Related Experiment Video
Updated: Feb 9, 2026

Human Liver Microphysiological System for Assessing Drug-Induced Liver Toxicity In Vitro
Published on: January 31, 2022
Experimental study of subchronic toxicity of lanthanum nitrate on liver in rats
Dong Chen1, Ying Liu, Ai-Jun Chen
1Department of Histology, Jilin University Norman Bethune Medical Center, Jilin University, Jilin, People's Republic of China.
Abstract:
Wistar rats were divided into six groups, which were given La (NO(3))(3) at 20.0, 10.0, 2.0, 0.2, and 0.1 mg/kg, and the control group, which was given physiological saline, respectively, for six months. Pathological changes of liver were observed via light microscopy and transmission electron microscopy. Glutamic-oxalacetic transaminase, glutamic-pyruvic transitanase, gamma-glutamyl transferase, and alkline phosphatase activities in the serum were measured. Superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), and malondialdehyde of liver were determined. The metabolic accumulation of lanthanum in rat liver was investigated via inductively coupled plasma mass spectrometry. Results showed no abnormal biochemical changes. In the group of 20.0 mg/kg La(NO(3))(3), there were loss of weight, decrease of glycogen in the hepatocytes, denser matrix of the mitochondria, and deformation of the nuclei of some hepatocytes with different degrees and infiltration of inflammatory cells in the portal area. The higher was the dose, the higher was the number of bodies contain high electronic dense gravel-like granules, and secondary lysosomes with dense bodies were observed. In the group fed 0.1 mg/kg La(NO(3))(3), intracellular glycogen showed an increasing tendency, particularly increased animal growth and increased activities of SOD and GSH-Px. The content of La in the liver increased regularly with increase in dose and time of administration. The results further proved that low-dose La(NO(3))(3) produced some specific biologic effects. This study illustrated the influence of La(NO(3))(3) on rat liver at cellular and subcellular levels and it provides an experimental basis for the purpose of setting a reasonable standard for safely utilizing rare earth elements.
Related Concept Videos
Electrophilic Aromatic Substitution: Nitration of Benzene
Antianginal Drugs: Nitrates and β-Blockers
Organic nitrates, such as nitroglycerin, play a pivotal role. Once metabolized, they liberate nitric oxide, a molecular marvel. Nitric oxide triggers guanylyl cyclase and augments cGMP production. This biochemical cascade orchestrates the relaxation of vascular smooth muscles, ushering in vasodilation and enhancing coronary blood flow....
Toxic Reactions: Overview
Toxicity falls into two primary categories: local and systemic.
Local toxicity appears at the exposure site, such as protein denaturation caused by caustic substances.
In contrast, systemic toxicity requires the toxic agent's absorption and distribution,...
Liver Histology
Hepatocytes perform a variety of essential functions. They secrete...
Liver Physiology
Metabolic Regulation:
The liver is the central organ involved in regulating blood composition. It stabilizes blood glucose levels, maintaining them within the range of 70–110 mg/dL. When these levels drop, the liver breaks down glycogen reserves and releases glucose into the bloodstream. It can...
Liver Regeneration
Cells of Liver
The liver comprises four major types of cells— hepatocytes, stellate, Kupffer, and sinusoidal endothelial cells. The hepatocytes are...

