Tessa Jowell BRAIN MATRIX - Platform Study
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: Matched Tumour and Blood Sample - Research Pathway, Matched Tumour and Blood Sample - NHS GMS pathway.
- Кому может быть актуально
- Состояния в реестре: Glioma. Базовые параметры: от 16 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Великобритания
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
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Официальное название
A British Feasibility Study of Molecular Stratification and Targeted Therapy to Optimize the Clinical Management of Patients With Glioma by Enhancing Clinical Outcomes, Reducing Avoidable Toxicity, Improving Management of Post-operative Residual & Recurrent Disease and Improving Survivorship
Обзор
The main aim of the Tessa Jowell BRAIN MATRIX - Platform Study is to more precisely determine the exact type of tumour patients have by developing the essential infrastructure to provide rapid and accurate molecular diagnosis. A large network of clinical hubs across the United Kingdom, with expertise in managing patients with brain tumours, will be developed. Once established this infrastructure will facilitate the rapid introduction of clinical trials testing targeted therapies tailored to the genetic changes of an individual's tumour.
Подробное описание
Gliomas, a type of brain tumour, are the most common primary tumour of the central nervous system (CNS) and in 2016 there were 5250 deaths from brain tumours in the UK. However, brain tumours are a challenging disease to treat. The tumour's location within the brain and its tendency to grow into nearby brain tissue often make it very difficult to remove the tumour completely with surgery. There is also difficulty in delivering drugs in adequate amounts to the tumour due to the natural defences of the brain.
Brain tumours arise due to changes in the DNA and other molecules in cells of the brain. Different types of gliomas can have different changes and these can be used to determine a precise 'molecular diagnosis'. The ultimate goal for the Tessa Jowell BRAIN MATRIX is to learn how to use these molecular changes to more precisely determine what exact type of tumour patients have, and to identify, decide and test whether specific 'targeted' treatments could improve the survival and/or quality of life of patients with brain tumours.
Tessa Jowell BRAIN MATRIX is a programme of work, the principal purpose of which is to improve the knowledge of, and treatment for, glioma. The programme will include a Platform Study and subsequent interventional clinical trials. The Tessa Jowell BRAIN MATRIX Platform Study forms the backbone of this programme. In the Platform Study, the aim is to develop the infrastructure to provide rapid and accurate molecular diagnosis and the infrastructure to deliver clinical trials of new therapies in the future, thereby improving clinical outcomes in brain tumours.
The researchers aim to recruit 1,000 patients to the study. As gliomas occur at all ages and their specific subtype is hard to predict pre-operatively, the patient population eligible for the study is broad. A large network of clinical hubs across the UK, with expertise in managing patients with brain tumours, will be developed. Once established this infrastructure will facilitate the rapid introduction of clinical trials testing targeted therapies tailored to the genetic changes of an individual's tumour.
Eligible patients will either have had, or be about to have, surgery for their tumour. As part of this study, tumour removed during the operation will be analysed to look for specific molecular changes. As with normal standard care, the tumour will be analysed by a local pathologist. A small part will be sent for review by experts and advanced molecular analysis will be undertaken to get a detailed understanding of the DNA/molecular changes within the patient's tumour. These results will be fed back to the patient's treating doctor. It is intended that this will occur within 28 days; however, it may be longer while the study becomes fully operational.
If samples are available from a patient's previous surgery to their tumour, these may also be analysed. Similarly, if available, other relevant samples such as cerebrospinal fluid, collected as part of their care, may also be analysed. In addition, as technologies and analyses improve the understanding of brain tumours, the researchers may find important results at a later date. These will be fed back to the patient's doctor. Patients will also be asked to give a blood sample, which will also be analysed to look at the molecular features, including of their DNA. This is required to identify what 'new' changes have occurred in the patient's tumour. Following surgery, patients will continue with other treatment(s) as directed by their doctor.
Treatment generally involves radiotherapy and chemotherapy. As is standard practice, patients will be closely monitored for signs of disease progression and the effects of the treatment given. As part of this study, information on patients' treatments and disease will be collected.
Images from brain scans patients undergo, along with relevant clinical information, will also be sent to and stored by the University of Edinburgh, and where appropriate, undergo expert review by a panel of radiologists with expertise in brain tumours. If patients have further surgery, some of the tissue removed may also be analysed.
Вмешательства
- Другое Matched Tumour and Blood Sample - Research Pathway
For patient's undergoing surgery fresh tissue will be collected from the initial surgery and frozen until shipment to the Oxford BRAIN MATRIX Lab. Matched blood sample for germline DNA will be taken post-Platform Study entry. For patients with progression with available tumour samples from previous tumour surgery, blood will be collected and sent to Oxford along with their tumour samples. Samples will be shipped together to Oxford for molecular analysis (Whole Genome Sequencing (WGS) and EPIC a - Другое Matched Tumour and Blood Sample - NHS GMS pathway
Tessa Jowell BRAIN MATRIX centres in England can submit matched tissue and blood samples for Whole Genome Sequencing through the standard of care NHS Genomic Medicine Service pathway via their Genomic Laboratory Hub. For those from Devolved Nations, samples must go to the Oxford BRAIN MATRIX Laboratory who can facilitate the processing of samples through an alternative NHS GMS GLH or via the research pathway.
Первичные конечные точки
- Time (from biopsy) to integrated histological-molecular diagnosis using standard-of-care NHS practice [Срок оценки: 28 days]
- Time (from biopsy) to WGS report to the treating clinician using NHS Genomic Medicine Service [Срок оценки: 28]
Вторичные конечные точки (12)
- Time to completion of each node of tissue and imaging pathway [Срок оценки: To be achieved within a timescale of up to 5 years]
- Tumour and biological sample(s) quality control status [Срок оценки: To be achieved within a timescale of up to 5 years]
- Imaging quality control status [Срок оценки: To be achieved within a timescale of up to 5 years]
- Inter-rater agreement of Response Assessment in Neuro-Oncology (RANO) assessments [Срок оценки: To be achieved within a timescale of up to 5 years]
- Extent of surgical resection [Срок оценки: To be achieved within a timescale of up to 5 years]
- Overall survival time [Срок оценки: To be achieved within a timescale of up to 5 years]
- Intracranial progression-free survival time [Срок оценки: To be achieved within a timescale of up to 5 years]
- Quality of Life (QoL) scores [Срок оценки: To be achieved within a timescale of up to 5 years]
- Type of interventions received [Срок оценки: To be achieved within a timescale of up to 5 years]
- Type of complications from treatments (standard of care) received. [Срок оценки: To be achieved within a timescale of up to 5 years]
- Concordance of diagnoses [Срок оценки: To be achieved within a timescale of up to 5 years]
- Samples and images centrally stored [Срок оценки: To be achieved within a timescale of up to 5 years]
Критерии участия
Критерии включения
- Newly diagnosed suspected WHO Grade 2-4 glioma, (as evidenced radiologically) AND suitable for a diagnostic or therapeutic surgical procedure resulting in a tumour sample matched to a blood sample.
- Patients with progression with known WHO Grade 2-4 glioma (those with available frozen tumour will be prioritised for detailed genomic analysis).
- Valid written informed consent for the study.
Критерии исключения
- Primary spinal cord tumours
- Active treatment of other malignancy
- Contraindication to MRI
- Patients without standard of care imaging available
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Модель наблюдения
- Когортное
Центры проведения
Великобритания · 14 центров
- Queen Elizabeth Hospital Birmingham, University Hospitals Birmingham NHS Foundation Trust — Birmingham
- Addenbrooke's Hospital, Cambridge University Hospitals NHS Foundation Trust — Cambridge
- Velindre Cancer Centre, Velindre University NHS Trust — Cardiff
- NHS Lothian — Edinburgh
- Queen Elizabeth Unviersity Hospital, NHS Greater Glasgow and Clyde Health Board — Glasgow
- St James's University Hospital, Leeds Teaching Hospitals NHS Trust — Leeds
- The Walton Centre, The Walton Centre NHS Foundation Trust — Liverpool
- King's College Hospital, King's College Hospital NHS Foundation Trust — London
- … и ещё 6 центров
Публикации
- Watts C, Savage J, Patel A, Mant R, Wykes V, Pohl U, Bulbeck H, Apps J, Sharpe R, Thompson G, Waldman AD, Ansorge O, Billingham L; TJBM Investigators. Protocol for the Tessa Jowell BRAIN MATRIX Platform Study. BMJ Open. 2022 Sep 8;12(9):e067123. doi: 10.1136/bmjopen-2022-067123. PMID 36378622
Идентификаторы
NCT: NCT04274283 · RG_18-258 · 14218060