Histological manifestations of vitamin A toxicity in the liver

Vitamin A (VitA) is a fat-soluble micronutrient involved in various physiological processes. Its sustained intake exceeding physiological needs leads to increased hepatic accumulation warranting careful monitoring for potential health implications. Despite being widely studied in animal models, there are limited data on histopathology associated with VitA toxicity in human liver that are essential to understand organ response and its pathogenesis to guide clinical management. A literature search was conducted, focusing on peer-reviewed articles that explored the histological effects of excessive liver VitA accumulation in humans, excluding veterinary studies, reviews and articles without histological findings. Data on demographic, clinical, laboratory and histological information were extracted. Thirty-nine studies, including results from 84 liver tissue samples, were reviewed (1960s-2025). Patients' mean age was 40 (3-78) years, with a balanced gender distribution. The majority of cases were due to medical therapy (67.9%) or dietary supplements (27.4%). The mean VitA intake was 112,006 international units (IU)/day (equivalent to 33,600 μg/day) over 6.8 years. The most common histological findings were hepatic stellate cell (HSC) hypertrophy/hyperplasia (90.1%), sinusoidal fibrosis (44.1%), cirrhosis (25.0%), chronic hepatitis (23.8%) and variable steatosis, fibrosis and cholestasis. In humans, the hepatic response to excess VitA begins with HSC hypertrophy and hyperplasia, which represent the main adaptive storage mechanism; hepatotoxicity subsequently manifests through sinusoidal dilatation, chronic inflammation and fibrosis, occasionally progressing to cirrhosis. The severity of liver injury correlates with the duration and dose of VitA intake, with genetic and environmental factors potentially influencing clinical outcomes.

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Journal
Histopathology
Published
2026-08-27
DOI
https://doi.org/10.1111/his.70271
Primary Topic
Antioxidant Activity and Oxidative Stress
Type
article
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article

Histological manifestations of vitamin A toxicity in the liver

Georg Lietz, Giorgio Cazzaniga, Dina Tiniakos
Histopathology
Antioxidant Activity and Oxidative Stress
article

Histological manifestations of vitamin A toxicity in the liver

Georg Lietz, Giorgio Cazzaniga, Dina Tiniakos
article en

Abstract

Vitamin A (VitA) is a fat-soluble micronutrient involved in various physiological processes. Its sustained intake exceeding physiological needs leads to increased hepatic accumulation warranting careful monitoring for potential health implications. Despite being widely studied in animal models, there are limited data on histopathology associated with VitA toxicity in human liver that are essential to understand organ response and its pathogenesis to guide clinical management. A literature search was conducted, focusing on peer-reviewed articles that explored the histological effects of excessive liver VitA accumulation in humans, excluding veterinary studies, reviews and articles without histological findings. Data on demographic, clinical, laboratory and histological information were extracted. Thirty-nine studies, including results from 84 liver tissue samples, were reviewed (1960s-2025). Patients' mean age was 40 (3-78) years, with a balanced gender distribution. The majority of cases were due to medical therapy (67.9%) or dietary supplements (27.4%). The mean VitA intake was 112,006 international units (IU)/day (equivalent to 33,600 μg/day) over 6.8 years. The most common histological findings were hepatic stellate cell (HSC) hypertrophy/hyperplasia (90.1%), sinusoidal fibrosis (44.1%), cirrhosis (25.0%), chronic hepatitis (23.8%) and variable steatosis, fibrosis and cholestasis. In humans, the hepatic response to excess VitA begins with HSC hypertrophy and hyperplasia, which represent the main adaptive storage mechanism; hepatotoxicity subsequently manifests through sinusoidal dilatation, chronic inflammation and fibrosis, occasionally progressing to cirrhosis. The severity of liver injury correlates with the duration and dose of VitA intake, with genetic and environmental factors potentially influencing clinical outcomes.

Histopathology
National and Kapodistrian University of Athens (GR), Azienda Ospedaliera San Gerardo (IT), Aretaeio Hospital (GR), Newcastle University (GB)
Zero hunger
Openalex Percentile: Top 14%
Antioxidant Activity and Oxidative Stress
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