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Not yet recruitingNCT07471282RECLAIM-TNKUpdated Mar 13, 2026

Reperfusion Completion Via Local Arterial Infusion of Tenecteplase After Incomplete Mechanical Thrombectomy

A Phase 3 interventional study of Tenecteplase (0.0938mg/kg) and Placebo in Stroke, sponsored by Chuansheng Zhao. Not yet recruiting at 1 site in China. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2026-03-13.

Sponsored by Chuansheng Zhao · Phase 3, Interventional, and Treatment

Phase
Phase 3
Study type
Interventional
Enrollment
344
Allocation
Randomized
Ages
18 Years and older
Sex
All
01

Study summary

To evaluate the efficacy and safety of intra-arterial TNK bridging therapy following incomplete recanalization (2b ≤ eTICI \< 3) after mechanical thrombectomy for acute anterior circulation large vessel occlusion.

Read the detailed description

Stroke is a group of diseases characterized by neurological deficits resulting from ischemic or hemorrhagic damage to brain tissue. It has high rates of incidence, disability, and mortality, making it the leading cause of disability and a significant cause of death among residents in China, imposing a heavy disease burden on families and society. According to the "China Stroke Center Report 2020", there are approximately 17.8 million stroke survivors among people aged over 40 in China, with 3.4 million new cases annually. Among these, Acute Ischemic Stroke (AIS) accounts for up to 80%. Current common clinical treatment strategies for AIS include Standard Medical Therapy (SMT), which involves Intravenous Thrombolysis (IVT), and Endovascular Thrombectomy (EVT). Extensive clinical evidence has fully confirmed a significant positive correlation between reperfusion quality and patient prognosis, suggesting that adopting more aggressive strategies to optimize reperfusion may be of great significance.

Incomplete reperfusion may result from various causes, including distal microthrombi occluding the microvasculature, residual occlusion unreachable by mechanical devices during EVT, and the formation of new emboli. As these situations are typically not amenable to mechanical thrombectomy, intra-arterial thrombolytic therapy has emerged as a potential option to further improve reperfusion in ischemic tissue. The CHOICE study was the first international randomized controlled trial (RCT) on EVT bridging with intra-arterial thrombolysis. Its results indicated that the group receiving successful mechanical thrombectomy combined with intra-arterial alteplase had improved neurological outcomes in AIS patients with anterior circulation large vessel occlusion compared to the control group (90-day mRS 0-1, 59% vs. 40.0%, P=0.047), with no significant difference in bleeding risk between the two groups.

Subsequently, several other important related studies were published, including the PEARL study (also using alteplase), the ANGEL-TNK, POST-TNK, and DATE studies (using tenecteplase, TNK), and the POST-UK study (using urokinase). Due to differing patient selection criteria, the results varied. However, a careful comparison reveals that studies whose inclusion criteria comprised patients with eTICI 2b grade (i.e., incomplete recanalization) all yielded positive conclusions, including CHOICE, PEARL, and ANGEL-TNK. More importantly, a subgroup analysis of the ANGEL-TNK study clearly found that in the eTICI 2b group, patients receiving intra-arterial TNK had significantly better clinical outcomes than those in the medical therapy group (90-day mRS 0-1, 42.3% vs. 21.8%, RR=2.08, 95%CI 1.35-3.20, P\<0.001), whereas no significant difference was observed between the two groups in the eTICI 2c/3 group. This suggests that intra-arterial TNK therapy may offer greater benefits in the population failing to achieve complete recanalization.

TNK, a genetically engineered variant of alteplase, features amino acid modifications at three key sites, which significantly prolong its half-life and enhance its fibrin-binding specificity. In recent years, it has emerged as one of the most promising novel thrombolytic agents in the field of stroke thrombolysis. Studies have found that in patients with LVO identified on baseline CTA, TNK thrombolysis achieves significantly higher recanalization rates compared to alteplase, indicating TNK's unique advantage for large vessel occlusion. Therefore, the therapeutic effect of EVT combined with intra-arterial TNK thrombolysis holds great potential for AIS patients with anterior circulation large vessel occlusion, particularly those with incomplete recanalization after EVT, but this requires further investigation and confirmation.

This study aims to evaluate the efficacy and safety of intra-arterial TNK bridging therapy following incomplete recanalization (2b ≤ eTICI \< 3) after mechanical thrombectomy for acute anterior circulation large vessel occlusion, using a prospective, multicenter, randomized, double-blind, placebo-controlled trial design.

02

Conditions studied

  • Stroke

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Keywords

  • Ischemic Stroke with Large Vessel Occlusion
  • Tenecteplase
  • Incomplete Mechanical Thrombectomy
03

In context

Stroke

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

This study's planned enrollment of 344 is above the median of 50 across 5,369 interventional studies indexed under Stroke.

Browse Stroke studies →

Lead sponsor

Chuansheng Zhao is the lead sponsor of 2 studies on the registry; 2 are open to participants now.

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

04

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  1. Age ≥ 18 years;
  2. Time from symptom onset or last known well to randomization within 24 hours;
  3. Clinical diagnosis of acute ischemic stroke caused by acute occlusion of the intracranial anterior circulation large vessels confirmed by CTA/MRA/DSA, including occlusion of the intracranial segment of the internal carotid artery, the M1 or M2 segments of the middle cerebral artery, with or without concomitant occlusion of the ipsilateral extracranial segment of the internal carotid artery;
  4. NIHSS score ≥ 6, and meeting the current guidelines for mechanical thrombectomy;
  5. Anterior circulation large vessel stroke due to occlusion of the intracranial ICA, MCA M1, or M2 segments;
  6. Pre-stroke mRS score ≤ 1;
  7. ASPECTS score ≥ 6;
  8. Post-mechanical thrombectomy status with 2b ≤ eTICI \< 3, and the operator has decided not to attempt further mechanical recanalization of the occluded vessel;
  9. No more than 3 passes with the thrombectomy device;
  10. Signed informed consent obtained from the patient or their legal guardian.

Exclusion criteria

Exclusion Criteria:

  1. Contraindications to intravenous thrombolysis (excluding time-based criteria);
  2. DSA post-thrombectomy indicating dissection of the occluded artery, or intra-procedural flat-panel CT suggesting local hemorrhage or significant contrast extravasation;
  3. Baseline NIHSS score not obtained;
  4. Severe allergy or absolute contraindication to iodinated contrast media;
  5. Systolic blood pressure ≥ 185 mmHg or diastolic blood pressure ≥ 110 mmHg, refractory to antihypertensive medication;
  6. Blood glucose \< 50 mg/dL (2.8 mmol/L) or > 400 mg/dL (22.2 mmol/L);
  7. Platelet count \< 50 × 10⁹/L, or APTT > 40 s, or PT > 15 s;
  8. Known hereditary or acquired hemorrhagic diathesis, coagulation factor deficiency; or current use of oral anticoagulants with INR > 1.7;
  9. Severe renal failure, defined as serum creatinine > 3.0 mg/dL (or 265.2 μmol/L) or glomerular filtration rate [GFR] \< 30 mL/min, or requiring hemodialysis or peritoneal dialysis;
  10. Patient unlikely to complete the 90-day follow-up (e.g., no fixed address, palliative care patient, etc.);
  11. Suspected vasculitis or septic embolism;
  12. Suspected aortic dissection;
  13. Pre-existing neurological or psychiatric disease that would interfere with the assessment of outcomes;
  14. Pregnancy or lactation;
  15. Current participation in another clinical trial that could interfere with this study;
  16. Any other condition deemed by the investigator to make the patient unsuitable for participation or to pose a significant risk to the patient.
05

Study design

Phase
Phase 3
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Quadruple (Participant, Care provider, Investigator, Outcomes assessor)
Enrollment
344 participants (estimated)

Study arms

  • Placebo comparator
    Placebo Group

    Intra-arterial thrombolysis using placebo

    Drug: Placebo

  • Experimental
    Tenecteplase Group

    Intra-arterial thrombolysis using tenecteplase

    Drug: Tenecteplase (0.0938mg/kg)

Interventions

  • DrugTenecteplase (0.0938mg/kg)

    Post-mechanical thrombectomy bridging therapy with intra-arterial tenecteplase (0.0938 mg/kg) for incomplete recanalization (2b ≤ eTICI \< 3).

  • DrugPlacebo

    Post-mechanical thrombectomy bridging "therapy" with intra-arterial placebo (0.0938 mg/kg) for incomplete recanalization (2b ≤ eTICI \< 3).

06

What researchers measure

Primary outcomes

  1. Excellent neurological outcome rate (mRS 0-1) at 90 (±7) days

    Excellent neurological outcome rate (mRS 0-1) at 90 (±7) days

    Time frame: 3 months after randomization

Secondary outcomes

  1. Change in eTICI grade on cerebral angiography

    Change in eTICI grade on cerebral angiography

    Time frame: Immediately after intra-arterial thrombolysis

  2. Proportion of patients with mRS score 0-2 at 90 (±7) days

    Proportion of patients with mRS score 0-2 at 90 (±7) days

    Time frame: 3 months after randomization

  3. Proportion of patients with mRS score 0-3 at 90 (±7) days

    Proportion of patients with mRS score 0-3 at 90 (±7) days

    Time frame: 3 months after randomization

  4. mRS shift analysis at 90 (±7) days

    mRS shift analysis at 90 (±7) days

    Time frame: 3 months after randomization

  5. Proportion of patients with NIHSS score 0-1 or a decrease from baseline of ≥10 points at 48 (±12) hours

    Proportion of patients with NIHSS score 0-1 or a decrease from baseline of ≥10 points at 48 (±12) hours

    Time frame: 48 hours after randomization

  6. Change in NIHSS score at 7 (±1) days

    Change in NIHSS score at 7 (±1) days

    Time frame: 7 days or discharge after randomization

  7. EQ-5D scale score at 90 (±7) days

    EQ-5D scale score at 90 (±7) days

    Time frame: 3 months after randomization

  8. Barthel Index (BI) at 90 (±7) days

    Barthel Index (BI) at 90 (±7) days

    Time frame: 3 months after randomization

Other outcomes

  1. Incidence of symptomatic intracranial hemorrhage within 48 hours (Heidelberg criteria)

    Incidence of symptomatic intracranial hemorrhage within 48 hours (Heidelberg criteria)

    Time frame: 48 hours after randomization

  2. Proportion of patients with an increase from baseline of ≥4 points in NIHSS score at 72 (±12) hours

    Proportion of patients with an increase from baseline of ≥4 points in NIHSS score at 72 (±12) hours

    Time frame: 72 hours after randomization

  3. Mortality rate at 90 (±7) days

    Mortality rate at 90 (±7) days

    Time frame: 3 months after randomization

  4. Incidence of asymptomatic intracranial hemorrhage

    Incidence of asymptomatic intracranial hemorrhage

    Time frame: 0 hour, 24 hours, 48 hours, 7 days or discharge, and 90days after randomization

  5. Incidence of extracranial hemorrhage complications

    Incidence of extracranial hemorrhage complications

    Time frame: 0 hour, 24 hours, 48 hours, 7 days or discharge, and 90days after randomization

  6. Incidence of any other serious adverse events

    Incidence of any other serious adverse events

    Time frame: 0 hour, 24 hours, 48 hours, 7 days or discharge, and 90days after randomization

07

Study locations

1 site
  • The First Affiliated Hospital of China Medical University
    Shenyang, Liaoning 110000, China
08

References and documents

Individual participant data

Plan to share: Undecided

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 13, 2026, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT07471282
Lead sponsor
Chuansheng Zhao
Responsible party
Chuansheng Zhao (Chief of Neurology Department, First Hospital of China Medical University) — Sponsor-investigator
First posted
Mar 13, 2026
Start date
Mar 1, 2026 (estimated)
Primary completion
Dec 31, 2028 (estimated)
Completion
Mar 31, 2029 (estimated)
Last update
Mar 13, 2026

Study contacts

Haoyue Zhu
Contact
zhuhaoyuejason@126.com
+86-15940220919

Oversight

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

Not currently enrolling

This study is not yet recruiting, as verified in Mar 2026. You cannot join it, but the record below documents what was studied.

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