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NCT Number: NCT03791073

New Biomarkers in Pancreatic Cancer Using EXPEL Concept

The investigators recently engineered a novel biomarker discovery approach that is non-destructive and fully compatible with OMICS profiling as well as routine clinical procedures (5). The latter approach - termed EXPEL - mines the interstitial tissue fluid that is the richest source of soluble, undiluted and uncontaminated biomarkers. The method notably gives access to proteins, metabolites, RNA, DNA and exosomes, thus enabling holistic biomarker discovery. Owing to its non-destructive nature, EXPEL provides for the first time both clinicians and researchers with the opportunity to analyze identical material.

The investigators hypothesize that the conservation liquid used to collect cells and biopsy after endoscopic ultrasound for pancreatic biopsy could contain the tissue secretome and permit a comprehensive OMICS analysis of PDAC (all stages confounded) by using a "modified EXPEL" procedure. These are ideal conditions for EXPEL approach that will additionally to finding novel biomarkers also shed light on complex network of cancer cell-stroma interactions.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Observational

Primary location

Uhmontpellier

Montpellier, 34295, France

Location status: Recruiting

Location contact

Regis SOUCHE, MD

CONTACT

[email protected]

467337072 ext. 33

About this study

Biomarkers that are readily detectable in fluid biopsies are of outmost importance for diagnosis and prediction of therapeutic response in all cancer patients. Pancreatic ductal adenocarcinoma (PDAC) is an example of a deadly malignancy that is diagnosed very late due to lack of sensitive and reliable markers [1]. The incidence and mortality of PDAC will double in the next 15 years, which is unprecedented among all cancer types [2]. Secondary cancer prevention through early diagnosis of PDAC will therefore be an essential preparedness asset for facing the immense healthcare burden.

Discovery of diagnostic biomarkers depends essentially on the availability of patient material ideally collected at different time points during the disease progression (e.g. early lesion, before treatment and after recurrence). Unfortunately, it is very difficult to access fresh biopsies from pre-malignant lesions for research purposes. These are needed in their entirety for histo-pathological evaluation and diagnosis. The ability to use liquid biopsies (e.g. serum, urine, saliva) brought the promise to circumvent this problem, opening access to many different biomolecules such as circulating DNA and proteins. However, upon their release from the tumor, these molecules are diluted up to several billion-fold in blood with molecular species originating from healthy tissues [3-4]. This hampers de novo discovery of biomarkers for diagnosing and understanding the disease.

To circumvent these limitations, the investigators recently engineered a novel biomarker discovery approach that is non-destructive and fully compatible with OMICS profiling as well as routine clinical procedures (5). The latter approach - termed EXPEL - mines the interstitial tissue fluid that is the richest source of soluble, undiluted and uncontaminated biomarkers. The method notably gives access to proteins, metabolites, RNA, DNA and exosomes, thus enabling holistic biomarker discovery. Owing to its non-destructive nature, EXPEL provides for the first time both clinicians and researchers with the opportunity to analyze identical material, while having virtually no disadvantage in their respective tasks. The investigators have recently shown the ability of our methodology to find new markers in the context of precious human colorectal cancer samples. Thus, the investigators are convinced that EXPEL can be successfully applied to pancreatic cancer. In addition, knowing the important proportion of stroma in PDAC (usually 2/3 of tumor mass), the secretome of pancreatic cancer is expected to be much richer in soluble "communication factors" exchanged between cancer cells and host tissue.

In clinical practice, most of patients undergo endoscopic ultrasound with fine needle aspiration/biopsy of the pancreatic mass to confirm the diagnosis of PDAC. The needle is rinsed in a conservation liquid Cytolyt® (Methanol 30% et water 50%) and sent to the pathologists. Microbiopsy are fixed in paraffin then analyzed and liquid is cytofiltrated to keep potential tumor cells. The remnant Cytolyt® liquid is systematically trashed.

The present study is based on the hypothesis that this liquid, previously in contact with tumoral tissue, could contain the tissue secretome and permit a comprehensive OMICS analysis of PDAC (all stages confounded) by using a "modified EXPEL" procedure. These are ideal conditions for EXPEL approach that will additionally to finding novel biomarkers also shed light on complex network of cancer cell - stroma interactions.

For this purpose, the investigators aim to perform proteomic analysis on the conservation liquid (Cytolyt) in patients who underwent endoscopic ultrasound with fine needle aspiration/biopsy for suspicious pancreatic mass at the CHU de Montpellier between Jan 2018 and Jan 2019.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patient with pancreatic mass and suspicion of pancreatic ductal adenocarcinoma requiring endoscopic ultrasound with fine needle biopsy or surgery
  • Patient ≥18 years old
  • Patient naïve of any treatment of Pancreatic cancer

Exclusion criteria

  • Patient who reject the study protocol

Treatment and study plan

Primary outcomes

  1. Predictive value of each protein contained in Cytolyt® for the positive diagnosis of pancreatic ductal adenocarcinoma

    Time frame: an average of 1 year

    Correlation with positive diagnosis of pancreatic ductal adenocarcinoma and proteins quantity in Cytolyt® samples using ROC curves (sensibility/specificity: Area Under the Curve > 0.85) and binary logistic regression method with controlling for the effects of the co-variates (such as age, disease cTNM stage, and treatment details).

Secondary outcomes

  1. Biomarkers that are prognostically significant on disease free or overall survival in patients with pancreatic cancer, identified using the survival analysis

    Time frame: 1 year

    Disease-free survival (percentage of patients without recurrence) at 1 year

  2. Biomarkers that are prognostically significant on disease free or overall survival in patients with pancreatic cancer, identified using the survival analysis

    Time frame: 1 year

    Overall survival at 1 year (percentage of patients alive)

  3. Biomarkers that are prognostically significant on disease free or overall survival in patients with pancreatic cancer, identified using the survival analysis

    Time frame: 1 year

    Disease-free survival (DFS) (time from diagnosis to time of first radiological evidence of local, regional, or distant relapse, or death due to any cause)

  4. Biomarkers that are prognostically significant on disease free or overall survival in patients with pancreatic cancer, identified using the survival analysis

    Time frame: 1 year

    Overall survival (OS) (time from diagnosis until death, regardless of cause)

  5. Biomarkers that are prognostically significant on disease free or overall survival in patients with pancreatic cancer, identified using the survival analysis

    Time frame: 1 year

    Kaplan Meier analysis, logrank test and Cox's proportional hazards regression model to identify biomarkers that are prognostically significant (Hazard ratio (HR) and its 95% confidence interval (CI)).

Study contacts

Contact information is provided by the study sponsor or research team.

Jean-Michel Fabre, MD, PhD

CONTACT

[email protected]

467337072 ext. 33

REGIS SOUCHE, MD

CONTACT

[email protected]

467337072 ext. 33

Sponsors and collaborators

Lead sponsor

University Hospital, Montpellier

Other

Collaborators

  • IRCM U1194 INSERM, Cancer Bioinformatics and Systems Biology's team
  • IRCM U1194 INSERM, Tumor Microenvironment and Resistance to Treatment Lab

Registry information

Official study title

Discovery of New Biomarkers in Pancreatic Cancer Using Novel Nondestructive OMICS Methodology

Acronym: PANEXPEL

Important dates

Study start
2018
Primary completion
2019
Study completion
2027
First posted
Jan 2, 2019
Registry last updated
Jun 18, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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