Skip to main content
UK clinical trials - updated daily from ClinicalTrials.gov
TrialConnect
← Back to Search
Looking for participantsN/A

Hypoxia Driven Metabolic Response in Oesophagogastric Adenocarcinoma

Sponsor: Imperial College London

NCT ID: NCT06669663

View on ClinicalTrials.gov ↗

At a glance

What the study gets you
Health checks and monitoring — no treatment given
Type of study
Observational (no treatment given)
Time in hospital
In-person visits at study sites — visit count not specified by the sponsor
Drug or intervention
Pimonidazole hydrochloride (Hypoxyprobe™-1) (drug)
How long the study runs
Study runs about 47 months (dates as stated)
About the drug or intervention
Pimonidazole hydrochloride (Hypoxyprobe™-1) — drug: Participants will receive Pimonidazole (non-CTIMP) prior to their surgery for OG cancer and then undergo intra-operative sampling.
Patient visit burden
Not specified by the sponsor
Type of study
Observing health over time
Ages
18 Years to 90 Years
Who
All
Number of participants
120
Started
2024-09-01
Last checked
2025-03

Plain English Summary

What is this study?

  • • Testing a new treatment for oesophago-gastric carcinoma
  • • Clinical study - 120 participants
  • • Oesophagogastric Cancer and Hypoxia: Oesophagogastric cancer is a significant global burden, with 1

Who can take part?

  • • Ages 18 Years to 90 Years
  • • Diagnosed with oesophago-gastric carcinoma

Where?

  • • London - Imperial College NHS Healthcare Trust

This is a simplified summary. Always discuss with your doctor before making any decisions.

About This Trial

Oesophagogastric Cancer and Hypoxia: Oesophagogastric cancer is a significant global burden, with 1.7 million new cases per year. It is well known that survival from oesophagogastric cancer is poor. Five-year survival for these cancers in the UK remains between 15-20%, which is amongst the lowest in Europe. The reason for this poor survival is multifactorial, with late diagnosis and treatment-resistant hypoxic tumours both significantly contributing to this high mortality. Tumour hypoxia occurs when rapidly growing malignancies outstrip oxygen (and nutrient) supply. These hypoxic conditions trigger adaptive metabolic and genomic mutations within the cancer. Clinically, these mutations lead to cancers which are highly aggressive and treatment resistant. Therefore, patients with oesophagogastric cancers displaying high degrees of hypoxia have a considerably poorer prognosis. Reassuringly, there are emerging treatment options available. The adaptive pathways triggered by hypoxia offer unique opportunities for personalized and targeted oncological therapies to improve clinical outcomes in this patient cohort. However, for these therapies to be effective, it is vital patients with hypoxic tumours can be identified. There are currently no established methods for identifying hypoxic tumours in oesophagogastric cancer patients. Whilst biomarker candidates have been identified, these require invasive biopsies and are limited in terms of repeatability, and therefore clinical applicability. There is hope in developing non-invasive hypoxic imaging, however considerable validation work is required prior to their clinical introduction for oesophagogastric patients. Volatile Organic Compounds and Breath: The Hanna Group at Imperial College London has developed a non-invasive breath test for the diagnosis of oesophagogastric adenocarcinoma through the detection of exhaled Volatile Organic Compounds (VOCs). This was validated in a multi-centre NIHR-funded clinical study that demonstrated 80% sensitivity and 81% specificity. In parallel with this work, the exhalation kinetics and molecular drivers of VOCs in oesophagogastric adenocarcinoma have also been investigated. It has been understood that the VOCs that can be detected in blood, breath, urine, and saliva are a representation of the metabolic and microbiotic changes that occur in the tumour and its microenvironment. Rationale for Study: There is a clear unmet need for a dynamic non-invasive test to identify patients suffering with hypoxic oesophagogastric tumours. By adapting the breath test model, it is believed that patients with hypoxic tumours can be effectively detected. This creates the opportunity to offer targeted oncological therapies for these patients. Furthermore, the reproducibility and patient acceptability make a breath test an ideal testing method for dynamic hypoxia monitoring . Promising work within the Hanna Group has already demonstrated the potential viability of a 'hypoxia breath test'. Early cell culture experiments and pilot studies have demonstrated hypoxic tumours release discriminatory VOCs which could be leveraged as hypoxic biomarkers. HYDRA Study The HYDRA study is a single-centre observational study at Imperial College London with the aim of devising a non-invasive breath test for OG tumour hypoxia. The study contains two arms: the Pimonidazole and Biosampling arm. In the Pimonidazole arm, 20 participants (10 oesophageal and 10 gastric cancer) will be given Pimonidazole (Hypoxyprobe Inc.), a hypoxia-labelling agent, prior to their surgery for oesophagogastric cancer. Hypoxia-stratified tissue will be sampled intraoperatively and analysed using spatial transcriptomics and spatial metabolomic techniques. This will allow the creation of an OG-hypoxic gene signature. The Biosampling arm will recruit 100 patients undergoing OG cancer surgery. Participants will undergo breath sampling and intra-operative tumour sampling. Using the hypoxic gene signature generated in the Pimonidazole arm, transcriptomic analysis of tumour samples will allow patient categorisation into hypoxia-high and hypoxia-low subgroups. This will enable our group to devise a hypoxic OG breath test, separating patients with hypoxia-high and hypoxia-low tumours.

OESOPHAGO-GASTRIC CARCINOMA

How this trial compares with your answers

Answer 2 more questions to improve match

What we know so far

Condition· Matched your search
Age· Tell us your age for better matching
Gender· Tell us your sex for better matching

Still need:

  • • Tell us your age for better matching
  • • Tell us your sex for better matching

Preliminary match based on your answers. Full eligibility requires on-site assessment including medical history, physical exam, and lab tests. This does not guarantee enrolment.

Eligibility at a Glance

Key info

  • Age: 18 Years - 90 Years
  • Who can join: All genders

What the study is looking for

  • ✓Male and females aged 18-90 years.
  • ✓Patients with biopsy proven oesophageal or gastric adenocarcinoma who are undergoing either surgical resection or...

Who cannot take part

  • ✗Non-adenocarcinoma cancer (e.g. oesophageal squamous cell carcinoma)
  • ✗Antibiotic therapy within the last 8 weeks
  • ✗Previous oesophageal and gastric resection
  • ✗Allergy to pimonidazole
  • ✗Unable or unwilling to provide informed written consent
See the full criteria
Inclusion Criteria: * Male and females aged 18-90 years. * Patients with biopsy proven oesophageal or gastric adenocarcinoma who are undergoing either surgical resection or staging laparoscopy. Exclusion Criteria: * Non-adenocarcinoma cancer (e.g. oesophageal squamous cell carcinoma) * Antibiotic therapy within the last 8 weeks * Previous oesophageal and gastric resection * Allergy to pimonidazole * Unable or unwilling to provide informed written consent * Pregnant women

Where Is This Study? (1 UK site)

Imperial College NHS Healthcare Trust

London, United Kingdom

Recruiting
Site contact (verified)
Henry Robb, MBChB BSc (Hons) MSc MRCS44 (0) 207 594 8847

How to Get in Touch

Henry Douglas Robb, MBChB BSc (Hons) MSc MRCS

Sponsor contact

CONTACT

+44 (0) 207 594 8847 henry.robb19@imperial.ac.uk
Data sourced from ClinicalTrials.gov · Last verified: 2025-03