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A Robaglia-Schlupp

Publications and source records attributed to A Robaglia-Schlupp.

8 recordsLinked to original sources

[Are we sectioning the cochlear efferent system during vestibular neurotomy?].

INTRODUCTION: In addition to sensory neurons which transmit information from the inner ear to the brain, there is a system of efferent feedback fibers, called the olivocochlear system, carrying signals from the brain to the ear. Over the past half-century, the efferent system has been extensively studied in animals and results provided theories as to the functional significance of these efferents: to improve signal-to-noise ratio in the auditory periphery, to mediate selective attention, and to protect the inner ear from acoustic overexposure. The results of several studies conducted in man rely on the study of patients who have undergone a vestibular neurectomy. Indeed, anatomical data show that olivocochlear efferents could travel along or inside the vestibular part of the auditory nerve before reaching the organ of Corti. Therefore, these patients may be considered as an experimental model of unilaterally de-efferented subjects. However, to date, none has reported the existence of olivocohlear efferents in the vestibular section following neurectomy. MATERIALS AND RESULTS: In this study, we present the histological results from 18 vestibular sections and show the absence of olivocochlear efferents. CONCLUSION: These results provide a reason to reconsider the results of previous experiments conducted in similar patients and ask for further studies on the olivocochlear efferents pathways.

Cochlea↗

[Skin stem cells].

Explore the source record for details and available documents.

Cytological Techniques↗

PMP22 overexpression causes dysmyelination in mice.

Charcot-Marie-Tooth (CMT) disease is the most frequent hereditary peripheral neuropathy in humans. Its prevalence is about one in 2500. A subform, CMT1A, is transmitted as an autosomal dominant trait. An estimated 75% of patients are affected. This disorder has been shown to be associated with the duplication of a 1.5 Mb region of the short arm of chromosome 17, in which the PMP22 gene has been mapped. We have constructed a murine model of CMT1A by inserting into the murine genome a human YAC containing peripheral myelin protein 22 (PMP22) and its flanking controlling elements. We describe the behaviour of the C22 line (seven copies of YAC, 2.1 times PMP22 overexpression) during the myelination process. Electron microscopy, morphometry, electrophysiology, nerve conduction and expression of specific markers (e.g. Krox20) in normal and pathological Schwann cells demonstrated that PMP22 overexpression leads to a defect in the myelination of axons. The largest axons are the most affected. Only a few demyelination/remyelination processes were observed. Moreover, PMP22 overexpression probably enhances collagen synthesis by fibroblasts, before myelination, demonstrating that structures other than Schwann cells are affected by PMP22 overexpression. Classically, CMT1A was thought to be induced by a demyelination process following a phase of normal myelination, yet our data suggest that dysmyelination should be considered as a major factor for the disease.

Animals↗

[Arguments in favor of adipocyte grafts with the S.R. Coleman technique].

The main criticism against fat reinjection procedures is related to whether it is possible to graft adipocytes or not. The ideal solution would be to perform biopsies a few months after the operation to check the evolution of the grafted tissue, but such an approach would be difficult to accept for our patients. To overcome this difficulty the authors have compiled all the arguments that plead in favor of adipocyte grafts when Coleman's technique is used. Peer demonstrated in animal studies that it is possible to graft fatty tissue and that more resorption occurs when the fragments are large in size. The histologic studies have shown that the different stages of Coleman's technique do not alter the viability of the adipocytes. A disorganization of the architecture of the lobules is observed, but this does not compromise the theory of adipocyte grafting. An MRI study, performed on ten patients, demonstrated that the reinjected fat cells persist several months after the procedure. These fat cells presented the same characteristics as the patient's native fat in the surrounding area. This impression was confirmed by histological analysis of the reinjected fatty tissue 18 months after the graft. Finally, the clinical results obtained on over 200 patients treated for various indications in plastic and cosmetic surgery lead us to believe that it is possible to perform grafts of fatty tissue.

Adipocytes↗

mRNA coding for voltage-gated sodium channel beta2 subunit in rat central nervous system: cellular distribution and changes following kainate-induced seizures.

The cellular distribution of sodium channel beta2 subunit mRNA was examined in the central nervous system from adult Wistar rats using a non-radioactive in situ hybridization method with digoxigenin-labeled cRNA probes. The expression of the subunit was strong in cerebral and cerebellar cortex, in medulla oblongata and in the spinal cord whereas heterogeneous in hippocampus. The distribution was evaluated in hippocampus and cerebral cortex from 1 to 72 h after kainate injection and compared to control rats using densitometric analysis. In these areas, a transient increase was seen 1 h after the drug administration, followed, in the hippocampus, by a significant decrease. These variations differ from those we previously reported for alpha subunits and might play a role in cellular excitability changes occurring in the course of seizures.

Animals↗

Increase in mRNAs encoding neonatal II and III sodium channel alpha-isoforms during kainate-induced seizures in adult rat hippocampus.

Subtypes I, II and III of sodium channel alpha-subunit mRNAs were analyzed in adult rat brain areas after kainate-induced seizures. Tissue samples were microdissected from occipital neocortex, CA1 and CA3 hippocampus areas and dentate gyrus. Three reverse transcriptase-polymerase chain reaction (RT-PCR) protocols were undertaken to amplify these mRNAs. Amplification products were then distinguished after digestion by restriction enzymes, electrophoresis separation and densitometric analysis of gel profiles. PCR 1 evidenced the relative percentage of mRNAs I, II and III as well as neonatal II and III subtype isoforms, which resulted from an alternative splicing. PCR 2 and 3 were performed to focus on the neonatal vs. adult ratio in II and III subtypes, respectively. Seizures were shown to induce an increase in both neonatal subtypes, which suggested an alteration at the splicing level. These changes exhibited a peculiar brain regional distribution, the maximal effect being observed in dentate gyrus and hippocampus CA1 area. In situ hybridization experiments, using a digoxigenin-labeled oligonucleotide probe-specific for neonatal II and III mRNAs, confirmed this increase in neonatal mRNA subtypes. These changes were transient, reaching a maximum 6 h after drug injection, then disappearing between 12 and 48 h. They were prevented by a pre-treatment of animals by MK-801, a non-competitive antagonist of NMDA receptors. This work, thus, suggested that KA-induced seizures can be accompanied by transient alteration in the splicing pattern of sodium channel alpha-subunit mRNAs which resulted in an increase in expression of their neonatal isoforms within localized areas of adult rat brain.

Animals↗

Detection by in situ hybridization of hepatitis C virus positive and negative RNA strands using digoxigenin-labeled cRNA probes in human liver cells.

In situ hybridization was performed using cRNA probes on human liver biopsies to localize both positive and negative RNA strands of hepatitis C virus. From the 5' non-coding region of the viral genome, 210 bp, were amplified by reverse transcriptase-polymerase chain reaction and cloned in a plasmid. Probes were produced by in vitro transcription, and labeled using digoxigenin-11-UTP. Positive HCV-RNA strands were detected in all 20 of the patients analyzed, whereas negative strands were detected in only nine patients, as confirmed using computerized image analysis. Both probes labeled the cytoplasm of hepatocytes with a perinuclear intensification. Few of the mononuclear cells infiltrating the portal connective space contained positive HCV-RNA strands only. Stacks of dilated endoplasmic reticulum cisternae were observed by electron microscopy and their relationship with the infection was discussed. This study confirmed that non-radioactive in situ hybridization represents a useful tool to analyze the localization and replication of hepatitis C virus in liver tissue.

Biopsy↗

HPV typing by in situ hybridization on cervical cytologic smears with ASCUS.

OBJECTIVE: To assess the prognostic significance of atypical squamous cells of undetermined significance (ASCUS) using an in situ hybridization (ISH) method for destined cervical cytologic smears and a cocktail of biotinylated DNA probes for human papillomavirus (HPV) 6, 11, 16, 18, 31 and 33. STUDY DESIGN: Two HPV DNA probe mixtures were applied to the same smear for the simultaneous detection of high-risk HPV types 16, 18, 31 and 33 and low-risk HPV 6 and 11. ISH was carried out on 192 smears. Among them, 59 showed koilocytosis, 91 ASCUS and 42 normal features. RESULTS: Low-risk HPV types were rarely found and associated mainly with koilocytosis (17%). High rates of potentially oncogenic HPV were detected in ASCUS (41%) and condyloma (73%). In addition, similar levels of positivity were found to be associated with ASCUS when using two probe mixtures specific to high-risk HPV: one included HPV genotypes 16 and 18 and the other, genotypes 31 and 33. CONCLUSION: HPV DNA typing by ISH on cervical cytologic smears might improve the identification of women at high risk of developing precancerous and cancerous cervical lesions.

Adult↗