Abstract:
Introduction: “Liver cirrhosis represents the final common pathway for chronic liver
diseases, characterized by fibrosis, architectural distortion, and hepatic dysfunction.” While hepatic manifestations are well-documented, cirrhosis affects multiple organ
systems, including the lungs. Pulmonary complications in cirrhosis include
hepatopulmonary syndrome, portopulmonary hypertension, hepatic hydrothorax, and
altered pulmonary function, significantly impacting morbidity and mortality. “This
study aimed to evaluate the relationship between liver cirrhosis severity and
pulmonary function parameters to establish patterns that might guide clinical
management and prognostication.”
Methods: “Sixty-five patients with liver cirrhosis were categorized according to Child- Pugh classification: Child A (n=6), Child B (n=21), and Child C (n=38).” Demographic characteristics, clinical features, Child-Pugh and MELD scores, ultrasonographic findings, arterial blood gases, and pulmonary function tests were
assessed. Pulmonary function parameters included FVC, FEV1, FEV1/FVC ratio, and
FEF 25-75%, measured both pre- and post-bronchodilator administration. Statistical
analysis included ANOVA, chi-square test, and correlation analysis.
Results:
Significant differences were observed in age across Child-Pugh groups
(p=0.019). Child-Pugh and MELD scores showed expected significant differences
(p<0.001). Ascites severity increased significantly with worsening liver function
(p<0.001). Pulmonary function tests revealed significant declines in FVC and FEV1
percentages with increasing disease severity (p<0.05), both pre- and post-Docusign Envelope ID: 62549D81-9846-4EA0-8665-A57F5665692E
bronchodilator. Restrictive ventilatory pattern predominated in Child C patients
(94.7%) compared to Child A (33.3%) and Child B (47.6%) (p<0.001). Arterial blood
gases showed a trend toward decreasing pH and PO2 with worsening liver function. Significant negative correlations were found between Child-Pugh score and pulmonary function parameters, including FVC, FEV1, and FEF 25-75% (p<0.001), while correlations with MELD score were weaker but still significant for FVC and FEV1.
Conclusion:
Pulmonary function deteriorates progressively with increasing severity of liver cirrhosis, predominantly manifesting as a restrictive pattern in advanced disease. The significant negative correlations between liver disease severity scores and pulmonary function parameters suggest that pulmonary impairment parallels hepatic dysfunction. These findings highlight the importance of routine pulmonary function assessment in cirrhotic patients, particularly those with advanced disease, to identify abnormalities early and implement appropriate interventions