label pilot study, investigator aims to determine the effect of semaglutide, a GLP-1RA, on the radiological and clinical outcomes in LVO patients undergoing EVT.

Read the detailed description

In this multicenter, randomized, open-label pilot study, investigator aims to recruit 140 patients with LVO strokes in the terminal internal carotid artery (ICA) or proximal middle cerebral artery (MCA) who were eligible for EVT with a last-known-well (LKW) to puncture ≤ 12 hours. Patients will be randomized in a 1:1 ratio to semaglutide or standard therapy. Patients in the semaglutide group will receive the medication on the day of (D0) and 1 week (D7) after EVT. Interval imaging and blood tests will be arranged to ascertain the degree of BBB leakage, final infarct size, inflammation and gene expression pre and post treatment. Investigator shall recruit 40 patients from the Prince of Wales Hospital and 100 patients from Linyi People's Hospital.

Detailed study procedures are as follows:-

  1. LVO stroke patients will have received CTA and perfusion prior to screening.
  2. Informed consent from patient or next of kin will be obtained for eligible patients.
  3. After informed consent, patient will be randomized into semaglutide or standard treatment in a 1:1 ratio by computer-generated codes.
  4. Patients randomized into the semaglutide group will receive 0.5mg subcutaneous injection of the drug before or during EVT, and 7 days after the procedure. i.e. semaglutide group will receive a total of 2 injections.
  5. All study subjects will receive plain CT brain and perfusion D4-7 post EVT to look for MBE, sICH and hyperperfusion. Additional brain imaging may also be arranged as per clinical needs.
  6. All study subjects will receive a standardized stroke protocol MRI D14-21 after EVT for quantification of infarct volume.
  7. NIHSS before and immediately after, D3, D14-21, D90±7 post-EVT will be assessed.
  8. mRS before, D14-21, D90±7 post-EVT will be assessed.
  9. Blood test before and immediately, 3 days and 14 days after EVT (D0pre, D0post, D3, D14-21) will be collected for neurovascular inflammatory markers and transcriptomic analysis.
  10. Capillary blood glucose, blood pressure and pulse will be measured four times daily in accordance to the standardized post-EVT protocol during the first 5 days hospitalization. The frequency of monitoring may increase according to the clinical needs.
  11. The following data will be collected:

    1. Demographic data: date of birth, date of death (if applicable), smoking and drinking status
    2. Medical comorbidities: Hypertension, diabetes mellitus, hyperlipidemia, congestive heart failure, atrial fibrillation, ischemic heart disease, history of ischemic or hemorrhagic stroke, etc.
    3. Co-medications: Anticoagulants (apixaban, dabigatran, edoxaban, rivaroxaban, heparin, warfarin), antiplatelet agents (aspirin, clopidogrel, ticagrelor, cilostazol), lipid-lowering agents (simvastatin, atorvastatin, rosuvastatin, pravastatin, fluvastatin, ezetimibe, gemfibrozil, fenofibrate, erenumab), antihypertensive (angiotensin converting enzyme inhibitors, angiotensin receptor blockers, beta blockers, calcium channel blockers, diuretics, aldosterone antagonists, nitrates, etc.), non-steroidal antiinflammatory agents or cyclo-oxygenase2 inhibitors (indomethacin, ibuprofen, diclofenac, celecoxib, etorixocib), glucose lowering drugs (metformin, gliclazide, glimepiride, empagliflozin, dapagliflozin, insulin).
    4. Routine blood tests including hemoglobin, white cell count, lymphocyte count, neutrophil count, creatinine, alanine transferase, alkaline phosphatase, bilirubin, low-density lipoprotein cholesterol, high-density lipoprotein cholesterol, total cholesterol, triglyceride, fasting glucose, glycated hemoglobin A1c, etc. These blood tests are part of routine clinical care pre- and post-stroke.
    5. Imaging data: ASPECT score, site of occlusion, collateral score, volume of infarct core, penumbra, mismatch volume and mismatch ratio.
    6. Stroke time metrics: LKW-to-hospital, -imaging, -needle, -puncture, -reperfusion time.
    7. EVT outcomes: modified thrombolysis in cerebral infarction (TICI) score.
    8. Occurrence of MBE, asymptomatic or symptomatic ICH, hemorrhagic transformation, subarachnoid hemorrhage (see Endpoint measurement for details).
02

Conditions studied

  • Stroke
  • Stroke, Acute
  • Stroke, Ischemic
  • Brain Diseases
03

In context

Stroke

7,286 studies on the registry are indexed under Stroke; 2,007 are open to participants now.

This study's enrollment of 140 is above the median of 50 across 5,369 interventional studies indexed under Stroke.

Browse Stroke studies →

Lead sponsor

Chinese University of Hong Kong is the lead sponsor of 1,419 studies on the registry; 487 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 100 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • LVO stroke at terminal ICA or proximal M1 eligible for emergency endovascular treatment as per current treatment guideline.
  • LKW-to-puncture time ≤ 12 hours.
  • Age 18 years or greater.
  • National Institute of Health Stroke Scale (NIHSS) ≥10
  • LVO stroke due to thromboembolism or intracranial stenosis (acute or acute on chronic occlusion).
  • Patients who received computer tomographic angiography and perfusion (CTA+P).
  • Pre-stroke (24 hours prior to stroke onset) independent functional status with modified Rankin Scale (mRS) ≤ 2.
  • Consent process completed as per national laws and regulation and the applicable ethics committee requirements.

Exclusion criteria

Exclusion Criteria:

  • ASPECT score ≤ 5.
  • Intracranial hemorrhage on pre-EVT imaging.
  • LVO etiologies other than thromboembolism or intracranial stenosis (acute or acute on chronic total occlusion), e.g. arterial dissection, infective endocarditis on initial diagnostic imaging.Estimated or known body mass index \< 18 kg/m2
  • Estimated or known body mass index \< 18 kg/m2.
  • Pregnancy/Lactation; female, with positive urine or serum beta human chorionic gonadotropin (β-hCG) test, or breastfeeding.
  • Creatinine clearance \< 30mL/min.
  • Severe or fatal comorbid illness, e.g. terminal malignancy.
  • Participation in another clinical trial investigating a drug, medical device, or a medical procedure in the 30 days preceding trial inclusion.
  • History of allergy to GLP-1RA.
  • Family or personal history of multiple endocrine neoplasia, medullary thyroid carcinoma, pancreatic carcinoma, known proliferative diabetic retinopathy.
  • Active sepsis on randomization.
  • Patients with hypoglycaemia on presentation. Defined as capillary or serum glucose level of \<4mmol/L.
  • Patients prone to severe hypoglycaemia, including chronic kidney disease of estimated glomerular filtration rate of 50ml/min/1.73m\^2; also those with chronic liver disease with Child's Pugh score C or above; patients with recurrent unexplained hypoglycemia.
  • Patient already on GLP-1RA prior to screening.
  • Contraindications to iodine-based CT contrast.
05

Study design

Phase
Phase 2
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
140 participants (actual)

Study arms

  • Active comparator
    Semaglutide Group

    Prescribe study drug: Patients randomized into the semaglutide group will receive 0.5mg subcutaneous injection of the drug before or during EVT, and 7 days after the procedure. i.e. semaglutide group will receive a total of 2 injections.

    Drug: Semaglutide

  • No intervention
    Standard of care

    Standard medical therapy

Interventions

  • DrugSemaglutide

    0.5mg subcutaneous injection of the drug before or during EVT, and 7 days after the procedure. i.e. patient will receive a total of 2 injections.

06

What researchers measure

Primary outcomes

  1. Change of Modified Rankin Score

    Change of Modified Rankin Score to measure degree of disability/dependence. Scores 0-2 is considered good outcome, while scores 3-6 is considered poor outcome.

    Time frame: Day 90

  2. Composite Safety Outcome

    Composite of Death, Intracranial Hemorrhage (ICH) and Malignant Brain Edema (MBE)

    Time frame: Day 90

Secondary outcomes

  1. Malignant brain edema (MBE)

    Parenchymal hypodensity of at least 50% of the MCA territory and signs of local brain swelling such as sulcal effacement and compression of the lateral ventricle, and Midline shift of ≥5 mm at the septum pellucidum or pineal gland with obliteration of the basal cisterns.

    Time frame: From Day 0 post treatment, up to 90 Days.

  2. Symptomatic intracranial hemorrhage (sICH)

    Any parenchymal hemorrhage or hemorrhagic transformation temporally related to any worsening in neurological condition.

    Time frame: From Day 0 post treatment, up to 90 Days.

  3. Blood-brain-barrier (BBB) permeability

    Blood-brain-barrier permeability by CT perfusion scan

    Time frame: From Day 0 post treatment, up to 90 Days.

  4. Hemorrhagic transformation and parenchymal hemorrhage

    Hemorrhagic transformation and parenchymal hemorrhage as per Heidelberg Bleeding Classification,

    Time frame: From Day 0 post treatment, up to 90 Days.

  5. Modified Rankin Score (mRS) 0-3

    Modified Rankin Score 0-3 at 90 days

    Time frame: From Day 0 post treatment, up to 90 Days.

  6. Modified Rankin Score (mRS) 0-1

    Modified Rankin Score 0-1 at 90 days

    Time frame: From Day 0 post treatment, up to 90 Days.

  7. Infarct size

    Infarct size (mL) defined by brain magnetic resonance imaging segmentation

    Time frame: Day 14-21

  8. Death

    Mortality at 90 days

    Time frame: Day 90

  9. Ordinal shift in Modified Rankin Score (mRS)

    Shift in mRS at 90 days

    Time frame: Day 90

07

Study locations

2 sites
  • Linyi People's Hospital
    Linyi, Shangdong 276000, China
  • Chinese University of Hong Kong
    Hong Kong, Hong Kong
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Mar 7, 2025, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT05920889
Lead sponsor
Chinese University of Hong Kong
Collaborators
Linyi People's Hospital
Responsible party
Dr. IP Yiu Ming Bonaventure (Assistant Professor, Chinese University of Hong Kong) — Principal investigator
First posted
Jun 27, 2023
Start date
Aug 1, 2023
Primary completion
Oct 25, 2024
Completion
Oct 25, 2024
Last update
Mar 7, 2025

Study contacts

Bonaventure Yiu Ming IP, MB ChB
principal investigator · Chinese University of Hong Kong
Fengyuan CHE, MD,PhD
principal investigator · Linyi People's Hospital, Shandong First Medical University & Shandong Academy of Medical Sciences

Oversight

Data monitoring committee
Yes
FDA-regulated drug
Yes
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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