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Ultrastructural and permeability features of microvessels in the olfactory bulbs of SAM mice
M Ueno1, I Akiguchi, M Hosokawa
1Second Department of Pathology, Kagawa Medical University, Japan.
Abstract:
The ultrastructural features of microvessels showing increased permeability to intravenously injected horseradish peroxidase (HRP) were examined in the olfactory bulbs of senescence-accelerated prone mice (SAMP8), which showed age-related deficits in learning and memory, and senescence-accelerated resistant mice (SAMR1), which did not show the age-related deficits. HRP was visualized with tetramethyl benzidine (TMB) and diaminobenzidine (DAB) for light and electron microscopic examination, respectively. In the olfactory bulbs of 13-month-old SAMP8 mice, the staining reaction with TMB for HRP appeared in the neuropil of central area (granule cell layer and subependymal layer), in the pia mater and in the vascular wall. Some vessels located in the central area showed several changes observed at the ultrastructural level. The cytoplasm of the endothelial cells, especially in the arterioles, was segmentally thickened and contained numerous vesicles and vacuoles, some of which were HRP positive. The endothelial cell surface was occasionally undulated with microvillous protrusions. Membranous inclusions within the basal lamina, suggesting the cellular (presumably pericytal) degeneration, were frequently observed, especially in venules. The collagen deposits were occasionally observed in the subendothelial space of some vessels. Perivascular cells with vacuolated inclusions or lipid-like droplets were present around some vessels in the central area of the olfactory bulbs of aged SAMP8 mice. On the other hand, in the microvessels located in the areas negative for HRP-TMB reaction, except the vessel walls, the cytoplasm of the endothelial cells with smooth luminal surface was flattened and some vesicles located there contained HRP-DAB reaction product. Weak staining reaction with TMB for HRP appeared also in the central area of the olfactory bulbs of 3-month-old SAMP8 mice and 3- and 13-month-old SAMR1 mice. The cytoplasm of the endothelial cells in the olfactory bulbs of these mice was focally thickened and contained some cytoplasmic vesicles. Occasionally, the endothelial cell surface was moderately undulated with few microvillous protrusions. Membranous inclusions within the basal lamina were not observed in these animals. These findings indicate that the endothelial cells and pericytes in some vessels located in the central area of the olfactory bulb of aged SAMP8 mice, which show staining reaction with TMB for HRP, are ultrastructurally changed, suggesting their altered functions.
Insights
Ultrastructural changes in olfactory bulb microvessels of aged senescence-accelerated prone mice (SAMP8) suggest altered function, potentially linked to cognitive deficits. These changes were not observed in younger SAMP8 or control mice.
Area of Science:
- Neuroscience
- Cell Biology
- Aging Research
Background:
- Senescence-accelerated prone mice (SAMP8) exhibit age-related learning and memory deficits.
- Olfactory bulb microvasculature integrity is crucial for neuronal function.
- Age-related changes in brain microvessels can impact cognitive performance.
Purpose of the Study:
- To investigate the ultrastructural changes in olfactory bulb microvessels of SAMP8 mice compared to senescence-accelerated resistant mice (SAMR1).
- To correlate microvessel alterations with age-related cognitive decline observed in SAMP8 mice.
Main Methods:
- Intravenous injection of horseradish peroxidase (HRP) to assess microvessel permeability.
- Light and electron microscopy using tetramethyl benzidine (TMB) and diaminobenzidine (DAB) for HRP visualization.
- Comparative ultrastructural analysis of olfactory bulb microvessels in aged SAMP8 and SAMR1 mice, as well as young SAMP8 mice.
Main Results:
- Aged SAMP8 mice showed increased HRP permeability in olfactory bulb microvessels, with ultrastructural changes in endothelial cells and pericytes.
- Endothelial cells exhibited thickened cytoplasm, increased vesicles, and undulated surfaces.
- Degenerative changes, collagen deposits, and perivascular cell alterations were observed in aged SAMP8 mice.
Conclusions:
- Ultrastructural alterations in olfactory bulb microvessels of aged SAMP8 mice indicate compromised vascular integrity.
- These microvessel changes suggest a potential role in the observed age-related cognitive deficits.
- The findings highlight the importance of vascular health in cognitive aging.