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Growth Hormone in Decompensated Liver Cirrhosis

Impact of Repurposed Growth Hormone Treatment on Clinical, Nutritional, Immunological and Regenerative Parameters in Decompensated Liver Cirrhosis: a Randomized Control Trial

Status
Completed
Phases
Phase 2Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05253287
Enrollment
96
Registered
2022-02-23
Start date
2022-02-01
Completion date
2024-12-31
Last updated
2025-12-16

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Digestive System Disease, End Stage Liver Disease, Fibrosis, Growth Hormone Treatment, Liver Cirrhosis, Physiological Effect of Drugs, Sarcopenia

Keywords

Decompensated liver cirrhosis, Growth hormone

Brief summary

Globally, cirrhosis and liver cancer carries a huge burden and accounts for about 3.5% (2 million) of all deaths every year. Once decompensated, i.e. development of ascites, variceal bleed, encephalopathy, and jaundice, the life expectancy is markedly reduced to a median of two years. The definitive treatment in this stage, i.e., liver transplantation is limited by cost, lack of donors, and life-long immunosuppression. In addition to complications due to portal hypertension and hepatic insufficiency, decompensated cirrhosis is associated with malnutrition, sarcopenia, immune dysfunction, and impaired regeneration. Patients with cirrhosis are growth hormone (GH) resistant, with reduced insulin-like growth factor, which are linked to malnutrition and poor liver regeneration in cirrhosis. Diverse preclinical and clinical investigations in vitro and in vivo, have shown a benefit of GH in GH deficient, elderly and HIV positive patients. GH therapy in cirrhosis has been shown to improve nitrogen economy and to improve the GH resistance in a small pilot study by Donaghy et al. Also, GH therapy of short duration has shown to increase IGF1 levels, IGFBP-3 levels in patients of cirrhosis. GH therapy has also been shown to improve liver regeneration and protein synthesis after hepatectomy in patients of HCC with cirrhosis. However, there is a scarcity of data on clinical impact of long term administration of GH therapy in patients of cirrhosis. Hence, we undertook the present study to study the effect of growth hormone on clinical outcomes, malnutrition, immune cells and liver regeneration in patients with cirrhosis.

Detailed description

Liver disease accounts for approximately 3.5% all deaths per year around the world, cirrhosis being the 11th most common cause of death globally. Liver cirrhosis is the final stage of all progressive and chronic liver diseases which progresses from asymptomatic compensated stage to decompensated at a rate of 5% to 7% each year. The major complications of liver cirrhosis are portal hypertension, ascites, spontaneous bacterial peritonitis (SBP), variceal bleed, hepatic encephalopathy (HE), hepatocellular carcinoma (HCC). Moreover, complications like protein-calorie malnutrition associated with sarcopenia, cirrhosis associated immune dysfunction (CAID) and impaired regeneration further adds to reduced survival. Liver transplantation is the only effective treatment for these patients but it is limited by resources, costs, expertise, and organ availability. Malnutrition is common in cirrhosis with prevalence ranging from 65 to 100%. Sarcopenia or loss of skeletal muscle mass is the major component of malnutrition in cirrhosis with prevalence of 40- 60%. Independent clinical consequences of sarcopenia in cirrhosis include lower survival, quality of life & increases risk of complications. Lack of improvement with nutritional supplementation is observed which may be attributed to GH resistance in cirrhotic patients further worsening sarcopenia. CAID is a dynamic phenomenon, comprised of both increased systemic inflammation and immunodeficiency, ultimately leading to 30% mortality. Immunodeficiency in cirrhosis roots from deranged local immunity of liver, compromised immune surveillance of the liver and impairments in systemic immune cells (innate as well as adaptive).The systemic inflammation results from persistent immune cell stimulation due to enhanced gut translocation leading to increased production of various proinflammatory cytokines. Liver regeneration is a complex and unique process. Hepatocytes have a remarkable capacity to meet the replacement demands during cellular loss. However, this regenerative capacity is overwhelmed during the late stage of acute liver injury, compromised in chronic liver injury, and lost in acute-on-chronic liver injury. GH administration have been shown to improve sarcopenia, immune functions & regeneration in clinical studies and preclinical studies both in vitro and in vivo. Patients with chronic liver diseases are GH resistant i.e. they have high GH levels & low levels of IGF-1. So, in this study, we will investigate the impact of growth hormone on additional parameters including clinical outcomes, immunological profile and select parameters of liver regeneration in decompensated liver cirrhosis.

Interventions

DRUGGrowth Hormone

GH therapy will be initiated at a low dose of 2U/day and titrated slowly based on IGF-1 levels) subcutaneously for 1 year.

Sponsors

Post Graduate Institute of Medical Education and Research, Chandigarh
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Intervention model description

Group 1 - Growth Hormone + Standard medical therapy Group 2 - Standard Medical Therapy

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

1. Age above 18 years. 2. Patients having confirmed diagnosis of decompensated cirrhosis, any etiology. 3. Patients having given an informed and written consent for participation in the study.

Exclusion criteria

1. Acute on chronic liver failure. 2. Diagnosis of concomitant hepatocellular carcinoma or other active malignancy. 3. Severe cardiac dysfunction NYHA grade III/IV, Chronic obstructive pulmonary disease GOLD C or above. 4. Active alcohol abuse in last 3 months. 5. Known hypersensitivity to GH. 6. Human immunodeficiency virus seropositivity. 7. Patients on antiviral therapy for HCV, HBV or corticosteroid for autoimmune hepatitis those who have received it within the last 6 months. 8. TIPS insertion within 6 months prior to study inclusion. 9. Pregnancy & lactation. 10. Uncontrolled diabetes (Hb A1c ≥ 9) or diabetic retinopathy. 11. Active sepsis.

Design outcomes

Primary

MeasureTime frameDescription
Incidence of complications of cirrhosis and infections12 MonthComplications of cirrhosis - Ascites, Hepatic encephalopathy, Gastrointestinal bleeding, Bacterial infections, Acute kidney injury
Complication free survival12 MonthComplications of cirrhosis - Ascites, Hepatic encephalopathy, Gastrointestinal bleeding, Bacterial infections, Acute kidney injury
Transplant free survival12 MonthTransplant free survival where event is transplant or death
Change in disease severity scores (CTP score)12 MonthThe Child-Turcotte-Pugh (CTP) score is used to assess the prognosis of patients with cirrhosis. The Pugh-Child score is determined by scoring five clinical measures of liver disease (Encephalopathy, Ascites, Albumin, Bilirubin and INR). A score of 1, 2, or 3 is given to each measure, with 3 being the most severe.
Change in disease severity scores (MELD Na)12 MonthThe MELD/Na score is a scoring system for accessing the severity of chronic liver disease using values as serum bilirubin, serum creatinine, and the international normalized ratio for prothrombin time and sodium, to predict survival.
Treatment related adverse events12 MonthAny adverse events related to growth hormone

Secondary

MeasureTime frameDescription
Change in cell death markers12 MonthMarkers of cell death - M30 & M65 will be assessed in serum using ELISA
Assessment of sarcopenia12 MonthSarcopenia will be assessed by calculation of Skeletal muscle index by taking cross sectional area of the psoas muscle at the level of the third lumbar vertebra on abdomen CT scans.
Change in surrogate markers for hepatic regeneration12 Monthsurrogate markers for hepatic regeneration- Hepatocytes growth factor will be assessed in serum using ELISA.
Change in liver frailty index12 MonthLFI (Liver frailty index) will be calculated by FrAILT software©
Change in nitrogen balance12 MonthNitrogen balance will be calculated by using formula - Nitrogen intake - nitrogen output
Change in myostatin levels12 MonthMyostatin in the serum will be measured in serum
Change in Functional capacity of Neutrophils12 MonthPhagocytic capacity and oxidative burst of neutrophils will be assessed using flow cytometry
Immunophenotyping of neutrophils12 MonthImmunophenotyping of neutrophils will be performed using flow-cytometry.

Countries

India

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026