Clinical trial · Interventional
Perioperative Immunonutrition, Phagocytic and Bactericidal Activity of Blood Platelets in Gastric Cancer Patients
Prospective Study of the Effect of Perioperative Immunonutrition on the Immune Host Defense and the Phagocytic and Bactericidal Activity of Blood Platelets in Gastric Cancer Patients.
- 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)
Perioperative immunonutrition in gastric cancer patients can reduce perioperative morbidity and may improve quality of their life. Patients with gastric cancer will be divided into four groups depending on the type of artificial nutrition. Group I (enteral feeding) and II (enteral feeding and parenteral nutrition with glutamine) will be administered nutritional therapy during the postoperative period, group III (oral arginine) and IV (parenteral immunonutrition) patients will be treated nutritionally both prior to and after the surgery. The lymphocytes and their subpopulations, interleukin IL-1B,-6,-23, and the phagocytic, and bactericidal activity of blood platelets will be determined before and after nutritional therapy.
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 |
|---|---|---|---|
| Gastric Cancer | Malignant Gastric Neoplasm | CURATED_BROADER | 0.80 |
Interventions
Interventions (4)
| Intervention | Type | Mapped drug | Match |
|---|---|---|---|
| Early postoperative enteral nutrition, based on standard elementary diet (Peptisorb) | Dietary Supplement | — | UNRESOLVED |
| glutamine | Drug | — | UNRESOLVED |
| oral diet enriched with arginine (Cubitan) | Dietary Supplement | — | UNRESOLVED |
| Perioperative parenteral immunonutrition (Dipeptiven, Omegaven) | Drug | — | UNRESOLVED |
Design
Arms and outcomes
Arms (4)
- type
- ACTIVE_COMPARATOR
- label
- I - Nutritional therapy only during the postoperative period.
- description
- Postoperative nutritional therapy administered in group I will not include immunomodulating factors. Early postoperative enteral nutrition, based on standard elementary diet (Peptisorb), starts 20 hours post-surgery. The initial flow rate will be 8 ml/h, which will be increased gradually, with the volume doubled every 24 hours, up to 100 ml/h. The enteral nutrition will be continued for six days. During the initial five days post-surgery, the patients will be additionally supplemented parenterally via peripheral veins (commercially available two-chamber bag for peripheral access with 480 kcal of energetic value and 5.7g of N contained in standard amino acids).
- interventionNames
- Dietary Supplement: Early postoperative enteral nutrition, based on standard elementary diet (Peptisorb)
- type
- ACTIVE_COMPARATOR
- label
- II - parenteral glutamine in postoperative time
- description
- The nutritional therapy of group II patients will start post-surgery. It will be based on early enteral nutrition with elementary diet (Peptisorb) with simultaneous parenteral nutrition with two-chamber bag with 480 kcal energetic value and 5.7g of N contained in standard amino acids administered via peripheral veins. Additionally, glutamine (100 ml of Dipeptiven) will be added to the two-chamber bag. The parenteral nutrition will be administered for five days.
Eligibility
Eligibility (as posted)
- Sex
- All
- Minimum age
- 18 Years
Show eligibility criteria text
Inclusion Criteria: * gastric cancer Exclusion Criteria: * for group III constituted gastric cancer associated with severe gastrointestinal obstruction
References
Publications (2)
- RESULTNoisakran S, Gibbons RV, Songprakhon P, Jairungsri A, Ajariyakhajorn Ch, Nisalak A, Jarman RG, Malasit P, Chokephaibulkit K, Perng GC. Detection of dengue virus in platelets isolated from dengue patients. Southeast Asian J Trop Med Public Health. 2009; 40: 253-262. Mustard JF, Packham MA. Platelet phagocytosis. Sem Haematol 1968; 2: 168-184. Clawson CC, White JG.: Platelet interaction with bacteria. I Reaction phases and effects on inhibitors. Am I Pathol 1971; 65: 367-380. Kemona H, Andrzejewska A, Prokopowicz J, Nowak H, Mantur M. Phagocytic activity of human blood platelets examined by electron microscopy. Folia Haematol Int Mag Klin Morphol Blutforsch 1986; 113: 696-702. Bessler H, Agam G, Diadetti M. Increased protein synthesis by human platelets during phagocytosis of latex particles in vivo. Thromb Diath Haemorrh 1976; 35: 350-357. Tang YQ, Yeaman MR, Selsted ME. Antimicrobial peptides from human platelets. Infect Immun 2002; 70: 6524-6533. Yeaman MR. The role of platelets in antimicrobial host defense. Clin Infect Dis 1997; 5: 951-968. Page CP. Platelets as inflammatory cells. Immunopharmacology 1989; 17: 51-59. Sun B, Li J, Kambayashi J. Interaction between GPIbalpha and FcgammaIIa receptor in human platelets. Biochem Biophys Res Commun 1999; 266: 24-27. Kemona H, Andrzejewska A, Prokopowicz J, Nowak H, Mantur M. Phagocytic activity of human blood platelets examined by electron microscopy. Folia Haematol 1986; 113: 696-702. Nash GF, Turner LF, Scully MF, Kakkar AK. Platelets and cancer. Lancet Oncol 2002; 3: 425-430. Yu Y, Zhou XD, Liu YK, Ren N, Chen J. Platelets promote the adhesion of human hepatoma cells with highly metastatic potential to extracellular matrix protein: involvement of platelets P-selectin and GP IIb-IIIa. J Cancer Res Clin Oncol 2002; 128: 283-287. Kamocki Z, Matowicka-Karna J, Piotrowski Z, Kemona H. Bacteriocidal capacity of platelets in gastric cancer patients. Neoplasma 2004; 51: 265-268
- DERIVEDKamocki Z, Matowicka-Karna J, Gryko M, Zareba K, Kedra B, Kemona H. The effect of perioperative immunonutrition on the phagocytic activity of blood platelets in advanced gastric cancer patients. Clin Dev Immunol. 2013;2013:435672. doi: 10.1155/2013/435672. Epub 2013 Dec 1. PMID 24363760