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临床试验/NCT05300997
NCT05300997招募中不适用

Translational Immunodiagnostics in Suspected Stroke (TrImS): A Two-centre, Pragmatic, Prospective, Observational Study

The University of Hong Kong1 个研究点 分布在 1 个国家目标入组 650 人开始时间: 2022年5月1日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
650
试验地点
1
主要终点
Differentiation of stroke from non-stroke in patients with suspected stroke

研究概览

简要总结

In adult patients presenting to emergency departments within 24 hours of symptom onset with suspected acute stroke, we aim:

  1. to identify early brain- and pathology-specific circulating, whole blood, plasma and serum panorOmic biomarkers that enable early acute stroke detection, diagnosis, dynamics, differentiation, monitoring, prediction and prognosis.
  2. to identify early brain- and pathology-specific, panorOmic biomarkers in saliva that enable early acute stroke detection, diagnosis, dynamics, differentiation, monitoring, prediction and prognosis.
  3. to derive biomarker platforms of models for early acute stroke detection, diagnosis, dynamics, differentiation, monitoring, prediction and prognosis
  4. to validate these models in independent and external datasets

详细描述

Introduction

Stroke is a leading cause of overall mortality, morbidity and disability worldwide. In 2010 it was the second leading cause of death whilst in 2019 it ranked third overall for disability adjusted life years (DALYs) and second for those aged 50 years and over. Acute ischaemic stroke (AIS) is a leading cause of mortality and morbidity in the USA affecting over 800 000 adults each year. In Hong Kong it is the fourth leading cause of death. It is frequently preceded by a transient ischaemic attack (TIA) which is a harbinger for future cerebral ischaemic events with a 20% risk of stroke within 90 days.

Stroke is associated with ischaemic, inflammatory, haemorrhagic and atherosclerotic processes linked to disruption of the blood brain barrier and increased blood borne proteins and nucleic acids. It is estimated that 'the average duration of non-lacunar stroke evolution is 10 hours (range 6 to 18 hours), and the average number of neurones in the human forebrain is 22 billion. In patients experiencing a typical large vessel AIS, 120 million neurones, 830 billion synapses and 714 km (447 miles) of myelinated fibres are lost each hour. In each minute, 1.9 million neurones, 14 billion synapses, and 12 km (7.5 miles) of myelinated fibres are destroyed. Compared with the normal rate of neurone loss in brain aging, the ischaemic brain ages 3.6 years each hour without treatment'. There is also evidence of such injury in the circulation within minutes to hours of major trauma including head injury.

The timely diagnosis of stroke and its aetiological classification into stroke-types is important as early appropriate intervention results in vastly improved outcomes. Firstly, determining the cause of the stroke affects which treatment is immediately prescribed. For example, early thrombolysis is indicated for AIS but contraindicated for haemorrhagic stroke (HS). A diagnosis of AIS within 4.5 hours of stroke onset followed by timely thrombolytic intervention improves stroke outcome. Anticoagulant and antiplatelet therapy is indicated for cardioembolic stroke or TIA but contraindicated for atherogenic strokes. In the case of the latter, antiplatelets are recommended. Large vessel occlusion is better treated by surgery than conservatively. Delays in diagnosis and early intervention count as avoidable DALYs, morbidity, healthcare expenditure and early mortality.

In the developed world, stroke is suspected and detected by clinical history and examination and confirmed diagnostically by cerebrovascular imaging either by CT and/or MRI. Whilst neuroimaging presents the current best standard for stroke identification and classification it is far from optimal. Neuroimaging provides only gross estimates of neurovascular damage, fails to identify the cause (cryptogenic stroke) in a significant 5 - 15% cases, and provides little information on cellular and molecular pathophysiology. This in turn delays early treatment and limits the search for potential agents for stroke prevention and recovery. Further, the absence of an objective method for determining stroke onset, for example in patients who wake with a suspected stroke, results in 80% of patients with AIS not receiving thrombolysis. Therefore, there is a need to understand the dynamic pathophysiology of stroke at an early stage.

研究设计

研究类型
Observational
观察模型
Case Control
时间视角
Prospective

入排标准

年龄范围
18 Years 至 100 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Patients eligible for enrolment include:
  • Adults ≥18 years of age.
  • Suspected acute stroke. Defined as either FAST-positive, or LAPSS-positive or ROSIER>0
  • Within 24 hours of symptom onset.
  • Informed consent.
  • Control subjects will be drawn from two groups:
  • Non-neurologic patients who are matched with TIA and stroke cases (AIS, HS) for age, race, gender and smoking plus one or more of the following vascular risk factors: diabetes, hypertension, atrial fibrillation, hyperlipidaemia.
  • Relatives or accompanying friends.
  • Note that we will include and collect samples from the following cases if they present as suspected stroke and are recruited <24 hours from symptom onset.
  • Any central nervous system infection, i.e. meningitis or encephalitis in the past 30 days
  • Any form of head trauma, stroke or intracranial haemorrhage in the past 30 days
  • Known primary or metastatic cancer involving the brain
  • Active cancer is defined as a diagnosis of cancer, within 6 months before enrollment, any treatment for cancer within the previous 6 months, or recurrent or metastatic cancer.
  • Autoimmune diseases: such as lupus, rheumatoid arthritis, Crohn's disease, ulcerative colitis
  • Active infectious diseases (e.g. HIV/AIDS, hepatitis C)
  • Major surgery within three months prior to the index event

排除标准

  • Clear onset of acute symptoms >24 hours.

结局指标

主要结局

Differentiation of stroke from non-stroke in patients with suspected stroke

时间窗: Up to 24 hours

Stroke is defined as either a) the presence of intracerebral haemorrhage with imaging; or b) intracerebral ischaemia with imaging; or c) clinical features of stroke in the absence of positive imaging persisting after 24 hours (cryptogenic stroke). Cryptogenic stroke is defined according to TOAST as stroke not caused by large artery atherosclerosis, cardioembolism, small vessel occlusion and stroke of other aetiology. Non-stroke includes TIA and stroke mimics. TIA is defined as the resolution of stroke-like symptoms within 24 hours of onset and the absence of acute cerebral abnormalities on CT/MRI. Stroke mimics are defined as diseases caused by neurologic symptoms that resemble a stroke. For example, seizure, complex migraines, demyelinating disease, meningitis, glucose level variations and metabolic disorders (hypoglycemia), tumors, non-cerebrovascular diseases such as epilepsy, and dementia.

次要结局

  • Differentiation of early stroke onset (<4.5 hours) from late stroke onset (>4.5 hours)(Up to 24 hours)
  • Differentiation of AIS-LVAD from AIS-SVD from AIS-CE in patients with suspected acute stroke(Up to 24 hours)
  • Differentiation of Transient Ischaemic Attack (TIA) from Transient non-neurological events (TNE) in patients with suspected acute stroke(Up to 24 hours)
  • Differentiation of stroke of known origin (AIS/HS) from cryptogenic stroke in patients with suspected acute stroke(Up to 24 hours)
  • Differentiation of acute ischaemic stroke(AIS) from haemorrhagic stroke(HS) in patients with suspected acute stroke before and after imaging(Up to 24 hours)
  • Mortality(Up to 30-days)
  • Post-stroke Rankin score(Up to 90-days)
  • Post-stroke QALY score(Up to 1 year)
  • Development of point-of-care biomarker platforms for classifying patients presenting with suspected acute stroke(Up to 90-days)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Prof. Timothy Hudson RAINER

Professor of Emergency Medicine

The University of Hong Kong

研究点 (1)

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