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Aggregated plasmalemmal vesicles and microvilli in human astrocytoma
Abstract:
Plasmalemmal vesicles and microvilli or filopodia in human astrocytoma were examined with thin-section and freeze-fracture techniques. The plasmalemmal vesicles, although sparsely scattered in distribution, were often aggregated in a curvilinear, semicircular, or circular fashion, and the involved plasma membrane was often protruded externally like a mound. Microvilli or filopodia were cross-fractured when fracture travelled within the plasma membrane resulting in a fracture face interrupted by numerous holes of cytoplasms. The microvilli were distributed in a concentrated manner on the free surface of the cell and often closely oriented in a linear, curvilinear, or circular fashion. They varied in size, form, and length. When they were arisen from a common hillock of the plasma membrane, its fracture face was elongated, up to 0.8 mu in length. Fenestrae were occasionally visible in attenuated cytoplasm which surrounded peripheral vacuole in the cell.
Insights
Researchers studied plasmalemmal vesicles and microvilli in human astrocytoma using advanced microscopy. Findings reveal unique cellular structures and membrane protrusions important for understanding astrocytoma cell morphology.
Area of Science:
- Cell Biology
- Neuro-Oncology
Background:
- Human astrocytoma is a primary brain tumor.
- Understanding astrocytoma cell surface morphology is crucial for diagnosis and treatment.
Purpose of the Study:
- To investigate the ultrastructure of plasmalemmal vesicles and microvilli in human astrocytoma.
- To characterize the arrangement and morphology of these cell surface features.
Main Methods:
- Thin-section electron microscopy
- Freeze-fracture electron microscopy
Main Results:
- Plasmalemmal vesicles were observed, often aggregated in specific patterns.
- Microvilli/filopodia showed varied morphology and distribution, with some arising from common membrane hillocks.
- Fenestrae were occasionally noted in attenuated cytoplasm.
Conclusions:
- The study provides detailed ultrastructural insights into human astrocytoma cell surface features.
- The observed morphology of vesicles and microvilli may have implications for astrocytoma cell behavior and function.