Clinical trials

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Condition / disease
Location
Status: Recruiting

MNGIE Natural History Study

The MNGIE Retrospective Natural History Study is a collaborative study between the University of Cambridge and the University of Bologna. The aim of this study is to better understand the natural history and progression of Mitochondrial Neurogastrointestinal Encephalomyopathy (MNGIE). New treatment strategies for MNGIE, including gene therapies, enzyme replacement therapy, and other advanced treatments, are currently being developed and may soon be tested in clinical trials. A comprehensive and up-to-date natural history study of MNGIE is therefore very important to help inform the design of these clinical trials and to identify appropriate clinical and biochemical outcome measure. This international natural history study aims to include as many patients with MNGIE (living or deceased) as possible, worldwide. This study will collect anonymised clinical information through a secure online REDcap database hosted at the University of Cambridge. Focus will be on describing clinical progression, and identifying biochemical, molecular, histological, and histochemical parameters that can help in early diagnosis, improve prognosis, and better understand therapeutic outcomes. The study is funded by Pierrepont Therapeutics Inc, and has received ethical approval from the University of Cambridge Human Biology Research Ethics Committee. Clinicians caring for MNGIE patients, are invited to contact the study team, and will then receive a direct link to the survey. Patients are asked to share information about the study with their treating clinician, if they would like their (anonymous) clinical information to be included in the study. More information and contact details are available online (https://mitocamb.medschl.cam.ac.uk/our-research/research-studies/understanding-studies/a-retrospective-natural-history-study-of-subjects-affected-by-mitochondrial-neurogastrointestinal-encephalomyopathy-mngie/).

Participants needed: 50
Trial details
Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Jun 4, 2026Locations: 1
Eligibility criteria

any age or stage of disease; living or deceased [+5]

There are no formal exclusion criteria for this retrospective observational stud...

Status: Recruiting

Deep Brain Stimulation to Understand and Treat Addiction

This study is testing whether deep brain stimulation (DBS) can safely help people with severe alcohol use disorder who have not improved with standard treatments. DBS uses small electrical signals to change activity in brain areas linked to craving, self-control, and emotion. The study will test whether this treatment can reduce how often people drink and how much they drink each day. Researchers will also record brain activity to better understand how DBS affects craving and relapse.

Participants needed: 9
Trial details
Age: 18-60Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Mar 24, 2026Locations: 2
Eligibility criteria

Adults aged 18 to 60 years [+7]

Severe psychiatric disorder other than Alcohol Use Disorder (e.g., schizophrenia... [+23]

Status: Recruiting

Ultrafast Whole Genome Sequencing for Childhood Cancer

Cambridge University Hospitals NHS Foundation Trust (CUHNFT) is the Principal Treatment Centre for the East of England region, responsible for 120-150 patients \<16 years with a new diagnosis of paediatric malignancy annually; leukaemia comprises \~25% of these cases. Current molecular diagnosis of subgroups of childhood malignancies, particularly leukaemia, is based on flow cytometry, fluorescent in situ hybridisation (FISH) and single nucleotide polymorphim (SNP) arrays, for which the usual turnaround time (TAT) is 7-14 days. In the current era of access to targeted therapy, rapid diagnosis and treatment of patients in high-risk molecular subgroups is critical for improving outcomes. Children and adolescents with Philadelphia-chromosome positive (Ph+) acute lymphoblastic leukaemia (ALL) have significantly improved survival when treated with tyrosine kinase inhibitors (TKIs). Patients with Ph+-like mutations (10- 20% of paediatric ALL), also have a poor prognosis, requiring escalation of treatment and addition of targeted therapy. Rapidly identifying MYCN amplification is also of critical prognostic importance in embryonal tumours of childhood including neuroblastoma (25%) and medulloblastoma, and directly impacts on treatment from the outset of the patient journey. Overnight whole genome sequencing (WGS) entails taking an additional 5ml Peripheral Blood (PB) and Bone Marrow (BM) samples after samples for routine diagnostic workup have been collected, and could replace current standard of care (SOC), which has a median turnaround time (TAT) of up to 28 days, and up to 84 days for specific gene mutations, which can delay appropriate prognostication and management of high-risk patients. Rapid, point of care information on somatic and germline mutations will allow early risk stratification and expedite treatment for high-risk patients with cancer.

Participants needed: 50
Trial details
Age: 0-24Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Mar 17, 2026Locations: 1
Eligibility criteria

Have given written informed consent to participate [+4]

Inability to provide written informed consent (self or parent/guardian) [+1]

Status: Recruiting

Closed-loop in Adults With Type 2 Diabetes

The main objective of this study is to determine the efficacy, safety and utility of fully closed-loop glucose control in the home setting in adults with type 2 diabetes (T2D). This study builds on previous and on-going studies of closed-loop systems that have been performed in Cambridge in adults with type 2 diabetes in the inpatient and in the home setting and in children and adults with type 1 diabetes. This is an open-label, multi-national, multi-centre, randomised, single-period parallel study, involving a run-in period followed by a 26-week intervention period during which glucose levels will be controlled either by a fully closed-loop system or by participants usual insulin therapy with continuous glucose monitoring. A total of up to 224 adults with type 2 diabetes using insulin will be recruited through outpatient diabetes clinics, primary care centres, social media advertising and other established methods at participating centres. Participants will receive appropriate training in the safe use of the study devices. The primary outcome is the between group difference in HbA1c at 26 weeks. Other key outcomes include the time spent with glucose levels within, above and below the target glucose range (3.9-10.0mmol/L) and mean sensor glucose as recorded by CGM over the 26 weeks. Insulin requirements, body weight, renal and liver function will also be compared. Safety evaluation comprises severe hypoglycaemic episodes, and other adverse and serious adverse events. Human factors outcomes include CGM \& closed-loop usage, questionnaires and semi-structured interviews.

Participants needed: 224
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Mar 13, 2026Locations: 12
Eligibility criteria

Aged 18 years and older [+6]

Type 1 diabetes [+13]

Status: Recruiting

Molecular Pituitary Imaging Using 18F-FET PET

The goal of this single centre pilot study is to explore whether 18F-fluoro-ethyl-tyrosine PET (FET-PET) yields comparable findings to 11C-methionine PET (Met-PET) for the localisation of pituitary tumours.

Participants needed: 20
Trial details
Age: 18-100Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Jan 6, 2026Locations: 1
Eligibility criteria

Participant is willing and able to give informed consent for participation in th... [+3]

Inability to give informed consent [+4]

Status: Recruiting

Targeted Abdominal CT in Conjunction With Lung Cancer Screening

Early detection through screening can improve cancer survival by identifying it when it's most treatable. The NHS now offers Lung Cancer Screening (LCS) assessments to people aged 55-74 who have ever smoked. Those at higher risk of lung cancer are offered a lung scan. This group also has a high risk of developing abdominal cancers, such as kidney cancer. A recent study explored whether it would be feasible to extend the lung scan to include the abdomen. Results showed most participants supported this addition, and the number of serious findings was similar to those detected in UK breast or bowel cancer screening programmes. However, the abdominal scan was only offered on the day of the lung scan, giving little time for people to consider their decision. The process also added too much time to be practical for widespread implementation. This new study will: * Test whether mentioning the possible abdominal scan in the initial LCS invitation affects participation in LCS assessments. * Test new processes to assess if the abdominal scan can be added to the lung scan with minimal extra time. * Check if participants can be split between the lung scan only group and lung and abdominal scan group using an approach called 'cluster randomisation'. This will be important in case a bigger trial is needed. * See whether the additional processes are acceptable People aged 55-70 who are invited to the lung cancer screening will be eligible to take part in this study. Only those who are found to be at a high risk of lung cancer after their assessment, and therefore offered a lung scan, will be offered the abdominal scan, provided they have not had an abdominal scan in the previous 12 months or one booked in the next 3 months. This study will take place in two existing lung cancer screening locations in Yorkshire.

Participants needed: 6,272
Trial details
Age: 55-70Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Dec 19, 2025Locations: 1
Eligibility criteria

For the individual level randomisation to invitation control or invitation inter... [+3]

Eligibility criteria for the cluster level randomisation to scan intervention or... [+14]

Status: Not yet recruiting

Transcriptional Analysis of Mechanisms in Liver Failure and Sepsis

Context Acute liver failure (ALF) is a life-threatening condition that occurs on the background of a healthy liver. The most common cause of acute liver failure in the UK is paracetamol overdose. Acute liver failure results from liver damage and activation of the body's inflammatory defences with subsequent damage to other organs including kidneys, lungs and heart. This often requires life support in an intensive care unit before liver transplantation (LT), the only currently available and effective rescue treatment for acute liver failure. Challenge Patient factors and organ availability limit who can benefit from liver transplant. At present there are no effective alternative therapies for patients who do not get a liver transplant, and survival rates in these situations are poor. The underlying mechanisms of inflammation are poorly understood, thus therapies are limited. Aim The investigators research aims to understand the mechanisms that underpin the inflammation seen in acute liver failure by studying the inflammatory cells in the blood and examining their cellular programmes. This will allow the investigators to identify pathways that are activated and understand how the liver and blood interact to spread inflammation around the body. The investigators aim to identify targets for disease-modifying therapies to avert the need for liver transplant. Importance Understanding how the body responds to acute liver failure, and whether there are different patterns of inflammatory response, will enable trials of immune-modulating drugs to prevent the need for liver transplantation or prolong the time a patient can wait for an organ. This has the potential to help improve organ availability for other patients and save lives in acute liver failure.

Participants needed: 100
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Aug 26, 2025Locations: 7
Eligibility criteria

acute liver failure due to acetaminophen (paracetamol) overdose admitted to ICU [+1]

age <16y

Status: Recruiting

Pre-clinical Diagnosis Using Integrated Microbial and Host Response Signatures to Improve Outcomes From Ventilator-associated Pneumonia in Critically Ill Children

Ventilator-associated pneumonia (VAP), defined as pneumonia occurring 48 hours after initiation of invasive mechanical ventilation, is insidious in onset and severe in consequence. It is a critical issue affecting 10-20% of the 26,000 children admitted to the paediatric intensive care unit (PICU) each year. Infection typically leads to extended PICU stay, prolonged invasive mechanical ventilation, and increased mortality. Despite its clinical significance, VAP remains poorly defined, as current diagnosis relies on non-specific criteria and the ability to obtain clinically meaningful cultures. VAP, deviates from conventional pneumonia, potentially originating, from tissue damage, changes to immune processes, and migration of gastrointestinal bacteria into the lung; all associated with prolonged mechanical ventilation. These factors, in combination with the clinical instability of PICU patients, mean that clinicians aggressively start antibiotic therapy despite a paucity of evidence to suggest the best regime. As a result, suspected VAP has been shown to account for nearly 40% of antibiotic exposure in the PICU, which has significant implications on anti-microbial resistance (AMR). To address these challenges, novel diagnostic therapies are needed to optimise the treatment of VAP. These therapies should utilise our current understanding of the pathophysiology of VAP development, specifically, the infiltration of the lung microbiome by gut and oral bacteria during prolonged mechanical ventilation. To achieve this, molecular testing should be promoted allowing for rapid identification of lung pathogens. There is also growing evidence, for the investigation of predictive biomarkers for VAP available in both the blood and lungs, which when integrated into protocols may enhance diagnostic accuracy. These novel techniques may improve clinical outcomes for affected children while addressing the economic impact of prolonged hospital stays and mitigating AMR risks in PICUs.

Participants needed: 300
Trial details
Age: 1-16Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Aug 3, 2025Locations: 1
Eligibility criteria

PICU Admission [+1]

Imminent death or palliative care pathway planned [+4]

Status: Not yet recruiting

Evaluating Near-infrared Spectroscopy Devices for Monitoring Traumatic Brain Injury

This project seeks to evaluate the capabilities of new Near Infrared Spectroscopy (NIRS) devices, which use light to measure brain activity, for monitoring how the brain and body react after a serious head injury (TBI), particularly in the immediate and shortly following periods. Data recorded from these devices will help determine if they can effectively monitor additional complications and outcomes in adults over 18 with severe TBIs in a specialised intensive care unit for brain injuries (NCCU) at Addenbrooke's Hospital (Cambridge, UK). We will use two different NIRS devices similar to those currently used in the NCCU but with extra improvements. Both devices are proven to be safe and do not require surgery or internal procedures. Participants will be recruited based on several criteria and monitored early in their NCCU admission. Monitoring will be daily for 6 hours, lasting from half a week to two weeks, depending on recovery progress. After the initial 10 patients, we will perform an interim analysis and may adjust the recording duration. We aim to recruit a maximum of 50 participants in total. Due to their condition, participants will not be able to give permission to participate, so we will seek it from their next of kin within 24 hours of admission. The study will only observe and not influence treatment. We will also collect additional clinical data, such as scans, the patient's condition six months after the injury, and other medical information for analysis. The data collection period for this study will last up to 2 years. We will remove any personal details from the patient data. The body function data, with personal details removed, will be transferred and stored on the Brain Physics Lab server (segregated) and University of Cambridge computers for analysis. Any data not saved in dedicated long-term storage will be deleted after use.

Participants needed: 10
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Aug 6, 2025
Eligibility criteria

Not listed

Status: Recruiting

Optical Neuroimaging and Cognition

Dementia is associated with a variety of neurovascular and neurometabolic abnormalities. Traditional imaging techniques used to investigate such abnormalities, such as Positron Emission Tomography and functional Magnetic Resonance Imaging, are not always well tolerated, have expensive start up and running costs, and are limited with regards to the types of experiments that can be performed as they can be highly sensitive to movement, are noisy, and have physical restrictions. Near-infrared spectroscopy (NIRS) is a non-invasive neuroimaging technique which uses light in the near-infrared spectrum to detect relative changes in concentration of oxygenated and deoxygenated haemoglobin, and the oxidation state of Cytochrome C Oxidase. As such, NIRS can provide measures of brain oxygenation and metabolism. NIRS is less sensitive to movement, is well tolerated and has few contraindications. It is thus a promising candidate for use in clinics or in peoples' homes for monitoring dementia. In the present study, the investigators aim to use both dual-wavelength and broadband NIRS in a range of dementia subtypes, including Alzheimer's Disease and Dementia with Lewy Bodies, and severities, including Mild Cognitive Impairment, to identify how brain oxygenation and metabolism is altered in dementia and across various clinical subgroups. The investigators also aim to determine the relationship between brain oxygenation and metabolism in dementia, and use machine learning approaches to identify optical biomarkers for dementia.

Participants needed: 200
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Apr 10, 2025Locations: 1
Eligibility criteria

Lewy Body Dementia [+5]

Severe dementia [+13]

Status: Recruiting

taRgeting bEtA-Cell Function To achIeVe Remission of Type 2 diAbeTEs

The main objective of the REACTIVATE study is to investigate whether a period of intensive insulin therapy using closed-loop technology, when combined with diet and lifestyle education, can restore beta-cell function and achieve remission of recent-onset type 2 diabetes. This is a single-centre, open-label, randomised, parallel design study comparing up to 12 weeks of fully closed-loop insulin delivery to standard care with a glucose sensor in adults with recent-onset type 2 diabetes. The primary outcome is the number of participants achieving remission of diabetes at 52 weeks, defined as HbA1c below 48mmol/mol after 12 or more weeks off all diabetes medications. Other key outcomes include area under the curve for C-peptide and glucose during mixed meal tolerance test, the proportion of time spent with glucose levels within and above the target glucose range and mean sensor glucose as recorded by glucose sensor at 52 weeks. Safety evaluation comprises severe hypoglycaemic episodes, and other adverse and serious adverse events. Utility and human factors outcomes include glucose sensor and closed-loop usage, questionnaires and semi-structured interviews.

Participants needed: 56
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Mar 28, 2025Locations: 1
Eligibility criteria

Aged 18 years and older [+5]

Type 1 diabetes [+10]

Status: Not yet recruiting

The Planetary Outcomes After Intracranial Haemorrhage Study

Over twelve million strokes occur worldwide every year, and stroke is the second most common cause of death globally. Strokes happen because blood supply to the brain is damaged. This can be due to a blockage (ischaemic stroke) or a bleed (haemorrhagic stroke - or intracranial haemorrhage). Intracranial haemorrhage can be life-threatening and patients with this type of stroke can be very sick, requiring urgent medical care including medications, close monitoring, and sometimes surgery. Strokes happen worldwide, but over 80% of stroke cases and associated death and disability occur in low- and middle- income countries (LMICs), where resources to manage them can be limited. However, the differences in how patients present, the hospital care they receive, and their overall outcomes when compared to high-income countries (HICs) patients are not fully understood. There are many stroke-related deaths occurring each year around the world, especially among those who have presented with an intracranial haemorrhage, and if survival rates are to be improved, high-quality data is needed to help us better understand where the improvements in care are required in different health settings. Run and funded by the University of Cambridge, this study will collect data on all patients across all ages during a one-month period who undergo treatment for spontaneous intracranial haemorrhage, both medical and surgical. We will include patients from any hospital across the world that treats patients with this condition, collecting data from their admission to hospital until their discharge, death or up to 30 days from their presentation. This is an observational study, so we are only observing patients care and management, not making any direct changes to their treatment. We will also be asking each centre to complete a written survey, to better understand some of the more complex areas which are important for the care of intracranial haemorrhage patients such as hospital resources available, and the potential barriers they face in accessing appropriate healthcare.

Participants needed: 1,000
Trial details
Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Dec 12, 2024
Eligibility criteria

Patients of any age with the presence of spontaneous intracranial haemorrhage (p...

Patients who have a clear history of trauma as the primary cause of the haemorrh... [+5]

Status: Recruiting

Investigation of Differential Biology of Benign and Malignant Renal Masses Using Advanced Magnetic Resonance Imaging Techniques

The aim of this study is to develop techniques for non-invasive imaging of biology in participants with benign or malignant renal masses based on the novel scanning MRI techniques, including recently invented Hyperpolarised MRI, deuterium metabolic imaging and sodium MRI. This imaging study will: 1) acquire imaging data from human tissues following the injection of hyperpolarised 13C pyruvate and use 13C-MRI to monitor changes in the ratio of 13C-lactate to 13C-pyruvate; 2) acquire imaging data from human tissues using Sodium MRI or 3) acquire imaging data from human tissues following the oral consumable of deuterated glucose. Data acquired during this physiological study will be used to optimise future imaging protocols.In the UK and possibly in other countries, there are some patients with renal masses that are over treated or undergo unnecessary procedures such as surgery or biopsies, as they are thought to have a malignant tumour or a more aggressive tumour but after the procedure it is found that the mass was benign. The aim of this study is to determine whether one or all of these imaging techniques can differentiate between benign and malignant renal masses with the view to developing the techniques further and hopefully reducing the need for over treatment or unnecessary procedures in patients with benign masses.

Participants needed: 30
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Dec 5, 2024Locations: 1
Eligibility criteria

Over 18 years old [+5]

Contraindication or inability to tolerate MRI [+5]

Status: Recruiting

Molecular Imaging in Fabry Disease of the Heart

Better methods for early detection of cardiac involvement in Fabry disease are needed to inform clinical management decisions that can help prevent or slow the progression of cardiac complications. In the Molecular Imaging of Inflammation in Fabry Disease of the Heart study, the investigators will test the use of 68Ga-DOTATATE PET/MRI for identifying myocardial inflammation in patients with Fabry disease.

Participants needed: 12
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Jul 22, 2024Locations: 1
Eligibility criteria

Male or female participants >18 years old [+3]

Any other diagnosis associated with cardiac muscle inflammation, including myoca... [+5]

Status: Recruiting

PET Imaging of Inflammation and Lipid Lowering Study

While 18F-fluorodeoxyglucose (FDG) positron emission tomography (PET) imaging has been used as an early marker of drug efficacy in numerous clinical cardiovascular drug trials, as a glucose analog, its signal in the vasculature lacks inflammatory cell-specificity. Moreover, high background 18F-FDG signals from the myocardium often preclude coronary artery imaging, despite attempts to suppress myocardial tracer uptake by dietary manipulation. These limitations of 18F-FDG for measuring changes in vascular inflammation arising from drug intervention highlight important unmet needs, which might be overcome by using a somatostatin receptor subtype-2 (SST2) PET tracer.

Participants needed: 63
Trial details
Age: 18-99Biological sex: AllType: InterventionalSponsor: University of CambridgeUpdated: Jul 19, 2024Locations: 1
Eligibility criteria

Male or female participants >18 years old [+5]

Women of childbearing potential not using adequate contraception [+13]

Status: Recruiting

Neurobehavioural and Cognitive Changes in Cancer Cachexia (CANCOG)

The goal of this observational study is to to look for changes within the brain, and changes in body-to-brain signals in people with cancer and people who do not have cancer. The main questions it aims to answer are: 1. Are there differences in areas of the brain known to be related to appetite control, food reward and motivation, between participants with cancer related weight loss and healthy volunteers 2. Do responses to questionnaires and computer based tasks suggest participants with cancer related weight loss have reduced appetite and reduced motivation to eat compared to healthy volunteers, and if so, do questionnaires suggest that this is associated with any other symptoms? Researchers will compare the structure and blood flow in relevant areas of the brain using MRI images between participants with cancer related weight loss and healthy volunteers. Participants will complete questionnaires and computer based tasks to allow researchers to assess areas of the brain which become more active in response to different stimuli. Some computer based tasks will be performed during the MRI scan. This is called functional MRI. A further objective is to obtain an archive of blood samples which will be stored securely for future analysis if relevant hormones or analytes are identified that may be relevant to metabolism or body composition

Participants needed: 50
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Jul 17, 2024Locations: 1
Eligibility criteria

Written informed consent [+4]

Non-fluent English speaker [+11]

Status: Recruiting

INflammation and Small Vessel Disease Study

A prospective observational cohort study in patients with cerebral small vessel disease deterring whether changes in systemic inflammation predict brain white matter damage measured using MRI and cognitive decline. This is a study funded by a joint BHF-Dutch Heart Foundation research grant and will be conducted in both Cambridge UK and Nijmegen Netherlands with 100 of the 200 total participants recruited at each site, and data from both sites analysed together.

Participants needed: 200
Trial details
Age: 40+Biological sex: AllType: ObservationalSponsor: University of CambridgeUpdated: Feb 27, 2023Locations: 2
Eligibility criteria

Have given written informed consent to participate [+4]

Unable/unwilling to consent including lack of capacity to consent [+11]