[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100629175":3},{"organization":4,"armGroups":7,"interventions":20,"overallOfficials":32,"centralContacts":36,"locations":45,"responsibleParty":60,"collaborators":26,"id":63,"slug":64,"hasResults":65,"nctId":66,"briefTitle":67,"officialTitle":68,"acronym":69,"eligibilityCriteria":70,"healthyVolunteers":65,"sex":71,"minAge":72,"maxAge":73,"enrollmentInfo":74,"targetDuration":26,"studyType":77,"phases":78,"briefSummary":80,"conditions":81,"keywords":83,"overallStatus":90,"whyStopped":26,"lastUpdateSubmitDate":91,"lastUpdatePostDateStruct":92,"startDateStruct":95,"completionDateStruct":97,"leadSponsor":99,"locationsCount":100},{"fullName":5,"class":6},"Beijing Tiantan Hospital","OTHER",[8,14],{"label":9,"type":10,"description":11,"interventionNames":12},"Standard medical treatment group","SHAM_COMPARATOR","The standard medical treatment for this group of patients will be provided according to the optimal care standards outlined by the American Heart Association (AHA) for the management of intracerebral hemorrhage.",[13],"Drug: Standard medical treatment",{"label":15,"type":16,"description":17,"interventionNames":18},"NALICE-TNK group","EXPERIMENTAL","This intervention involves neuronavigation-assisted stereotactic minimally invasive puncture for acute spontaneous lobar intracerebral hemorrhage (NALICE) combined with tenecteplase (TNK) . NALICE enhances catheter placement precision, reducing complications and improving hematoma evacuation and neurological outcomes. TNK, a third-generation thrombolytic, offers advantages over alteplase (rt-PA) , including a longer half-life for rapid bolus administration and effective thrombolytic effects to dissolve clots and promote hematoma clearance.",[19],"Procedure: Neuronavigation-assisted Stereotactic Minimally Invasive Puncture Combined with Tenecteplase",[21,27],{"type":22,"name":23,"description":24,"armGroupLabels":25,"otherNames":26},"PROCEDURE","Neuronavigation-assisted Stereotactic Minimally Invasive Puncture Combined with Tenecteplase","Neuronavigation-assisted stereotactic minimally invasive puncture will enhances catheter placement precision, reducing complications and improving hematoma evacuation and neurological outcomes. TNK, a third-generation thrombolytic will offers advantages over alteplase (rt-PA), including a longer half-life for rapid bolus administration and effective thrombolytic effects to dissolve clots and promote hematoma clearance.",[15],null,{"type":28,"name":29,"description":30,"armGroupLabels":31,"otherNames":26},"DRUG","Standard medical treatment","The standard medical treatment for this group of patients will be provided according to the optimal care standards defined by the American Heart Association (AHA) guidelines for intracerebral hemorrhage management",[9],[33],{"name":34,"affiliation":5,"role":35},"Yong Cao","PRINCIPAL_INVESTIGATOR",[37,41],{"name":34,"role":38,"phone":39,"phoneExt":26,"email":40},"CONTACT","+86 13601362306","caoyong@bjtth.org",{"name":42,"role":38,"phone":43,"phoneExt":26,"email":44},"Jinyi Tang","+8613219378078","strive0225@163.com",[46],{"facility":47,"status":26,"city":48,"state":26,"zip":26,"country":49,"countryCode":50,"cosmosGeoPoint":51,"geoPoint":56,"contacts":57},"Beijing Tiantan Hospital, Beijing, China 100000","Beijing","China","CN",{"type":52,"coordinates":53},"Point",[54,55],116.39723,39.9075,{"lat":55,"lon":54},[58],{"name":42,"role":38,"phone":59,"phoneExt":26,"email":44},"+86 13219378078",{"type":35,"investigatorFullName":61,"investigatorTitle":62,"investigatorAffiliation":5,"oldNameTitle":26,"oldOrganization":26},"Dr. Yong Cao","Professor","100629175","phase-3-neuronavigation-assisted-stereotactic-minimally-invasive-puncture-with-tenecteplase-for-acute-lobar-intracerebral-hemorrhage-100629175",false,"NCT07471256","Neuronavigation-assisted Stereotactic Minimally Invasive Puncture With Tenecteplase for Acute Lobar Intracerebral Hemorrhage","Neuronavigation-assisted Stereotactic Minimally Invasive Puncture Combined With Tenecteplase for the Treatment of Acute Spontaneous Lobar Intracerebral Hemorrhage(NALICE-TNK)： a Randomized, Outcome-blinded, Multi-center Trial","NALICE-TNK","Inclusion Criteria:\n\n1. Age ≥18 years and \\\u003C80 years\n2. Symptoms must have manifested within 24 hours prior to the diagnostic CT (dCT) scan. Patients with indeterminate symptom onset are excluded; for those who awoke with symptoms, the last known well time is used.\n3. Acute spontaneous lobar intracerebral hemorrhage (ICH) occurring in the frontal lobe, parietal lobe, temporal lobe, or occipital lobe, with a volume between 30-50 mL, measured at the site using the ABC\u002F2 method with radiographic imaging (CT, etc.).\n4. Glasgow Coma Scale (GCS) score of 5-14.\n5. Stability CT scan done at least 6 hours after diagnostic CT showing clot stability (growth\\\u003C5 mL as measured by ABC\u002F2 method).\n6. Randomization should occur within 6 to 24 hours after the diagnostic CT.\n7. Systolic blood pressure (SBP) less than 180 mmHg maintained for a duration of six hours, documented proximate to the randomization time point.\n8. Historical modified Rankin (mRS) score of 0 or 1.\n\nExclusion Criteria:\n\n1. Hemorrhage in the basal ganglia, thalamus, or subtentorial region, including posterior fossa and cerebellar hemorrhage.\n2. Stability CT scan done at least 6 hours after diagnostic CT showing clot instability (growth ≥5 mL as measured by ABC\u002F2 method).\n3. Intraventricular hemorrhage necessitating intervention to address mass effect or midline shift attributable to trapped ventricle syndrome secondary to intraventricular hemorrhage (IVH)-related casting.\n4. Hemorrhage attributable to other cerebrovascular pathologies, including but not limited to ruptured aneurysm, arteriovenous malformation (AVM), vascular anomalies, moyamoya disease, hemorrhagic transformation of an ischemic infarct, or recurrence of a recent hemorrhage within the past year, as diagnosed through radiographic imaging.\n5. Patients presenting with an unstable intracranial mass or progressive intracranial compartment syndrome.\n6. National Institutes of Health Stroke Scale (NIHSS) score ≤ 5.\n7. Presence of puncture contraindications.\n8. Irreversible impairment of brainstem function, characterized by bilateral fixed and dilated pupils, extensor motor posturing, and a Glasgow Coma Scale (GCS) score of ≤ 4.\n9. Indications for craniotomy in patients include: 1) progressive impairment of consciousness; 2) presence of brain herniation, with signs related to cerebellar tonsil herniation or temporal lobe gyrus herniatio.\n10. CT evidence suggesting a high risk of rebleeding, such as spot sign.\n11. Platelet count \\\u003C100,000\u002FmL; INR \\>1.4.\n12. Any irreversible coagulation disorders (e.g., hemophilia, von Willebrand disease, use of anticoagulants such as warfarin) or known clotting disorders (e.g., hypercoagulable states).\n13. Inability to maintain INR ≤1.4 using short-acting and long-acting procoagulants (e.g., recombinant human coagulation factor VIIa, fresh frozen plasma, vitamin K, etc.).\n14. Subjects necessitating long-term anticoagulation therapy are excluded from participation. Reversal of anticoagulation is permissible for medically stable patients who can feasibly tolerate the short-term risks associated with reversal. Patients must not require coumadin (warfarin) or other anticoagulants during the initial 8-week period.\n15. Prior to the onset of symptoms, anticoagulants such as dabigatran, apixaban, or rivaroxaban, as well as treatments like tirofiban, ticagrelor, cilostazol, or clopidogrel, were used.\n16. Internal bleeding involving the retroperitoneal, gastrointestinal, or genitourinary system, or respiratory tract bleeding.\n17. Superficial or surface bleeding, observed mainly at vascular puncture and access sites (e.g., venous cutdowns, arterial punctures, etc.) or site of recent surgical intervention.\n18. Positive urine or serum pregnancy test in pre-menopausal female subjects without a documented history of surgical sterilization.\n19. Allergy\u002Fsensitivity to TNK.\n20. Prior enrollment in the study.\n21. Engagement in a concurrent interventional clinical investigation or trial. Patients enrolled in observational, natural history, or epidemiological studies that do not involve any form of intervention remain eligible.\n22. Not expected to survive until the day 180 visit due to co-morbidities, or having DNR\u002FDNI status (Do-Not-Resuscitate and Do-Not-Intubate) prior to randomization.\n23. The presence of any concurrent serious illness that could confound outcome assessments, including but not limited to hepatic, renal, gastroenterologic, respiratory, cardiovascular, endocrinologic, immunologic, or hematologic disorders.\n24. Patients with mechanical heart valves are excluded. The presence of bioprosthetic valve (s) is permissible.\n25. Known risk for embolization, including history of left heart thrombus, mitral stenosis with atrial fibrillation, acute pericarditis, or subacute bacterial endocarditis. Atrial fibrillation without mitral stenosis is permitted.\n26. Any other condition that, in the investigator's judgment, would present a significant risk to the subject if the investigational therapy were to be initiated.\n27. Active drug or alcohol use or dependence that, in the opinion of the site investigator, would interfere with adherence to study requirements.\n28. Patients deemed by the investigator to have unstable conditions that may benefit from other treatments.\n29. Patients requesting conservative treatment or standard craniotomy microsurgery treatment.\n30. The subject or their legal guardian\u002Frepresentative demonstrates an inability or lack of willingness to provide written informed consent.","ALL","18 Years","80 Years",{"count":75,"type":76},636,"ESTIMATED","INTERVENTIONAL",[79],"PHASE3","Introduction: Minimally invasive puncture surgery with thrombolysis is effective for hypertensive intracerebral hemorrhage, but its effect on neurological recovery remains uncertain. The use of neuronavigation-assisted stereotactic technology can significantly improve the precision of catheter placement, while tenecteplase (TNK), a third-generation thrombolytic with high fibrin specificity and superior activity against platelet-rich clots. Nonetheless, the efficacy and safety of combining neuronavigation-assisted stereotactic minimally invasive puncture (NALCIE) with TNK for reducing disability and mortality in acute spontaneous lobar intracerebral hemorrhage have yet to be established.\n\nAim: To present the scientific rationale and study design of the neuronavigation-assisted stereotactic minimally invasive puncture combined with tenecteplase (NALICE-TNK) trial for the treatment of acute spontaneous lobar intracerebral hemorrhage.\n\nDesign: NALICE-TNK is a multicenter, randomized, open-label, assessor-blinded, clinical trial enrolling 636 patients with acute lobar intracerebral hemorrhage and hematoma volumes of 30-50 mL. The trial aims to assess the efficacy and safety of neuronavigation-assisted stereotactic minimally invasive puncture (MIPS) combined with tenecteplase (TNK), administered every 24 hours at a dose of 0.009 mg per mL of hematoma volume, versus standard medical care. All participants will undergo standardized 180-day follow-up.\n\nStudy outcomes: The primary efficacy endpoint is functional ambulation (a score of 0 to 3 on the modified Rankin scale; range, 0 to 6, with higher scores indicating more severe disability) at 180 days. The primary safety endpoint is all-cause mortality at 30 days.",[82],"Intracerebral Hemorrhage Lobar",[84,85,86,87,88,89],"Neuronavigation-assisted Stereotactic","Lobar intracerebral hemorrhage","Minimally invasive puncture","Tenecteplase (TNK)","Multicenter randomized trial","Hematoma evacuation","NOT_YET_RECRUITING","2026-03-22",{"date":93,"type":94},"2026-03-25","ACTUAL",{"date":96,"type":76},"2026-03-31",{"date":98,"type":76},"2028-12-31",{"name":5,"class":6},1]