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Biomedical subjects

G M Halliday

Publications and source records attributed to G M Halliday.

At least 109 records · Page 6Linked to original sources

Progressive supranuclear palsy affects both the substantia nigra pars compacta and reticulata.

We have analyzed the neuropathology of the substantia nigra in four cases of progressive supranuclear palsy compared with age-matched controls and patients with Parkinson's disease. Although there are many reports of severe dopaminergic cell loss in progressive supranuclear palsy, the fate of the GABAergic pars reticulata neurones remains unclear. Serial section analysis and fractional counts of pars compacta neurones (identified by their neuromelanin pigment) and pars reticulata neurones (identified using parvalbumin immunohistochemistry) were performed, and the type and distribution of neuropathology were described. Severe neurodegeneration within the dopaminergic pars compacta was seen in all cases of progressive supranuclear palsy and all cases of Parkinson's disease compared with controls. Lewy body pathology was found only in cases of Parkinson's disease, while neurofibrillary tangles were seen only in cases of progressive supranuclear palsy. Tau-positive astrocytes and neuropil threads were occasionally seen in controls and cases of Parkinson's disease (particularly those of advanced age) but were extremely numerous in all cases of progressive supranuclear palsy. There was a similar decrease in parvalbumin immunoreactivity within the pars reticulata in both progressive supranuclear palsy and Parkinson's disease. However, there was a striking 70% reduction in the number of pars reticulata neurones in progressive supranuclear palsy, with no cell loss observed in Parkinson's disease compared with controls. Our results show that both the dopaminergic pars compacta and the GABAergic pars reticulata are significantly damaged in cases of progressive supranuclear palsy. The distribution of neurodegeneration in patients with Parkinson's disease and progressive supranuclear palsy is discussed with respect to the current theories on pathophysiology in basal ganglia circuitry.

Aged↗

Specific A10 dopaminergic nuclei in the midbrain degenerate in Parkinson's disease.

Using unbiased quantitative techniques, we evaluated the effect of Parkinson's disease on the regional size and the number of tyrosine hydroxylase-producing neurons and all neurons in the midbrain A8 and A10 dopaminergic cell groups located adjacent to the substantia nigra. Seven patients with Lewy body Parkinson's disease were evaluated and compared with five controls. Four of the patients with Parkinson's disease had additional neuropathology, and the effect of concomitant pathology on A10 populations was also determined. Degeneration was not observed in the A8 regions of any patient, and only certain A10 nuclei were affected by the disease. The parabrachial pigmented nucleus situated dorsal to the substantial nigra, and the parapeduncular nucleus located rostromedially were significantly reduced by 40-50% in patients with Parkinson's disease. Few differences were found between patients with or without additional pathology, suggesting a similar pathogenic mechanism to that observed in the substantia nigra of these patients. However, patients with additional pathology also had serotonergic cell loss in the caudal linear nucleus. There was a reduction in tyrosine hydroxylase immunoreactivity but no overt neurodegeneration in other A10 regions, suggesting the disease may also influence the production of dopamine in some surviving neurons.

Aged↗

Cell loss in the nucleus basalis is related to regional cortical atrophy in Alzheimer's disease.

Cortical atrophy and cell loss in the cholinergic nucleus basalis is a well-established characteristic of Alzheimer's disease; however, previous studies not have analysed cholinergic cell loss and cortical atrophy in concert. In autopsy brains from eight patients with Alzheimer's disease and 12 control subjects, the numbers of nucleus basalis neurons were determined from 50-microm serial Nissl-stained sections. Volumes of the cerebrum, cortical gray matter (total, lobar and subregional), white matter and deep gray structures were computed by point counting on black and white photographs of gapless 3-mm coronal slices of formalin-fixed brains. Cell loss in the nucleus basalis was found to range between 89% and 42% in Alzheimer's disease compared with controls. White matter volume was unchanged in absolute terms in Alzheimer's disease patients compared with controls, while cortical volume was significantly reduced. Gray matter atrophy was most prominent in temporal and frontal cortices. A highly significant linear relationship was found between cortical volume and nucleus basalis cell number in controls and Alzheimer's disease patients, with values for both groups on a single regression line. Whole brain and cerebral volumes were also highly correlated to nucleus basalis cell numbers in both groups. A quantitative analysis of plaque and tangle burden in cortical target areas of the nucleus basalis was performed. In contrast to the relationship with cortical volume, nucleus basalis cell number and neurofibrillary tangle number were not significantly correlated to the density of cortical histopathology. These results suggest that the volume of cortical gray matter is coupled to the number of nucleus basalis neurons. Compromised viability of nucleus basalis neurons may precede cortical volume loss as large numbers of neurofibrillary tangles, detected with nickel peroxidase staining, were found in this nucleus in all Alzheimer's disease cases, including those with minimal cell loss.

Adult↗

The cerebral cortex is damaged in chronic alcoholics.

There is some controversy in the literature concerning whether chronic alcohol consumption damages the cerebral cortex. While decreased neuronal density in specific cortical regions is well described in chronic alcoholics, a recent study by Badsberg Jensen and Pakkenberg using unbiased stereological methods questions whether neurodegeneration occurs. In order to assess selective neurodegeneration in the cerebral cortex of chronic alcoholics, regional volumes and unbiased estimates of regional neuronal number (including neuronal identification with calcium-binding proteins) were calculated for 14 chronic alcoholics and 21 controls. Cases were carefully screened to exclude any interfering pathologies. Lifetime and maximum daily alcohol consumption was determined, and homogeneous groups were identified (four chronic alcoholics with Wernicke's encephalopathy and Korsakoff's psychosis, four chronic alcoholics with Wernicke's encephalopathy alone, six chronic alcoholics without Wernicke's encephalopathy or Korsakoff's psychosis, and 21 controls). Brain volume analysis revealed that discrete regions were significantly smaller in the chronic alcoholics compared to controls. As previously shown, white matter regions (particularly in the frontal lobe) were the most significantly reduced in volume. Alcoholics with Wernicke's encephalopathy (either alone or in combination with Korsakoff's psychosis) had significantly smaller white matter volumes than controls or alcoholics without these complications. Medial temporal lobe regions and the thalamus were also reduced in volume. Regression analyses revealed that the volume of both the white matter and thalamus negatively correlated with alcohol consumption. Consistent with the interpretation of previous neuronal density studies, selective neuronal loss was found in the superior frontal association cortex of chronic alcoholics, while no loss occurred from the motor cortex. The number of parvalbumin-, calbindin- and calretinin-immunoreactive neurons was found to be unaltered in chronic alcoholics, suggesting that the neurodegeneration is confined to the non-GABAergic pyramidal neurons. As neurodegeneration was observed in all alcoholic groups, damage to the frontal association cortex is not restricted to alcoholics with the amnesia of Korsakoff's psychosis. These results are consistent with the notion that chronic alcohol consumption is associated with selective neuronal vulnerability. The selective frontal neurodegeneration and the frontal focus of white matter atrophy are supported by neuropsychological, regional blood flow, and magnetic resonance imaging studies of frontal lobe dysfunction in chronic alcoholics and may correlate with abnormalities in working memory.

Adult↗

The subthalamic nucleus in Parkinson's disease and progressive supranuclear palsy.

The subthalamus has become a promising target for the neurosurgical treatment of parkinsonian symptoms. We have used unbiased counting techniques to quantify the neuronal populations of the subthalamic nucleus in patients with idiopathic Parkinson's disease and progressive supranuclear palsy. In addition, the type of calcium binding proteins contained within these subthalamic neurons was established using immunohistochemistry. Most of the 550,000 subthalamic neurons contain either parvalbumin or calretinin calcium binding proteins, and patients with idiopathic Parkinson's disease sustained no damage to this nucleus. This is consistent with current theories of basal ganglia circuitry, which postulate that overstimulation of this excitatory nucleus contributes to the inhibition of the motor thalamus via the activation of inhibitory relays. In contrast, we found that there was substantial cell loss in the subthalamus in progressive supranuclear palsy (45 to 85% neuronal reduction) and that both cell types were equally affected. Extracellular neurofibrillary tangles as well as tau-positive glia were observed in the subthalamus of these cases. As the patients with Parkinson's disease and progressive supranuclear palsy all had overlapping parkinsonian symptoms, the loss of subthalamic stimulation within the basal ganglia of progressive supranuclear palsy cases is puzzling, unless their parkinsonian symptoms were generated by an alternate mechanism.

Aged↗

T helper 1 cytokine mRNA is increased in spontaneously regressing primary melanomas.

Spontaneous tumor regression, which is observed clinically and histologically in some primary melanomas, occurs in the absence of any effective therapy. It is probably immunologically mediated, because regressing melanomas are infiltrated with larger numbers of activated T cells, primarily CD4+, than nonregressing melanomas. To investigate the hypothesis that spontaneous regression of melanomas is caused by T-cell cytokine production, cytokine mRNA expression in 20 primary melanomas was examined using a noncompetitive, quantitative reverse-transcriptase polymerase chain reaction method. DNA standards were used to generate known numbers of molecules in each sample. Results were standardized to the internal control, glyceraldehyde-3-phosphate dehydrogenase. mRNA for CD35, lymphotoxin (TNF-beta), and IL-2 were significantly elevated in the ten regressing melanomas compared to the ten nonregressing melanomas. IFN-gamma mRNA was also elevated in regressing melanomas but failed to reach statistical significance. The Th2 cytokines IL-10 and IL-13 did not show differences in the regressing melanomas compared to nonregressing melanomas; neither did the pro-inflammatory cytokines IL-1alpha, IL-1beta, IL-6, IL-8, and TNF-alpha, nor the growth factors, bFGF and TGF-beta or GM-CSF. This study shows an association between Th1 cytokines and spontaneously regressing melanomas. Although we have not shown that these cytokines cause regression, these findings support our hypothesis that activated CD4+ T cells may mediate melanoma regression by secretion of Th1 cytokines.

Adult↗

Broad-spectrum sunscreens provide greater protection against ultraviolet-radiation-induced suppression of contact hypersensitivity to a recall antigen in humans.

This study investigates the extent to which sunscreens protect humans from ultraviolet (UV)-radiation-induced immunosuppression. In the presence of solar-simulated UV, three sunscreens with differing UVA transmission were assessed for their ability to protect the contact hypersensitivity (CHS) response to nickel of 16 nickel-allergic subjects. The sunscreens contained 2-ethylhexyl para-methoxycinnamate (cinnamate), cinnamate with oxybenzone, or cinnamate with zinc oxide, respectively. All had sun protection factors of 10 and hence inhibited UV erythema to similar extents. Volunteers were irradiated on their backs with suberythemal UV daily for 5 d after application of the sunscreens and their base lotion to different sites. Nickel-containing patches were then applied to both UV-treated sites and adjacent, unirradiated control sites. Erythema caused by nickel CHS at each site was quantitated 72 h later with a reflectance erythema meter. In comparison of the nickel reactions of irradiated and unirradiated skin, there was 35% mean immunosuppression in unprotected UV-treated skin. Significant immunosuppression also occurred at sites irradiated through the narrow-spectrum cinnamate-only sunscreen but was prevented by the two broad-spectrum sunscreens. To determine whether UV-induced suppression of the nickel response is specific for cell-mediated immunity or reflects suppression of nonspecific inflammation, a further 16 subjects were patch-tested with a skin irritant, sodium lauryl sulfate (SLS), following a sunscreen and irradiation protocol identical to that of the nickel volunteers. UV had no significant effect on SLS responses. We conclude that nickel patch testing is a valid means of assessing UV-induced immunosuppression in humans and that even with suberythemal UV, immune protection was provided only by sunscreens filtering both UVA and UVB.

Dermatitis, Allergic Contact↗

Significant loss of pyramidal neurons in the angular gyrus of patients with Huntington's disease.

The primary site of pathology in Huntington's disease (HD) is the caudate nucleus. However, cortical changes are also commonly reported. While many researchers have studied pathology in the frontal lobe, little attention has been paid to posterior cortical regions. The aim of this study is to examine pathology in the parietal lobe in patients with HD as it has specific projections to the caudate nucleus. Post-mortem brain tissue was obtained from HD patients with both a positive family history and clinicopathological diagnosis (n = 6; Vonsattel grades 2-4) as well as from neurologically normal controls (n = 6). The angular gyrus of the parietal lobe was sampled and cellular quantification of SMI-32 immunohistochemically detected pyramidal neurons performed. Cortical blocks were sectioned at 50 microns on a cryostat and stained immunohistochemically using antigen retrieval methods and peroxidase visualization. HD subjects had noticeable histological changes including smaller neurons and a disruption of cortical laminar pattern. Quantification using a point counting method to find the areal fraction of immunoreactive neurons revealed a severe loss of pyramidal neurons in the angular gyrus of HD subjects compared with controls (reduced on average to 55% of mean control values, P = 0.038 using the Mann-Whitney U-test). This striking cortical pathology suggests that HD may preferentially target posterior cortical regions, particularly the angular gyrus which has a significant projection to the caudate nucleus in primates.

Aged↗

Regression in skin tumours: a common phenomenon.

Regression in epithelial skin tumours is a common phenomenon, and this may be partial or complete. In keratoacanthoma and familial self-healing epithelioma, nearly all the tumours regress completely. The incidence of total regression in melanoma and basal cell carcinoma is unknown, but in 25% of melanomas and 50% of basal cell carcinomas there is evidence of partial regression on histological examination. Previous studies carried out in our laboratories have indicated that regression of skin tumours is likely to be mediated by activated CD4+ T lymphocytes, possibly via cytokine secretion.

CD4-Positive T-Lymphocytes↗

Modulation of MHC class II+ Langerhans cell numbers in corticosteroid treated epidermis by GM-CSF in combination with TNF-alpha.

It is important to understand how dendritic cells (DC) are recruited, maintained and stimulated to migrate from tissues to lymph nodes. This is because DC are potent initiators of primary immune responses and candidates for vaccine development. Identification of factors which could lead to increased numbers of DC in tissues could affect immune responses by modulating their interaction with antigen which penetrates the tissue. To identify cytokines which could increase DC in tissues we tested the ability of GM-CSF, TNF-alpha and IL-6 to partially prevent steroid depletion of Langerhans cells (LC) from the epidermis. Cytokines diluted in serum-containing medium were compared with cytokines diluted in albumin-containing, serum-free medium in order to determine a minimum combination of cytokines required to increase LC and the effect of serum on the LC-increasing activity of cytokines. In the presence of serum, GM-CSF or TNF-alpha could increase LC frequency compared to the control; but in the absence of serum neither of these cytokines were effective unless they were combined with each other. In the presence of serum the combination of GM-CSF with TNF-alpha was ineffective. The data support the hypotheses that GM-CSF and TNF-alpha are both important in regulating LC numbers in the epidermis in vivo. Serum may modulate how each of these cytokines, separately or in combination, affect LC frequency in the epidermis - GM-CSF and TNF-alpha separately probably interact with other factors present in serum to increase LC frequency, whereas in combination it is possible that these separate effects are cancelled in the presence of serum. TNF-alpha and GM-CSF together, in the absence of serum, form one combination of a minimum number of cytokines which can regulate LC frequency in the epidermis; and IL-6 alone, or in combination with GM-CSF, does not increase LC frequency.

Animals↗

alpha-Tocopherol, an inhibitor of epidermal lipid peroxidation, prevents ultraviolet radiation from suppressing the skin immune system.

We investigated the involvement of epidermal lipid peroxidation in the induction of ultraviolet radiation (UVR)-induced suppression of the skin immune system. The shaved dorsal skin of C3H/HeJ mice was irradiated with one of two subinflammatory solar-simulated UVR protocols 3 days per week for 4 weeks. Then half of 1 mg, 1, 2.5 or 5 mg alpha-tocopherol in a vehicle of acetone was topically applied to the shaved dorsal skin before UVR, A 5 mg dose of vitamin E gave complete protection against a UVR protocol that induced a 55% reduction in the contact hypersensitivity response to 2,4,6-trinitrochlorobenzene and a 23% reduction in epidermal Langerhans cell density. Lower doses were ineffective. alpha-Tocopherol was unable to protect against a higher UVR protocol. As 5 mg alpha-tocopherol did not prevent postirradiation inflammatory edema it is unlikely that the antioxidant acted as a sunscreen. However, 5 mg alpha-tocopherol inhibited UVR-induced epidermal lipid peroxidation, suggesting that this may be one mechanism by which alpha-tocopherol prevented UVR-induced local immunosuppression. Scavenging of UVR-generated lipid peroxides and reactive oxygen may have inhibited loss of cell membrane integrity preventing depletion of LC numbers, thus protecting from local immunosuppression.

Animals↗

Operational criteria for the classification of chronic alcoholics: identification of Wernicke's encephalopathy.

OBJECTIVES: To establish better operational criteria for the diagnosis of Wernicke's encephalopathy. Current criteria for diagnosing Wernicke's encephalopathy require the presence of three clinical signs (oculomotor abnormalities, cerebellar dysfunction, and an altered mental state), although it has often been reported that most patients do not fulfil all these criteria. METHODS: The clinical histories of 28 alcoholics with neurological and neuropsychological assessments and definitive neuropathological diagnoses were examined to determine clinical signs for use in a screening schedule. Operational criteria were then proposed for differentiating patients with Wernicke's encephalopathy alone or in combination with Korsakoff's psychosis or hepatic encephalopathy. The new criteria for Wernicke's encephalopathy require two of the following four signs; (1) dietary deficiencies, (2) oculomotor abnormalities, (3) cerebellar dysfunction, and (4) either an altered mental state or mild memory impairment. Reproducibility and validity testing of these criteria were performed on 106 alcoholics screened from a large necropsy sample. RESULTS: Despite rater variability with regard to specific symptoms, within and between rater reliability for diagnostic classification using the criteria retrospectively on patient records was 100% for three independent raters. Validity testing showed that Wernicke's encephalopathy was underrecognized only when occurring with hepatic encephalopathy (50% sensitivity). CONCLUSIONS: By contrast with current criteria, the proposed operational criteria show that the antemortem identification of Wernicke's encephalopathy can be achieved with a high degree of specificity.

Alcoholism↗

The nucleus basalis (Ch4) in the alcoholic Wernicke-Korsakoff syndrome: reduced cell number in both amnesic and non-amnesic patients.

BACKGROUND: The cholinergic nucleus basalis (Ch4) is an exclusive site of neurofibrillary degeneration in alcoholic patients with Wernicke's encephalopathy. AIM: To test the hypothesis that the loss of Ch4 neurons contributes to the memory disorder, Korsakoff's psychosis, commonly seen in Wernicke's encephalopathy. METHODS: Magnocellular basal forebrain neurons were quantified in alcoholic patients with Wernicke's encephalopathy, both with and without Korsakoff's psychosis, and neurologically asymptomatic alcoholic and non-alcoholic controls. Because amnesic and non-amnesic patients with Wernicke's encephalopathy share common periventricular lesions, both thiamine deficient groups as well as alcoholic patients with no neurological complications were included to determine the lesion specific to memory impairment. RESULTS: Ch4 cell number did not differ significantly between alcoholic and non-alcoholic controls and there was no correlation between cell number and lifetime alcohol intake. However, Ch4 cell number in all groups was significantly correlated with the volume of its major projection target, the cerebral cortex. Ch4 cell number in the non-amnesic Wernicke's encephalopathy group was significantly below controls (24%), with cell number in patients with Korsakoff's psychosis 21% below controls. There was considerable overlap in cell number between groups. On discriminant analysis, there was significantly greater cell loss in three non-amnesic patients with Wernicke's encephalopathy than in some patients with Korsakoff's psychosis. The nonamnesic patient with the greatest cell loss was impaired on attentional tasks. CONCLUSION: Whereas neurons in the nucleus basalis are at risk in thiamine deficient alcoholic patients, cell loss is minor and does not account for the profound memory disorder.

Adult↗

Prediction of minimal erythema dose with a reflectance melanin meter.

The relationship between skin pigmentation and sensitivity to ultraviolet (UV) radiation-induced erythema was investigated in 60 healthy subjects of sun-reactive skin types I-V. Using a portable reflectance spectrometer, skin pigmentation was measured as the 'melanin index' (MI) in all subjects. A solar-simulated array of filtered UVA and UVB-emitting fluorescent lamps was then used to determine the UVB minimal erythema dose (MED) of each subject. MI readings and MED testing were both performed on the subjects' mid to upper backs. Using this technique, we found a close correlation between MI and MED. Comparison of the mean MI or MED of subjects with different skin types revealed progressive differences in MI and MED between all five skin types. Erythema dose-response curves, which provide further information about UV sensitivity, were also calculated for 43 subjects. A significant negative correlation was found between the gradients of these curves and both MI and MED, indicating that paler subjects respond more strongly to increments of UV above the MED than subjects with greater pigmentation. Our results indicate that although traditional, subjective means of predicting UV sensitivity to erythema are not without some value, MED correlates particularly strongly with objective measures of skin pigmentation. We therefore conclude that the reflectance spectrometer can rapidly and accurately predict UVB sensitivity, and should prove clinically useful for planning and optimizing UVB phototherapy.

Adult↗

Dendritic epidermal T cells in ultraviolet-irradiated skin enhance skin tumor growth by inhibiting CD4+ T-cell-mediated immunity.

Chronic UV irradiation of the skin not only causes skin cancer in humans but modifies immune responses generated within the epidermis, resulting in impaired immunity against a variety of infectious as well as noninfectious agents. In mice, tumors induced by chronic UV irradiation grow faster when transplanted into mice that are immunosuppressed by UV irradiation. To investigate epidermal cells (EC) in UV-irradiated skin that inhibit the induction of immunity against tumors, the murine UV-induced LK2 regresser tumor was used. This tumor grows initially in vivo and then spontaneously regresses. In vivo T-cell depletion was used to determine that regression of LK2 tumors in unirradiated mice was mediated mainly by CD8+ T lymphocytes, with minor involvement of CD4+ T cells. Immunization of mice with tumor antigen-pulsed EC prepared from unirradiated mice enhanced immunity against subsequent inoculation of LK2 tumors, augmenting regression of the LK2 tumor due to increased activation of both CD4+ and CD8+ T-cell subsets against the tumor. By contrast, immunization with EC prepared from UV-irradiated skin inhibited the induction of antitumor immunity, enhancing LK2 tumor growth. This was caused by the dendritic epidermal T cells that remained within this UV-irradiated EC preparation inhibiting activation of CD4+ T cells, without affecting CD8+ T cell function. Hence, during the development of murine UV-induced skin tumors, dendritic epidermal T cell inhibition of CD4+ T cell activation may enable this skin tumor to escape immune-mediated destruction.

Animals↗

Glial fibrillary acidic protein (GFAP) immunohistochemistry in human cortex: a quantitative study using different antisera.

Glial fibrillary acidic protein (GFAP) is the principal marker for brain astrocytes. The present study aims to examine the variability in GFAP immunohistochemistry in formalin-fixed human brain. Four commercially-available antisera were tested using standardised protocols in the cerebral cortex of three cases with prominent glial reactions and one control. GFAP immunoreactivity was largely confined to the pial surface and white matter in control cortex, with the number of astrocytic cell bodies and processes as well as intensity of staining markedly increased in damaged cortices. A dramatic difference in the pattern of GFAP staining using different antisera was observed and may account for discrepancies between past studies. This variance has important practical implications for the interpretation of results using GFAP immunohistochemistry in human tissue.

Alzheimer Disease↗

Cytoarchitectural distribution of calcium binding proteins in midbrain dopaminergic regions of rats and humans.

The present study compares the distribution of three calcium binding proteins, calbindin-D28k, calretinin, and parvalbumin, in the midbrain tegmentum of rats and humans. In order to compare the distributions of these proteins directly, the cytoarchitecture of this region was evaluated by using immunohistochemistry for tyrosine hydroxylase and substance P in serial sections in both transverse and horizontal planes. There was a high degree of homology in the cytoarchitecture of the three main dopaminergic regions identified. The A8 group was localised in the retrorubral fields, which extended rostrally into the midbrain reticular fields in the human. The A9 group corresponded to the substantia nigra, which was delimited by its dense substance P innervation. The heterogeneous A10 group, situated along the dorsal border as well as medial to the A9 group, comprised multiple nuclei. The distribution of calcium binding proteins was similar in both species, although a larger proportion of neurons contained these proteins in the rat. Calbindin-D28k was localised in neurons within A8 and A10 nuclei and within the caudomedial A9 region (and rostrolateral A9 in the rat only). Calretinin was localised in similar regions. In contrast, neurons containing parvalbumin were concentrated in the substantia nigra pars reticulata. The results suggest that few dopaminergic neurons receiving striatal input in the substantia nigra contain calcium binding proteins; rather, the nondopaminergic nigral neurons contain parvalbumin. Interestingly, dopaminergic neurons are more numerous in humans, whereas nondopaminergic neurons predominate in rats, which suggests that functional differences may exist between rats and humans.

Adult↗

Substantia nigra pars reticulata neurons in Parkinson's disease.

We have examined by immunohistochemistry the parvalbumin-containing neurons of the substantia nigra in patients with Parkinson's disease and in age-matched controls. Parvalbumin, a calcium binding protein, is involved in buffering intracellular calcium and in this study was localized within the majority of non-pigmented neurons of the human pars reticulata. Previous studies have shown that the parvalbumin-immunoreactive pars reticulata neurons are GABAergic and project to the motor thalamus and tectum. Their increased output, due to the loss of dopaminergic inhibition in Parkinson's disease, decreases cortical activation via thalamic pathways, causing parkinsonian symptoms. In Parkinson's disease there was a significant loss of parvalbumin-immunoreactivity from these neurons, though there was no evidence of actual cell loss. This loss of parvalbumin-immunoreactivity was detected only in those cases with end-stage Parkinson's disease.

Age of Onset↗