Clinical trial · Observational
The Status of Immune Checkpoints at Gastrointestinal Cancer
Determination of Immune Check Point Levels in Paracentesis Samples of Gastrointestinal System Malignancy Cases
- Source
- ClinicalTrials.gov
- Retrieved
- Sep 8, 2026
- Layer
- normalized (units and labels harmonized; values unchanged)
- Run
- ING-CLINICALTRIALS-20260908-000001
Summary
Brief summary (as posted)
Colorectal cancers are the third most common cancer in the world. In advanced stages of colorectal cancers, peritoneal carcinomatosis and intraabdominal acid development occur. Although stomach cancer is the 5th most common cancer in the world, it is the third cancer with the highest mortality. Pancreatic cancer is one of the highest mortality cancers worldwide. Likewise, in advanced stages of stomach and pancreatic cancer, peritoneal carcinomatosis and intra- abdominal acid development occur. It is known that the immune system plays an important role in tumor development or destruction of tumor. Recent studies have shown that tumor cells develop escape mechanisms in the tumor microenvironment to escape from host immunity. It has been reported that differentiation of T cells towards Th2 and regulatory T cells is also effective in tumor progression(6). Changes in the tumor microenvironment and immune checkpoints are important mechanisms that lead to escape from the immune system. Immune checkpoints are on the agenda especially after 2018 Nobel Prize and they are important molecules in revealing the relationship.In our study, it is aimed to evaluate whether there is a difference in immune control points in patients with end-stage colorectal cancer, gastric cancer and pancreatic cancer compared to patients without malignancy, and the relationship of these parameters with patient survival and tumor spread mechanisms.
Conditions
Conditions (1)
Free-text conditions as registered, with the CancerIndex entity they were reconciled to and the match type.
| Condition (as posted) | Mapped entity | Match | Confidence |
|---|---|---|---|
| Gastrointestinal Cancer | Malignant Digestive System Neoplasm | ALIAS | 0.90 |
Interventions
Interventions (1)
| Intervention | Type | Mapped drug | Match |
|---|---|---|---|
| Flow cytometric analysis | Diagnostic Test | — | UNRESOLVED |
Design
Arms and outcomes
Arms (2)
- label
- Gastrointestinal cancers
- description
- Patients with advanced stage colorectal cancer, gastric cancer and pancreatic cancer who develop malignant ascites
- interventionNames
- Diagnostic Test: Flow cytometric analysis
- label
- Control
- description
- Patients with intraabdominal ascites with benign reasons (liver cirrhosis, Congestive heart failure, etc.) .
- interventionNames
- Diagnostic Test: Flow cytometric analysis
Primary outcomes (1)
- measure
- Immune Checkpoints
- timeFrame
- 4 months
- description
- sCD25 (IL-2Ra), 4-1BB, B7.2 (CD86), Free Active TGF-β1, CTLA-4, PD-L1, PD-1, Tim-3, LAG-3, Galectin-9
Eligibility
Eligibility (as posted)
- Sex
- All
- Minimum age
- 18 Years
- Maximum age
- 85 Years
Show eligibility criteria text
Inclusion Criteria: * Patients with intraabdominal ascites with benign reasons (liver cirrhosis, Congestive heart failure, etc.) for control group * Patients with advanced stage colorectal cancer, gastric cancer and pancreatic cancer who develop malignant ascites for gastrointestinal cancer group Exclusion Criteria: * Pregnant * Primary immune system failure * HIV patients
References
Publications (3)
- BACKGROUNDSasidharan Nair V, Toor SM, Taha RZ, Shaath H, Elkord E. DNA methylation and repressive histones in the promoters of PD-1, CTLA-4, TIM-3, LAG-3, TIGIT, PD-L1, and galectin-9 genes in human colorectal cancer. Clin Epigenetics. 2018 Aug 6;10(1):104. doi: 10.1186/s13148-018-0539-3. PMID 30081950
- BACKGROUNDNakano M, Ito M, Tanaka R, Yamaguchi K, Ariyama H, Mitsugi K, Yoshihiro T, Ohmura H, Tsuruta N, Hanamura F, Sagara K, Okumura Y, Nio K, Tsuchihashi K, Arita S, Kusaba H, Akashi K, Baba E. PD-1+ TIM-3+ T cells in malignant ascites predict prognosis of gastrointestinal cancer. Cancer Sci. 2018 Sep;109(9):2986-2992. doi: 10.1111/cas.13723. PMID 30187676
- BACKGROUNDKeir ME, Butte MJ, Freeman GJ, Sharpe AH. PD-1 and its ligands in tolerance and immunity. Annu Rev Immunol. 2008;26:677-704. doi: 10.1146/annurev.immunol.26.021607.090331. PMID 18173375