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Biomedical subjects

F Chretien

Publications and source records attributed to F Chretien.

10 recordsLinked to original sources

Platelet ultrastructural abnormalities in three patients with type 2B von Willebrand disease.

Several reports have described the presence of giant platelets in patients with type 2B von Willebrand disease (VWD). We have now characterized the ultrastructural changes in platelets from three unrelated patients with type 2B VWD and different mutations within exon 28 of the von Willebrand factor (VWF) gene. Electron microscopy showed that each of these subjects had an increased proportion of large platelets when compared with those of a patient with type 2A VWD or control subjects. Immunogold labelling for VWF was performed. Large masses detected by anti-VWF antibody were seen not only on the platelet surface, but also inside the platelet surface-connected canalicular system (SCCS) when ultrathin sections were labelled. This suggested translocation of the abnormally bound VWF from the platelet surface. Labelling of the alpha-granules was eccentric as for normal platelets. Labelling for glycoprotein (GP) Ib was seen on the surface and within the SCCS, suggesting co-localization with the bound VWF. However, there was no evidence for VWF in endosomes or other endocytic vesicles. The presence of platelet-bound VWF was not accompanied by high levels of platelet activation, as detected by electron microscopy, or by using monoclonal antibodies against P-selectin or activation-dependent determinants on GP IIb-IIIa in flow cytometry. Intriguingly, platelet ultrastructure often resembled that seen in patients with congenital thrombocytopathies characteristic of giant platelet syndromes.

Adult↗

Neuropathology of early HIV-1 infection.

Early HIV-1 invasion of the central nervous system has been demonstrated by many cerebrospinal fluid studies; however, most HIV-1 carriers remain neurologically unimpaired during the so called "asymptomatic" period lasting from seroconversion to symptomatic AIDS. Therefore, neuropathological studies in the early pre-AIDS stages are very few, and the natural history of central nervous system changes in HIV-1 infection remains poorly understood. Examination of brains of asymptomatic HIV-1 positive individuals who died accidentally and of rare cases with acute fatal encephalopathy revealing HIV infection, and comparison with experimental simian immunodeficiency virus and feline immunodeficiency virus infections suggest that, invasion of the CNS by HIV-1 occurs at the time of primary infection and induces an immunological process in the central nervous system. This includes an inflammatory T-cell reaction with vasculitis and leptomeningitis, and immune activation of brain parenchyma with increased number of microglial cells, upregulation of major histocompatibility complex class II antigens and local production of cytokines. Myelin pallor and gliosis of the white matter are usually found and are likely to be the consequence of opening of the blood brain barrier due to vasculitis; direct damage to oligodendrocytes by cytokines may also interfere. These white matter changes may explain, at least partly, the early cerebral atrophy observed, by magnetic resonance imaging, in asymptomatic HIV-1 carriers. In contrast, cortical damage seems to be a late event in the course of HIV-1 infection. There is no significant neuronal loss at the early stages of the disease, no accompanying increase in glial fibrillary acid protein staining in the cortex, and only exceptional neuronal apoptosis. Although HIV-1 proviral DNA may be demonstrated in a number of brains, viral replication remains very low during the asymptomatic stage of HIV-1 infection. This makes it likely that, although opening of the blood brain barrier may facilitate viral entry into the brain, specific immune responses including both neutralising antibodies and cytotoxic T-lymphocytes, continuously inhibits viral replication at that stage.

Acquired Immunodeficiency Syndrome↗

[Extracerebral metastases of a glioblastoma, in the absence of surgery].

A 50 y.o. male presented with a right parietal tumor which was a glioblastoma on stereotactic biopsy. He was treated by radiation and steroids, with clinical improvement. Four months later, he presented with a left preauricular mass and cervical lymphadenopathy. CT scan showed destruction of the left mastoid and filling of the left tympanic cavity. One month later, he suffered progressive dyspnea. Chest X ray showed a mediastinal mass on the right side and numerous bilateral interstitial opacities in the lungs. A bronchial biopsy was inconclusive. His general condition worsened, and he died. Postmortem showed continuous neoplastic infiltration of the left part of the base of skull, extending into the neck. Numerous metastases were present in mediastinal lymph nodes, lung parenchyma, pleura and pleural aspect of the diaphragm. There were no subdiaphragmatic metastases. Neuropathological examination confirmed a poorly differentiated highly malignant glioblastoma with severe necrosis involving the internal part of the parietal lobe extending to the dura mater of the convexity and falx cerebri with invasion of the superior longitudinal sinus which was entirely occluded. The biopsy scar was not infiltrated. Visceral tumors were morphologically identical to the brain tumor. They were strongly GFAP positive and cytokeratin negative. Extraneural metastases of glioblastoma in the absence of surgery are uncommon in adults. Involvement of the dura mater and/or superior longitudinal sinus is an almost constant feature. In our case, this may have led to invasion of the base of skull and secondary regional, lymphatic, and hematogenous spread.

Brain Neoplasms↗

Optimization of thickness, pore size and mechanical properties of a biomaterial designed for deep burn coverage.

A collagen and chondroitins 4-, 6-sulphate biomaterial designed for the coverage of severe burns was optimized in terms of mechanical strength by addition of 20% (wt/vol) of chitosan to the starting material. Chitosan should create ionic bonds with collagen and thus increase the tensile strength and Young's modulus of the sponge. On the other hand, sterilization by h-irradiation of the biomaterial induced a decrease in its mechanical properties that could be avoided by sterilization using beta-irradiation. The thickness, pore size and morphology of the biomaterial were optimized before freeze-drying by freezing the mixture at -60 degrees C at a weight/volume concentration of 1.25% and a volume of 270 mul/cm2. The biomaterial obtained under these conditions may further the vascularization and cellular colonization of the porous structure by the host cells of the wound bed and therefore may accelerate the regeneration of a new dermis.

Burns↗

Neuropathology and neurodegeneration in human immunodeficiency virus infection. Pathogenesis of HIV-induced lesions of the brain, correlations with HIV-associated disorders and modifications according to treatments.

A variety of HIV-induced lesions of the central nervous system (CNS) have been described, including HIV encephalitis, HIV leukoencephalopathy, axonal damage, and diffuse poliodystrophy with neuronal loss of variable severity resulting, at least partly, from an apoptotic process. However, no correlation could be established between these changes and HIV dementia (HIVD). From our study of HIV infected patients, it appeared that neuronal apoptosis is probably not related to a single cause. Microglial and glial activation, directly or indirectly related to HIV infection, plays a major role in neuronal apoptosis possibly through the mediation of oxidative stress. In our patients with full-blown AIDS, this mechanism predominated in the basal ganglia and correlated well with HIVD. Axonal damage, either secondary to microglial activation, or to systemic factors also contributes to neuronal apoptosis. Although massive neuronal loss may be responsible for HIVD in occasional cases, we conclude that neuronal apoptosis is a late event and does not represent the main pathological substrate of HIVD. The dementia more likely reflects a specific neuronal dysfunction resulting from the combined effects of several mechanisms, some of which may be reversible. Introduction of highly active antiretroviral therapy dramatically improved patient survival, however, its impact on the incidence and course of HIVD remains debatable. In our series, the incidence of HIVE has dramatically decreased since the introduction of multitherapies, but a number of cases remain whose cognitive disorders persist, despite HAART. The poor CNS penetration of many antiretroviral agents is a possible explanation, but irreversible "burnt out" HIV-induced CNS changes may also be responsible.

AIDS Dementia Complex↗