Cytochemistry of intraplatelet Ca++ spots as a peripheral marker of age-related brain impairment.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to C Bertoni-Freddari.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
The present study examined the effects of ageing on preprotachykinin-A (PPT-A) mRNA levels in discrete regions of the rat brain. Semiquantitative analysis of silver grains revealed a 16% statistically significant decrease in PPT-A mRNA in the shell of the nucleus accumbens (AcbSh), a 27.6% statistically significant lower level of PPT-A mRNA in the olfactory tubercle (Tu), a 19.2% and 31. 5% statistically significant decrease in PPT-A mRNA in the dorsal and ventral caudate-putamen (d-CPu) (v-CPu), respectively, a 30% statistically significant lower expression of PPT-A mRNA in the bed nucleus of the stria terminalis (BNST), a 33.7% statistically significant decrease in PPT-A mRNA in the habenula (Hb) and a 30% statistically significant decrease of PPT-A mRNA levels in the postero-dorsal part of the medial amygdala (MePD). No changes in PPT-A mRNA levels were found in the nucleus accumbens, core (AcbC), in the islands of Calleja (Icj), and in the medial preoptic area (mPOA). These results show that ageing of the central nervous system (CNS) is associated with widespread changes in tachykinin gene expression, suggesting that alteration in the tachykinergic system may have implications in the physio-pathology of the elderly.
Bovine Marfan syndrome has all the major pathognomonic, clinical, and pathological features of the human syndrome. To further explore the alterations characterizing Marfan syndrome, musculoskeletal tissues from affected and healthy cattle were subjected to histochemical and histomorphometric analysis. Our findings demonstrated reduced elastic fiber content in the periosteum, capsule, interosseous ligament, and flexor tendons of the metatarsophalangeal joint of affected cattle. The elastic properties of a tissue are supplied by elastic fibers in the extracellular matrix; therefore, their reduced content in articular tissues suggests that these fibers could be functionally incompetent to withstand normal stress, causing a predisposition to joint laxity and dislocation. Moreover, perichondrial-periosteal membranes, which are made of collagen and elastic fibers, are known to affect the growth process of the long bones. The decrease in the number of elastic fibers in these membranes could result in reduced restraint of skeletal growth and explain some skeletal abnormalities of Marfan syndrome (i.e., dolichostenomelic habitus).
OBJECTIVE: To perform a morphometric evaluation of calcium deposits in human platelets as a quantitative procedure to seek a potential marker of senility in a peripheral cellular model. STUDY DESIGN: In human blood samples from middle-aged, healthy volunteers, the intraplatelet calcium content was cytochemically evidenced by the oxalatepyroantimonate (OPA) reaction. The number and area of OPA aggregates per square micrometer of total sampled area, the area of the deposits per square micrometer of platelet surface and the percentage of positive platelets were the ultrastructural features calculated by computer-assisted image analysis. RESULTS: OPA precipitates were easily identified in all the samples evaluated. The area of OPA deposits per square micrometer of platelet surface was rather constant not only among the measurements performed on the same sample but also comparing the different subjects analyzed. Other OPA deposit features showed higher variabilities; thus, to obtain a representative sample from each patient, several measurements had to be carried out. CONCLUSION: Quantitation of calcium deposits may be of help in evidencing increased Ca++ sequestering activity by platelets, supposedly due to altered calcium homeostasis. The OPA cytochemical procedure visualizes millimolar quantities of Ca++ ions; thus, only high calcium concentration sites (granules) can be detected by morphometric methods.
The perikaryal Purkinje cell mitochondria positive to the copper ferrocyanide histochemical reaction for succinic dehydrogenase (SDH) have been investigated by means of semiautomatic morphometric methods in rats of 3, 12 and 24 months of age. The number of organelles/microm3 of Purkinje cell cytoplasm (Numeric density: Nv), the average mitochondrial volume (V) and the mitochondrial volume fraction (Volume density: Vv) were the ultrastructural parameters taken into account. Nv was significantly higher at 12 than at 3 and 24 months of age. V was significantly decreased at 12 and 24 months of age, but no difference was envisaged between adult and old rats. Vv was significantly decreased in old animals vs. the other age groups. In young and old rats, the percentage of organelles larger than 0.32 microm3 was 13.5 and 11%, respectively, while these enlarged mitochondria accounted for less than 1% in the adult group. Since SDH activity is of critical importance when energy demand is high, the marked decrease of Vv supports an impaired capacity of the old Purkinje cells to match actual energy supply at sustained transmission of the nervous impulse. However, the high percentage of enlarged organelles found in old rats may witness a morphofunctional compensatory response.
OBJECTIVE: To measure the effect of age on synaptic morphologic rearrangements in human brain tissue peripheral to space-occupying lesions. STUDY DESIGN: Synaptic length (L) was measured interactively by computer-assisted image analysis in brain tissue samples from adult (mean age, 39 years) and old (mean age, 67.2 years) patients. Each group consisted of five subjects. RESULTS: L was reduced by 9% in the old vs. adult group of patients. A percent distribution of the data showed that junctional areas smaller than 0.25 micron accounted for 47.2% in old patients and 31% in the adults. CONCLUSION: The present findings are in contrast with current literature data documenting a significant increase in the percent of enlarged contact zones in the senile brain. We interpret these results in terms of synaptic dynamic morphology and suggest that they may reflect alterations of neuronal adaptive capabilities due both to the pathologic condition and age of the patients.
OBJECTIVE: To set up a computer-assisted morphometric procedure to cytochemically measure the activity of succinic dehydrogenase (SDH). STUDY DESIGN: In rat mitochondria from Purkinje cell perikarya and frozen muscle samples, SDH activity was selectively evidenced by the copper ferrocyanide method. On the SDH-positive organelles we measured the following parameters: number of mitochondria per cubic micrometer (numeric density [Nv]), volume fraction of organelles per cubic micrometer (volume density [Vv]), average mitochondrial volume (V) and intramitochondrial area density of the SDH reaction (area of the precipitates/total mitochondrial area [R]). RESULTS: In both fresh Purkinje cells and frozen muscle cells the positive organelles were sharply evident. By considering Vv, Nv and V altogether in a given experimental group, a reliable evaluation of the morphologic rearrangements of the cellular metabolic hardware can be obtained. Measurements of R provides information on the functional efficiency of each organelle. CONCLUSION: Quantitation of SDH-positive mitochondria is closely associated with the amount of enzyme molecules present and active within the organelles. Thus, quantitative assessment of the copper ferrocyanide reaction contributes to the evaluation of mitochondrial metabolic competence.
The pathogenetic mechanisms causing a dementing brain disease after temporary ischemia, heat shock, or brain trauma are surveyed. These lesions increase beta amyloid precursor protein (beta APP) synthesis. This process is potentiated by an ischemic glutamate release that opens cellular Ca2+ channels, inhibiting glucose turnover and ATP production, which is, under these conditions, accompanied by the generation of beta amyloid (beta A), even in young persons. Beta amyloid starts a vicious circle by inactivating the glycolytic key enzyme, phosphofructokinase, which, with age, exhausts the functional reserve capacity of the brain. This demonstrates that beta A is an epiphenomenon of a dementing brain disease, triggered by the disturbance of glucose turnover and oxidative phosphorylation. Clinical studies have shown that a dementing brain disease can be clearly objectified and monitored by 18F-2-deoxyglucose PET studies. This paper looks briefly at pharmacologic approaches to this disease using models of temporary ischemia, the testing of 14C-deoxyglucose turnover, or examination with 31P magnetic resonance spectroscopy techniques. In conclusion, the key process of all dementing brain diseases of the Alzheimer type is a decreased glucose turnover and subsequently decreased oxidative phosphorylation, linked directly to a secondary amyloid formation and nerve cell atrophy.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
A computer-assisted morphometric study has been carried out on the ultrastructure of perikaryal CA1 pyramidal cell mitochondria positive to the copper ferricyanide cytochemical reaction for succinic dehydrogenase (SDH) in rats of 3, 12 and 23 months of age. The cytoplasmic volume fraction occupied by the positive mitochondria (Volume density: Vv), the number of organelles/micron 3 of CA1 pyramidal cell cytoplasm (Numerical density: Nv) and the average mitochondrial volume (V) were automatically calculated by means of computer-assisted morphometry. Vv was significantly decreased in 23-month-old animals versus the other age groups. Nv was unchanged between 3 and 12 months of age, but was decreased to a significant extent in old animals. V did not undergo significant changes in the three age groups taken into account. In the old animals the percent of organelles smaller than 0.16 micron 3 is above 20%, while in the young and adult groups the same size of mitochondria accounts for 7 and 3%, respectively. Thus, a reduction in the number of medium sized organelles appears to be responsible for the decrease in Vv due to age. Since SDH activity is known to support maximum rates of respiration, quantitative estimation of the active mitochondria provides information on the metabolic competence of the cells investigated when energy demand is high. In this context, our present findings document that a significant impairment in the efficiency to match actual energy provisions occurs in old CA1 pyramidal cells.
Age-related changes in neuroplasticity have been investigated considering the neuronal growth-associated protein GAP-43 as a marker of nerve cell structural adaptive capabilities. We carried out a quantitative immunohistochemical study on the distribution of GAP-43 in the molecular layer of the cerebellar cortex, in the inner molecular layer of the hippocampal dentate gyrus, in the stratum radiatum of the CA1 region, in layer 1 of the cingulate cortex and in the nerve fiber layer of the main olfactory bulb of 3-, 18- and 31-month-old Wistar rats. A decrease of GAP-43 immunoreactivity was observed in the old rats in comparison with the adult animals in all the 5 areas analyzed, although these variations were only statistically significant in the dentate gyrus, cingulate cortex and olfactory bulb. In these latter zones, GAP-43 immunolabeling is reduced by 54, 42 and 38%, respectively, in the old versus the adult group. Comparing these data with the age-dependent decrease of neuron density innervating the areas investigated, we support the hypothesis that the decline of GAP-43 observed in old animals documents a consistent reduction of axon plasticity in the inner molecular layer of the dentate gyrus and in layer 1 of the cingulate cortex. These results suggest an important role of GAP-43 as a marker of age-dependent deterioration of synaptic plasticity, especially in those areas of the brain involved in memory and emotional behavior.
Synaptic junctional areas are not immutable structures, on the contrary, they are remodelled throughout the individual's lifespan as a consequence of environmental stimulations. This adaptive capacity of the synapses is discussed from a morphological standpoint with reference to aging. In old subjects, the number of contacts and the total surface area of synaptic appositions per unit volume of tissue decrease significantly, while the average synaptic size increases at a different extent according to the CNS area taken into account. This increase in synaptic average area is due to a higher percent of a subpopulation of enlarged contacts supposed to represent either the degenerating junctional zones or a compensatory phenomenon counteracting the synaptic reduction in number. Recent studies on perforated synapses support that the enlarged junctions are possible intermediates in synaptic physiological restructuring, thus the higher percentage of this type of contacts in the old CNS may witness unaccomplished synaptic turnover cycles. Taking into account the high metabolic rate of nerve cells, an age-related impairment in energy provision at synaptic terminal regions may constitute an early and subtle alteration affecting synaptic dynamic morphology in aging.
OBJECTIVE: To seek age-dependent morphofunctional changes in mitochondrial metabolic competence in the rat cerebellum. STUDY DESIGN: Three-, 12- and 24-month-old female Wistar rats were used for the present study. Each group consisted of five animals. The cytoplasmic fraction occupied by mitochondria (volume density, Vu), number of organelles per cubic micrometer (numerical density, Nu) and mitochondrial average volume (V) were measured in Purkinje cell perikaryal organelles histochemically stained to reveal succinic dehydrogenase activity in the three groups analyzed. RESULTS: Vu did not show significant differences due to age. Nu was constant between 3 and 12 months of age but decreased significantly in old rats. V did not show significant age-dependent differences. CONCLUSION: The present findings further extend the results of our previous studies on the ultrastructure of synaptic mitochondria and support the concept of marked metabolic impairment as a basal detrimental condition in the process of brain aging. As a marker of metabolically active mitochondria at high rates of cellular respiration, our present data document that with advancing age the number of efficient organelles decreases and that this may be of critical importance for the proper function of nerve cells when the energy demand is high.
OBJECTIVE: To search for a deterioration threshold of synaptic ultrastructure in physiologic aging and senile dementia of Alzheimer's type (SDAT). STUDY DESIGN: The numerical density (Nu), average area (S) and surface density (Su) of the synaptic contact zones were investigated in the hippocampus and cerebellum from adults, elderly and SDAT patients by means of computer-assisted morphometry. RESULTS: The Nu and surface Su densities of the synapses decreased while the size of S enlarged in elderly and SDAT patients vs. the adults. By plotting Nu vs. S, the adult group showed a very high percentage of small junctions. In contrast, elderly and dementia patients demonstrated two overlapping populations of enlarged contacts. In SDAT the synapse-to-neuron ratio was decreased by 48% in the hippocampus and by 56% in the cerebellum. CONCLUSION: Our findings support the concept that the degeneration of synaptic contacts per se should be considered a crucial step in the progression of senile dementia, but the identification of a discrete deterioration threshold of synaptic morphology between aging and SDAT is not feasible at present.
OBJECTIVE: To measure the effect of chronic administration of acetylcarnitine (ALCAR) on the morphologic plasticity of rat hippocampal synapses. STUDY DESIGN: Computer-assisted morphometry was carried out on the ultrastructure of hippocampal synapses in 6-, 12- and 22-month-old rats and in age-matched animals chronically treated with ALCAR from the age of 1 month up to when they were killed. Synaptic numeric (Nv) and surface (Sv) densities as well as the synaptic average area (S) were measured in the dentate gyrus supragranular layer. RESULTS: In control animals, Nv was constant between 6 and 12 months of age but significantly decreased in 22-month-old rats, S did not show significant differences due to age and Sv was unchanged between 6 and 12 months but decreased significantly in the old animals. In ALCAR-treated rats, Nv increased and S decreased significantly vs. age-matched controls. Sv showed lifespan constancy among the age groups analyzed. In ALCAR-treated rats the number of synapses smaller than 0.08 microns 2 increased by 18%, 9% and 10% at 6, 12 and 22 months of age, respectively. CONCLUSION: We interpret these findings to represent positive modulation of the synaptic structural dynamics in ALCAR-treated animals through improvements in energy provision at nerve terminals.
Vitamin E (alpha-tocopherol) is a known biological antioxidant able to quench the lipid peroxidation chain and to protect the cellular structures (e.g., plasma membranes) from the attack of free radicals which are reported to play a primary role in aging. To assess whether the absence of alpha-tocopherol from the diet of young laboratory animals may be considered a reliable model of precocious brain aging, intracellular ionic content of brain cortex pyramidal cells, ultrastructural features of synaptic contact zones, synaptic mitochondria and perykarial mitochondria positive to the succinic dehydrogenase (SDH) histochemical reaction with copper ferrocyanide have been investigated by X-ray microanalysis and computer-assisted morphometry in young, adult, old and 11-month-old vitamin E deficient rats. Our data document significant alterations of intracellular ionic content, synaptic contact areas and synaptic and perykarial mitochondria in aging. Vitamin E deficiency caused similar alterations in adult animals. Taking into account the known role of alpha-tocopherol in protecting the cellular membrane structure, we support that the common process underlying the changes found in aging and vitamin E deficiency is an excessive deterioration of the neuronal membrane.