Vera Irawany
Department of Anesthesiology and Intensive Care, Universitas Indonesia, Fatmawati General Hospital, Jakarta, Indonesia

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Gut-Origin Sepsis After Radical Cystectomy and Ileal Conduit: Early Intensive Care Unit Recognition and Targeted Management Leading to Rapid Recovery Ida Juita Halim; Vera Irawany
Journal of Society Medicine Vol. 5 No. 8 (2026): August
Publisher : CoinReads Media Prima

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.71197/jsocmed.v5i8.292

Abstract

Introduction: Gut-origin sepsis is an important but under-recognized source of postoperative systemic inflammation in critically ill patients. Disruption of the intestinal mucosal barrier after major surgery may facilitate bacterial translocation and trigger systemic inflammatory responses, even without overt intra-abdominal infection or positive blood culture. Early recognition remains challenging because clinical manifestations are often nonspecific, underscoring the value of simple, available biomarkers. Case Description: We report a 74-year-old man who developed early features suggestive of gut-origin sepsis after open radical cystectomy with ileal conduit for muscle-invasive bladder cancer. Despite stable macrocirculatory parameters and no vasopressor requirement, the patient exhibited persistent hyperlactatemia (6.1 mmol/L), lymphopenia (absolute lymphocyte count 711/µL), and an elevated neutrophil-to-lymphocyte ratio (NLR 16.9). Prompt admission to the intensive care unit and early targeted management—including optimized fluid resuscitation with albumin, broad-spectrum antimicrobial therapy, empirical antifungal coverage, and multimodal opioid-sparing analgesia—were followed by rapid clinical and laboratory improvement. Within 72 hours, serum lactate decreased to 2.8 mmol/L, the absolute lymphocyte count rose to 792/µL, and the NLR fell to 13.1. The patient was successfully extubated and discharged from the intensive care unit without progression to multiple organ dysfunction. Conclusion: This case underscores the clinical value of early intensive care recognition of gut-origin sepsis using simple, routinely available biomarkers, such as serum lactate, absolute lymphocyte count, and NLR. Optimal outcomes depend on a high index of suspicion and timely, physiology-based intervention delivered through a coordinated critical care approach in high-risk postoperative patients.
Immune-metabolic Failure in Fatal Septic Shock Caused by ESBL-producing Escherichia coli with a PICS-like Trajectory and Gastrointestinal Involvement: A Case Report Lundu Suhut Philip; Vera Irawany
Journal of Society Medicine Articles in Press
Publisher : CoinReads Media Prima

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Abstract

Introduction: Septic shock complicated by multiple organ dysfunction is a leading cause of death in critically ill patients. Infections caused by extended-spectrum beta-lactamase (ESBL)-producing Escherichia coli are particularly challenging because antimicrobial resistance may delay effective therapy. The gastrointestinal tract is increasingly recognized as an amplifier of systemic inflammation through barrier disruption and bacterial translocation, particularly in patients with chronic enteropathy and severe malnutrition. Case presentation: A 29-year-old man with a history of intestinal tuberculosis, inflammatory bowel disease, and recent nephrotic syndrome presented with chronic watery diarrhea, vomiting, oliguria, and scleral icterus. Admission findings included leukocytosis, lymphopenia, a neutrophil-to-lymphocyte ratio of 25.9, acute kidney injury, hyponatremia, profound hypoalbuminemia (12.1 g/L), and procalcitonin above 32 ug/L. His course progressed to encephalopathy, recurrent seizures, upper gastrointestinal bleeding, coagulopathy, and vasopressor-dependent shock with anuric renal failure requiring continuous renal replacement therapy. Blood cultures grew ESBL-producing E. coli, and contrast-enhanced abdominal computed tomography showed diffuse bowel wall thickening. Serial biomarkers revealed progressive lymphopenia, persistent hypoalbuminemia, and rising lactate (10.5 mmol/L), consistent with immune-metabolic failure and a persistent inflammation, immunosuppression, and catabolism syndrome (PICS)-like trajectory. He died on the intensive care unit on day 10 due to refractory multiorgan failure. Conclusion: In vulnerable hosts with chronic enteropathy and malnutrition, marked gastrointestinal involvement combined with serial immune-metabolic biomarkers may help identify early high-risk deterioration and support repeated source reassessment and timely antimicrobial optimization.