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Updated: Sep 16, 2026

Human Liver Microphysiological System for Assessing Drug-Induced Liver Toxicity In Vitro
Published on: January 31, 2022
Liver microsomes; an integrated morphological and biochemical study
Abstract:
Rat liver, liver homogenates, and microsome fractions separated therefrom were examined systematically in the electron microscope in sections of OsO(4)-fixed, methacrylate-embedded tissue and pellets. It was found that most microsomes are morphologically identical with the rough surfaced elements of the endoplasmic reticula of hepatic cells. They appear as isolated, membrane-bound vesicles, tubules, and cisternae which contain an apparently homogeneous material of noticeable density, and bear small, dense particles (100 to 150 A) attached to their outer aspect. In solutions of various osmolar concentrations they behave like osmometers. The findings suggest that they derive from the endoplasmic reticulum by a generalized pinching-off process rather than by mechanical fragmentation. The microsome fractions contain in addition relatively few vesicles free of attached particles, probably derived from the smooth surfaced parts of the endoplasmic reticula. Dense, peribiliary bodies represent a minor component of the same fractions. The microsomes derived from 1 gm. wet weight liver pulp contained (averages of 10 experiments) 3.09 mg. protein N, 3.46 mg. RNA (RNA/protein N = 1.12), and 487 microg. phospholipide P. They displayed DPNH-cytochrome c reductase activity and contained an alcohol-soluble hemochromogen. The microsome preparations proved resistant to washing and "aging." Treatment with versene and incubation with ribonuclease (30 minutes at 37 degrees C.) resulted in appreciable losses of RNA and in partial or total disappearance of attached particles. Treatment with deoxycholate (0.3 to 0.5 per cent, pH = 7.5) induced a partial clarification of the microsome suspensions which, upon centrifugation, yielded a small pellet of conglomerated small, dense particles (100 to 150 A) with only occasionally interspersed vesicles. The pellet contained approximately 80 to 90 per cent of the RNA and approximately 20 per cent of the protein N of the original microsomes. The supernatant accounted satisfactorily for the materials lost during deoxycholate treatment. The findings suggest that the microsomal RNA is associated with the small particles whereas most of the protein and nearly all of the phospholipide, hemochromogen, and DPNH-cytochrome c reductase activity are associated with the membrane or content of the microsomes.
Insights
Rat liver microsomes, primarily derived from the endoplasmic reticulum, are membrane-bound vesicles containing RNA and protein. These microsomes exhibit enzymatic activity and their RNA is linked to small particles.
Area of Science:
- Cell Biology
- Biochemistry
- Hepatology
Background:
- Microsomes are crucial subcellular fractions derived from the endoplasmic reticulum in hepatic cells.
- Understanding microsome composition and origin is vital for cellular function studies.
Purpose of the Study:
- To systematically examine the morphology and composition of rat liver microsomes using electron microscopy.
- To investigate the origin and structural components of microsomes, including their association with RNA and enzymatic activity.
Main Methods:
- Electron microscopy of OsO(4)-fixed, methacrylate-embedded rat liver tissue, homogenates, and microsome fractions.
- Biochemical analysis of microsome fractions for protein nitrogen, RNA, and phospholipide content.
- Enzymatic assays for DPNH-cytochrome c reductase activity and identification of hemochromogen.
- Differential centrifugation after deoxycholate treatment to isolate particulate components.
Main Results:
- Most microsomes resemble rough endoplasmic reticulum, appearing as membrane-bound vesicles with attached dense particles (100-150 A).
- Microsomes behave as osmometers, suggesting derivation from the endoplasmic reticulum via pinching-off rather than fragmentation.
- Microsome fractions contain RNA (RNA/protein N ratio of 1.12), protein, phospholipides, hemochromogen, and DPNH-cytochrome c reductase activity.
- Treatment with ribonuclease and deoxycholate indicated that microsomal RNA is associated with the small dense particles, while protein and enzymatic activity are linked to the membranes.
Conclusions:
- Rat liver microsomes are predominantly derived from the rough endoplasmic reticulum through a pinching-off process.
- Microsomal RNA is primarily associated with small, dense particles, distinct from the membrane-bound structures containing most proteins and enzymatic activities.
