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Hyper-Spectral Endoscopy for Detection of Early Neoplasia in Barrett's Oesophagus

Prospective Pilot Cohort Study to Assess Early Diagnostic Utility of Hyper-Spectral Endoscopy for Detection of Neoplasia in Barrett's Oesophagus

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06119906
Acronym
HySE
Enrollment
24
Registered
2023-11-07
Start date
2024-04-01
Completion date
2025-06-30
Last updated
2023-11-07

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Endoscopy

Brief summary

The goal of this clinical trial is to assess the efficacy of hyperspectral endoscopic imaging to distinguish neoplasia from non-dysplastic Barrett's oesophagus in vivo. The main outcome measures are: 1) Classification of spectral patterns corresponding to neoplastic vs non-neoplastic Barrett's; 2) Image quality assessed by the endoscopist by VAS rating the level of confidence in delineating the area of interest; 3) Time to perform hyperspectral imaging; 4) Quantification of molecular biomarkers in endoscopic areas with neoplastic spectral patterns. Participants will firstly undergo a standard endoscopy, followed by another endoscopy using the experimental HySe device. Subsequently, patients will receive biopsies according to Seattle protocol, and up to 6 additional (optional) snap frozen research biopsies.

Detailed description

This trial is designed to evaluate the feasibility of hyperspectral endoscopic imaging in vivo. The team has developed a custom hyperspectral endoscope based around a commercially available, standard-of-care endoscopy stack from Olympus (Tokyo, Japan). In this system, the original gastroscope, video processor and display are used with a modified light source that incorporates a laser with tunable wavelength for illuminating the scene through the endoscope. A live video feed from the gastroscope is displayed on the endoscopy theatre monitors and can be acquired and saved in the native video acquisition system. Given that it is essential in the pilot study to assess the detection of neoplastic lesions in a small patient cohort, we will artificially enrich for patients with early neoplasia by including patients with previously recognized early neoplasia within Barrett's oesophagus (high grade dysplasia and intramucosal adenocarcinoma). These patients will receive a clinically indicated endoscopy to be assessed to determine eligibility for endoscopic treatment, and imaging would be done at this time point. This will allow the team to have sufficient number of outcomes to have preliminary data on diagnostic accuracy and be able to power future studies in non-enriched patient cohorts.

Interventions

DEVICEHyper-Spectral Endoscopy

We have developed a custom hyperspectral endoscopy approach based around a commercially available endoscopy system. An Olympus gastroscope (GIF-H260) and video processor and display are used with a modified light source that incorporates a laser with tunable wavelength for illuminating the scene through the endoscope. A live video feed from the gastroscope is displayed on the endoscopy monitors and can be acquired and saved in the native video acquisition system. The spectral imaging data is also saved within this video feed, where imaging wavelength corresponds to a given timestamp in the video.

Sponsors

University of Manchester
CollaboratorOTHER
University of Cambridge
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Male or female subjects over 18 years. * Previous diagnosis of Barrett's oesophagus, with an endoscopic length of at least 2 cm if circumferential (C≥2 according to Prague classification) or 3 cm if not circumferential (maximal extent M≥3, according to Prague classification). * Previous diagnosis of oesophageal glandular dysplasia or early oesophageal adenocarcinoma for consideration of endoscopic therapy.

Exclusion criteria

* History of oesophageal stricture precluding passage of the endoscope. * Pregnancy, or planned pregnancy during the course of the study. * Currently breastfeeding. * Any history of oesophageal varices, liver impairment of moderate or worse severity (Child's- Pugh class B & C) or evidence of varices on initial treatment endoscopy. * Any history of oesophageal surgery, except for uncomplicated fundoplication. * History of coagulopathy, with INR\>1.3 and/or platelet count of \<75,000. * On clopidogrel, and/or warfarin for high risk condition and unable to withhold temporarily the medication.

Design outcomes

Primary

MeasureTime frameDescription
Contrast of neoplastic vs non-neoplastic Barrett'sPost-hoc analysis after the endoscopy - time scale 6-12 months from procedurePixel intensity value at 16 different wave lengths in endoscopic areas of interest as compared with standard-of-care RGB white light endoscopy

Secondary

MeasureTime frameDescription
Image quality of Hyper-Spectral Endoscopy in vivoImmediately after the interventionVisual analogue scale (VAS) rating the level of confidence in delineating the area of interest
Time to perform hyperspectral imagingDuring the interventionTime in Minutes
Quantification of molecular biomarkers in endoscopic areas with neoplastic spectral patternsPost-hoc analysis after the endoscopy - time scale 6-12 months from procedureIntensity of staining of Immunohistochemical markers
Image quality of Hyper-Spectral Endoscopy after post-hoc analysisPost-hoc analysis after the endoscopy - time scale 6-12 months from procedureVisual analogue scale (VAS) rating the level of confidence in delineating the area of interest

Countries

United Kingdom

Contacts

Primary ContactMassimiliano Di Pietro, MD
md460@cam.ac.uk+44 1223 763349
Backup ContactTara Evans
tara.evans@nhs.net+44 1223 763994

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026