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Biomedical subjects

H Adle-Biassette

Publications and source records attributed to H Adle-Biassette.

At least 19 recordsLinked to original sources

Secretory leukocyte protease inhibitor inhibits infection of monocytes and lymphocytes with human immunodeficiency virus type 1 but does not interfere with transcytosis of cell-associated virus across tight epithelial barriers.

In the present study, we demonstrate that recombinant human secretory leukocyte protease inhibitor (rhSLPI) inhibits infection of lymphocyte- and monocyte-derived tumor cell lines and peripheral blood lymphocytes with laboratory-adapted isolates and with the primary isolate, NDK, of free human immunodeficiency virus type 1 (HIV-1). In contrast, rhSLPI did not exhibit inhibitory activity toward transcytosis of cell-associated HIV-1 through a tight monolayer of endometrial epithelial cells. These observations indicate that the inhibitory effect of SLPI is restricted to free HIV-1 in corporal fluids.

Acquired Immunodeficiency Syndrome↗

Neuronal apoptosis in human immunodeficiency virus infection.

Neuronal apoptosis has been shown to occur in HIV infection by a number of in vivo and in vitro studies, however, the cause of neuronal damage in AIDS is still unclear and its relationships with the cognitive disorders characteristic of HIV dementia remain a matter of debate. In this review, based on our experience, we analyse the techniques used to identify neuronal apoptosis on post-mortem AIDS brains and describe the relationships of neuronal apoptosis with the stage of disease, a history of HIV-dementia, the degree of productive HIV infection, microglial activation, blood-brain barrier involvement and axonal damage. We conclude that the severity of neuronal apoptosis in the cerebral cortex correlates with the presence of cerebral atrophy, but not with the cognitive disorders. There is no global quantitative correlation between neuronal apoptosis and HIV encephalitis, microglial activation or axonal damage. However we found some topographical correlation between these changes. We conclude that neuronal apoptosis and consequent neuronal loss, in HIV infected patients, are probably not related to a single cause. It seems likely that microglial activation, directly or indirectly related to HIV infection of the CNS, plays a major role in its causation possibly through the mediation of oxidative stress. Axonal damage, either secondary to microglial activation, or to the intervention of systemic factors may also contribute to neuronal apoptosis.

AIDS Dementia Complex↗

Vascular permeability factor/vascular endothelial growth factor (VPF/VEGF) and its receptor flt-1 in microcystic meningiomas.

We investigated the immunohistochemical expression of vascular permeability factor/vascular endothelial growth factor (VPF/VEGF) and of its endothelial cell receptor flt-1 in relationship to microcyst formation in meningiomas. Expression of VPF/VEGF was studied in 60 meningiomas (6 microcystic, 38 partially microcystic and 16 with no microcystic areas) and 30 meningiomas from these three subgroups were evaluated for flt-1 expression. VPF/VEGF immunoreactivity was mainly observed in vessel endothelium. Positive vessels were present in 75% (33/44) of meningiomas with any amount of microcystic pattern and in 38% (6/16) of the solid meningiomas (P < 0.02). Densities and percentages of both VPF/VEGF-positive and flt-1-positive vessels were higher in meningiomas with microcystic areas than in solid meningiomas (P </= 0.002). The 6 microcystic meningiomas showed the highest densities and percentages of both VPF/VEGF-positive (P </= 0.0002) and flt-1-positive vessels (P </= 0. 01). Vessel expression of VPF/VEGF and flt-1 were positively correlated (r >/= 0.75, P < 0.0001). A strong positive correlation between VPF/VEGF-positive vessel density and proportion of microcystic pattern in all 60 specimens was found (r = 0.75, P < 0. 0001). We conclude that accumulation of flt-1-bound VPF/VEGF on endothelial cells of meningiomas is associated with microcyst formation that leads to the histologic appearance of microcystic meningiomas.

Endothelial Growth Factors↗

Chester-Erdheim disease: a neoplastic disorder.

Chester-Erdheim disease is a rare non-langerhans cell histiocytosis characterized by a xanthomatous infiltration of foamy macrophages. The cause and pathogenesis remain unclear. The aim of the present study was to determine whether Chester-Erdheim disease is a polyclonal reactive disease or a clonal neoplastic disorder. The clonal status of samples obtained from five patients with Chester-Erdheim disease was studied. DNA was extracted from fixed and paraffin-embedded sections after microdissection and clonal status was studied using the Xchromosome inactivation pattern of the human androgen receptor gene (HUMARA assay). One patient was homozygous for the HUMARA gene and noninformative. Three other cases were monoclonal. One was polyclonal, and this case showed a dense reactive infiltrate in association with spumous macrophages. This study suggests strongly that Chester-Erdheim disease is a monoclonal lesion consistent with neoplastic disorder. Thus, Chester-Erdheim disease may be considered as the "macrophage" counterpart of Langerhan's cell histiocytosis in the histiocytosis spectrum. Further studies are needed to establish the origin of this clonal proliferation.

Adult↗

Neuronal apoptosis does not correlate with dementia in HIV infection but is related to microglial activation and axonal damage.

To characterize the distribution of apoptotic neurons and their relationships with the stage of disease, a history of HIV-dementia, and the degree of productive HIV infection, microglial activation and axonal damage, we examined the brains of 40 patients. Samples of frontal and temporal cortex, basal ganglia and brain stem were taken post-mortem from 20 patients with AIDS (including three with HIV-dementia, and eight with cognitive disorders that did not fulfil the criteria for HIV-dementia), 10 HIV-positive asymptomatic cases and 10 seronegative controls. Neuronal apoptosis was demonstrated by in situ end labelling in 18 AIDS cases and two pre-AIDS cases; a single apoptotic neuron was present in the temporal cortex of a control. Semiquantitative evaluation showed that the severity of neuronal apoptosis in the cerebral cortex correlated with the presence of cerebral atrophy, but not with a history of HIV dementia. There was no global quantitative correlation between neuronal apoptosis and HIV encephalitis or microglial activation. However, there was some topographical correlation between these changes. In the basal ganglia, apoptotic neurons were much more abundant in the vicinity of multinucleated giant cells and/or p24 expressing cells. Microglial activation was constantly present in these areas. Axonal damage was identified using beta-amyloid-precursor protein (betaAPP) immunostaining in 17 AIDS and eight pre-AIDS brains. Although no global quantitative correlation could be established between axonal damage and neuronal apoptosis there was an obvious topographic correlation supporting the view that axonal damage, either secondary to local microglial activation or due to the intervention of systemic factors, may also contribute to neuronal apoptosis.

AIDS Dementia Complex↗

Neuronal apoptosis in Creutzfeldt-Jakob disease.

Neuronal loss is a salient feature of prion diseases; however, its causes and mechanisms are unclear The possibility that it could occur through an apoptotic process has been postulated and is consistent with the lack of inflammation in prion disorders as supported by experimental studies. In order to test this hypothesis in humans, we examined samples of frontal and temporal cerebral cortex, striatum, thalamus, and cerebellum from 16 patients who died from Creutzfeldt-Jakob disease. They included 5 sporadic cases, 5 familial, 3 iatrogenic, and 3 cases with the new variant. These were compared with age and sex matched controls. Using in situ end labelling, we identified apoptotic neurons in all the cases of Creutzfeldt-Jakob disease. A single labelled neuron was found in the eldest control. Apoptotic neurons were mostly found in damaged regions and their presence and abundance seemed to correlate closely with neuronal loss. This supports the view that apoptosis of neurons is a feature of prion diseases and may contribute to the neuronal loss which is one of the main characteristics of these conditions. Neuronal apoptosis also correlated well with microglial activation, as demonstrated by the expression of major histocompatibility complex class II antigens, and axonal damage, as identified by beta-amyloid protein precursor immunostaining. In contrast, we found no obvious relationship between the topography and severity of neuronal apoptosis and the type, topography, and abundance of prion protein deposits as demonstrated by immunocytochemistry.

Adult↗

Primary brain lymphoma cell turnover differs in patients with and without AIDS: relationships to bcl-2 expression and host cell reaction.

Primary central nervous system lymphomas (PCNSLs) are more resistant to radiotherapy and chemotherapy in AIDS (A-PCNSLs) than in non-AIDS patients (NA-PCNSLs). We investigated 23 A-PCNSLs and 24 NA-PCNSLs. Lymphoma cell kinetics (i.e. proliferation [mitotic index, MIB-1 and PCNA labeling indices], apoptosis and turnover) were determined and compared with bcl-2 and LMP-1 expression, and to the percentage of tumor-infiltrating T-lymphocytes (T-TILs) and macrophages. A-PCNSLs showed lower proliferation (p < 0.005), less apoptosis (p < 0.0001) and slower cell-turnover (p < 0.0001) than NA-PCNSLs. LMP-1 was detected in 90% of A-PCNSLs and 5% of NA-PCNSLs, a finding correlating positively with bcl-2 expression (p < 0.0007). In contrast, T-TIL counts and CD4/CD8 T-TIL ratios were similar in A-PCNSLs and NA-PCNSLs. T-TIL counts correlated negatively with proliferation indices (from p < 0.05 to p < 0.0005) in NA-PCNSLs, but not in A-PCNSLs. Macrophage counts correlated positively with apoptosis in both groups. We concluded the following: (i) A-PCNSLs are characterized by accumulation of slow-cycling, long-lived cells that might be protected from apoptosis by LMP-1 induced bcl-2 expression, and independently from the host response; (ii) NA-PCNSLs are characterized by a faster cell turnover associated with an insufficient antiproliferative host response; and (iii) A-PCNSLs and NA-PCNSLs constitute 2 entities with distinctive morphology and different kinetic profiles that could account for different responses to therapy.

Apoptosis↗

Idiopathic spinal cord herniation: value of MR phase-contrast imaging.

We report two patients with an idiopathic transdural spinal cord herniation at the thoracic level. Phase-contrast MR imaging was helpful in showing an absence of CSF flow ventral to the herniated cord and a normal CSF flow pattern dorsal to the cord, which excluded a compressive posterior arachnoid cyst.

Aged↗

[Neuronal apoptosis in human prion diseases].

Neuronal loss is a salient feature of prion diseases; however, its causes and mechanisms are unclear. The possibility that it could occur through an apoptotic process has been postulated and this is consistent with the lack of inflammation in prion disorders as supported by experimental studies. In order to test this hypothesis in humans, we examined samples of frontal and temporal cerebral cortex, striatum, thalamus and cerebellum from 26 patients who died from prion diseases. They included 16 cases of Creutzfeldt-Jakob disease (5 sporadic cases, 5 familial, 3 iatrogenic, and 3 cases with the new variant), and 10 cases of fatal familial insomnia including 8 homozygotes methionine/methionone at codon 129 of the prion protein gene and 2 heterozygotes. These were compared with age and sex matched controls. Using in situ end labelling, we identified apoptotic neurons in all the cases of Creutzfeldt-Jakob disease. A single labelled neuron was found in the eldest control. Apoptotic neurons were mostly found in damaged regions and their presence and abundance seemed to correlate closely with neuronal loss. This supports the view that apoptosis of neurons is a feature of prion diseases and may contribute to the neuronal loss which is one of the main characteristics of these conditions. Neuronal apoptosis also correlated well with microglial activation as demonstrated by the expression of major histocompatibility complex class II antigens and axonal damage as identified by beta-amyloid protein precursor immunostaining. In contrast, we found no obvious relationship between the topography and severity of neuronal apoptosis and the type, topography and abundance of prion protein deposits as demonstrated by immunohistochemistry.

Adult↗

[A process of programmed cell death as a mechanisms of neuronal death in prion diseases].

Neuronal loss is a salient feature of prion diseases; however, its cause and mechanism, particularly its relationship with the accumulation of the pathogenic, protease resistant isoform PrPres of the cellular prion protein PrPc, are still unclear. A number of studies suggest that it could occur through a process of programmed cell death which is consistent with the lack of inflammation in these conditions. In this paper, we review the different techniques used to identify apoptosis of neurons, and analyse the studies demonstrating neuronal apoptosis in prion diseases, either experimentally, in animal or in human. Apoptosis of rat hippocampal neurons, in cultures exposed to a synthetic peptide homologous to the prion protein, has been identified on morphological criteria after staining by a fluorescent marker of DNA and by gel electrophoresis of neuronal DNA. Apoptosis of neurons has also been identified in vivo using in situ end labelling and electron microscopy in scrapie infected mice. In human, apoptotic neurons were identified by in situ end labelling in Creutzfeldt-Jakob Disease and in Fatal Familial Insomnia. Apoptotic neurons were mostly found in damaged regions and their presence and abundance seemed to correlate closely with neuronal loss. Neuronal apoptosis also correlated well with microglial activation as demonstrated by the expression of major histocompatibility complex class II, antigens, and with axonal damage as identified by beta-amyloid protein precursor immunostaining. In contrast, there was no clear correlation between the topography and severity of neuronal apoptosis and the type, topography and abundance of prion protein deposits as demonstrated by immunohistochemistry. Similarly, within the framework of comparable phenotypes, there was no difference in the abundance and distribution of apoptotic neurons according to the aetiology whether sporadic, familial, or iatrogenic, of the disease. The pathogenetic mechanism of neuronal apoptosis remains speculative and several hypothesis have been proposed. The lack of a direct association between neuronal damage and PrPres deposition may support models of neuropathogenesis based on "loss of function" of PrPc, such as withdrawal of defined activation signals inducing programmed cell death, rather than neurotoxicity. It is also possible that PrPres is neurotoxic and the dissociation between neuronal damage and the amount of protein only reflects variations in selective neuronal vulnerability. Finally, neuronal apoptosis might be an indirect consequence of PrPres deposition. PrPres-induced dendritic or axonal damage, perhaps enhanced by consequent microglial activation, might contribute to neuronal apoptosis either due to deafferentation or to retrograde neuronal degeneration.

Animals↗

Recurrent central neurocytoma with marked increase in MIB-1 labelling index.

Central neurocytomas (CNs) are characterized by an indolent growth and a low recurrence rate. Cell proliferation has been rarely studied in recurrent CNs despite the growing awareness of its prognostic value. We present a CN that recurred rapidly after a prolonged relapse-free interval showing a 4-fold increase of MIB-1 labelling index.

Adult↗

Immunohistochemical detection of vascular endothelial growth factor (VEGF) in the vasculature of oligodendrogliomas.

Vascular endothelial growth factor (VEGF) appears to be implicated in tumour angiogenesis. In the present study immunohistochemical expression of VEGF was evaluated in 34 oligodendrogliomas (13 grade II, 21 grade III [WHO]). VEGF immunoreactivity was found in 31 of 34 cases. Expression of VEGF was observed in endothelial cells and some vascular smooth muscle cells, but not in neoplastic oligodendrocytes. Vessel counts, percentages of VEGF-positive vessels and vessels with vascular endothelial proliferation were assessed. The degree of VEGF labelling and vascular-endothelial proliferation in each vessel were evaluated using a 3 degree intensity score. Expression of VEGF was higher in grade III than in grade II oligodendrogliomas as assessed by percentage of VEGF positive vessels (55.8 +/- 29.2% vs 17.0 +/- 19.0% [P < 0.001]) and by VEGF immunostaining intensity (1.90 +/- 0.60 vs 0.90 +/- 0.40 [P < 0.001]). VEGF expression did not correlate with vessel density. Intensity of VEGF expression correlated positively with that of vascular-endothelial proliferation in grade III tumours (r = +0.47 [P < 0.05]). The percentage of VEGF positive vessels showed some degree of positive correlation with the percentage of vessels showing vascular-endothelial proliferation (r = +408 [P < 0.10]). Within individual grade III tumours 67.5 +/- 29.6% of all vessels with vascular-endothelial proliferation were VEGF-positive and 31.0 +/- 20.5% of all VEGF-positive vessels showed no evidence of vascular-endothelial proliferation. We conclude that (i) expression of VEGF is observed in the vasculature of oligodendrogliomas; (ii) marked expression of VEGF is observed in grade III oligodendrogliomas; (iii) VEGF may be one of the interrelated causative stimuli acting in concert to induce vascular-endothelial proliferation.

Brain Neoplasms↗

DNA breaks detected by in situ end-labelling in dorsal root ganglia of patients with AIDS.

Distal sensory axonal polyneuropathy (DSP) is the most frequent HIV-associated peripheral neuropathy. DSPs tend to occur in full-blown AIDS and worsen as CD4 cell counts decrease in blood. To assess a possible role for apoptosis in the pathogenesis of the neuropathy, we used in situ end-labelling (ISEL) detecting DNA strand breaks in DRG neurons of 19 HIV-infected patients, of whom nine had axonal polyneuropathy, and 11 controls. Sensory neurons with ISEL-assessed DNA breaks were observed in 9/19 patients with AIDS, 0/3 patients with pre-AIDS, and 1/11 controls. The prevalence of DNA breaks in neurons was higher in AIDS patients than in controls (P < 0.05). Among AIDS patients, DNA breaks in neurons were more abundant in patients with peripheral neuropathy (P < 0.04). It is possible that DNA breaks of DRG neurons induce the axonopathy and consequently play a role in the pathogenesis of DSP. It cannot be excluded, however, that DNA breaks could represent the result rather than the cause of axonopathy. We suggest that ISEL may detect neurons that were primed to apoptosis before death in relation with the HIV infection, and undergo DNA fragmentation at time of death, rather than neurons that underwent premortem both priming and triggering steps of the apoptotic process. This hypothesis could explain why most ISEL-positive neurons lack typical apoptotic morphology and why normal controls do not show ISEL positive cells.

Acquired Immunodeficiency Syndrome↗

All-trans retinoic acid in relapsing malignant gliomas: clinical and radiological stabilization associated with the appearance of intratumoral calcifications.

PURPOSE: To evaluate the therapeutic effect of all-trans retinoic acid (ATRA) with and without cytosine arabinoside in relapsing malignant gliomas. PATIENTS AND METHODS: 9 patients (8 male, 1 female, age 53.9 +/- 11.2) with relapsing malignant gliomas (grade IV:6; grade III:3) were treated by ATRA 1 to 21 months after the end of their initial treatment. ATRA was given unceasingly during 2 to 17 months at 90 mg/d. In 6 patients it was associated to cytosine arabinoside (4 g/course, 1 to 9 courses every 4 weeks). RESULTS: 4 non-responder patients died 2.5 to 4 months after starting therapy. One patient who had been reoperated before receiving ATRA and cytosine arabinoside (5 course) had no sign of tumor recurrence after 17 months of treatment. In 4 responder patients (2 glioblastoma and 2 anaplastic astrocytoma) a clinical and radiological stabilization (time to progression) during 9 +/- 2.5 months was observed. This stabilization was associated in 3 of them with the appearance of intra tumoral calcifications visualized on repeated CT scans and confirmed in one patient by post-mortem examination. All of them had received cytosine arabinoside (1 to 9 courses) with ATRA; however small calcifications were also observed in one non-responder patient who did not receive aracytine. CONCLUSION: These results suggest: a) a therapeutic effect of ATRA in combination with cytosine arabinoside in patients with relapsing malignant gliomas b) that intratumoral calcifications are related to the effects of ATRA on differentiation and/or on endothelial t-PA production and that these effects explain the tumor progression arrest in responder patients. The transient efficiency is probably related to the pharmacokinetics of ATRA or to changes of cellular mechanisms that modulate the cell response to the drug and is a critical issue for this therapy.

Adult↗

Pathology of the central nervous system in Chester-Erdheim disease: report of three cases.

Chester-Erdheim disease is a rare form of non-Langerhans cell histiocytosis consisting of disseminated xanthogranulomatous infiltration and fibrosis that primarily involves the bones, visceral organs and systemic fatty spaces. Involvement of the central nervous system is variable, and neuropathological features have seldom been documented. We report the neuropathological findings in 3 autopsy cases. One patient had radiological and pathological bone changes characteristic of Chester-Erdheim disease. Neuropathology revealed multiple characteristic xanthogranulomas disseminated in the cerebral hemispheres, hypothalamus, cerebellum, and brainstem. The second patient presented first with cutaneous lesions characteristic of Langerhans cell histiocytosis. She subsequently developed bone abnormalities suggestive of Chester-Erdheim disease, which was confirmed by autopsy, raising the possibility of a common spectrum of histiocytosis including both diseases. Gross examination of the brain was normal, however, microscopy showed infiltration of the brain by characteristic non-Langerhans cell xanthogranulomas. The third patient presented with systemic features characteristic of Chester-Erdheim disease. Neurological signs included gait disturbance, seizures and confusion. Examination of the brain did not show any histiocytic infiltration, but did show changes suggestive of Hallervorden-Spatz syndrome. Association of Chester-Erdheim disease and Hallervorden-Spatz syndrome has not been previously reported. The relationship between both conditions is unclear.

Adult↗

[Neuronal apoptosis in the central and peripheral nervous system in HIV infection].

Apart from the unique changes characteristic of "HIV encephalitis", the productive infection of central nervous system by HIV, which predominantly involves the white matter and basal ganglia, evidence is accumulating that the cerebral cortex may also be affected in AIDS patients. Neuronal loss, suspected at microscopic examination, has been demonstrated by a number of morphometric studies. However, the cause and mechanism of neuronal damage in HIV infection, are still unclear. In an attempt to look for an apoptotic process at the origin of neuronal loss in AIDS, we examined samples of frontal cortex, temporal cortex and basal ganglia from 12 patients who died from AIDS and 4 asymptomatic HIV-positive cases using in situ end labelling to demonstrate characteristic DNA fragmentation. These were compared with 5 asymptomatic seronegative controls, and 2 seronegative patients with Alzheimer's disease. We demonstrated neuronal apoptosis in all AIDS cases and in the Alzheimer's cases. Positive in situ end labelling was usually associated with morphological changes suggestive of neuronal apoptosis. Semiquantitative assessment of the density of apoptotic neurons showed that neuronal apoptosis was more severe in atrophic brains. In contrast, no correlation was found between the density of apoptotic neurons and the presence of HIV-encephalitis or a history of cognitive disorder. Only occasional apoptotic neurons were found in one asymptomatic, HIV-positive case. Apoptosis was never observed in asymptomatic seronegative cases. We also looked for apoptotic neurons in spinal ganglia of 20 AIDS cases, 5 of whom had a terminal sensory distal neuropathy, and 10 seronegative controls devoid of neuropathy. Apoptotic neurons were found in 6 of the AIDS patients and in none of the seronegative controls. However, no correlation was found between the severity of neuronal apoptosis in the spinal root ganglia and the presence of absence of a terminal distal sensory neuropathy. Experimental studies tend to support our in vivo findings. HIV-infection of primary cultures of human embryonic central nervous system induced frequent apoptosis of neurons. No apoptotic cell was identified in non infected control cultures.

AIDS Dementia Complex↗