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J M Matthieu

Publications and source records attributed to J M Matthieu.

At least 91 records · Page 5Linked to original sources

[A highly efficient, highly purified duck embryo rabies vaccine].

At the Swiss Serum and Vaccine Institute, Berne, a highly purified rabies vaccine presenting a high content of effective rabies virus glucoprotein antigen has been developed. The new vaccine is derived from embryonated duck eggs (PDEV). Immunizations performed according to the post-exposure schedule recommended for potent rabies vaccines by the WHO (6 injections on days 0, 3, 7, 14, 28 and 90) already induce protective antibody titers on day 14 (greater than 1 IU/ml). Use of the latest radioimmunological methods did not reveal the presence of myelin basic protein in the new rabies vaccine. Due to improvements of its preparation the rabies vaccine PDEV is an economical and highly efficient vaccine involving only a very remote risk of post-vaccinal encephalitis.

Animals↗

Phylogenetic examination of vertebrate central nervous system myelin proteins by electro-immunoblotting.

Central nervous system (CNS) myelin proteins from vertebrate classes were examined by immunoblotting with antisera against mammalian CNS myelin proteins. Higher vertebrates possessed proteolipid (PLP), DM-20 and Wolfgram (WP) proteins, except that DM-20 was missing in amphibia. Fish CNS myelins contained neither PLP nor WP; instead they bound antisera to mammalian peripheral nervous system P0 protein. All classes carried myelin basic protein, but only mammals exhibited a component equivalent to rat 21.5K (21,500 dalton). These phylogenetic data are consistent with major changes in CNS myelin protein composition at the transition from fishes to higher vertebrates.

Animals↗

Expression of myelin-associated glycoprotein by small neurons of the dorsal root ganglion in chickens.

Biochemical and immunocytochemical investigations have shown that myelin-associated glycoprotein (MAG) is exclusively related to myelin and myelin-forming cells in mammals. In the present study it was found that dorsal root ganglia in young chickens display MAG-immunoreactive material in most small sensory neurons. The presence of MAG at the surface of small sensory neurons raises the question of whether this glycoprotein acts as a cell adhesion molecule in lower vertebrates.

Animals↗

Characterization of four human malignant glioma cell lines.

In this paper, the characterization of four human malignant glioma cell lines is described. The four lines are positive for glial fibrillary acidic protein (GFAP) in variable amounts. One of them, LN 992, is positive for S-100 protein. Myelin basic protein could not be detected in any of the four lines. The four lines had high levels of CNPase activity. The karyotype shows polyploidy for all lines, with modal numbers ranging from 80 to 120 and various numbers of marker chromosomes. Particular attention has been paid to the surface phenotype and a panel of three antiglioma monoclonal antibodies (Mabs), five antimelanoma Mabs, one anti-CALLA Mab, and two anti-HLA-DR Mabs has been used in an antibody-binding radioimmunoassay for the four cell lines. Lines LN 215 and LN 235 are positive with two antiglioma Mabs, LN 992 is negative. The four lines are positive with all five antimelanoma Mabs, except for LN 992 which ist negative with Mab D5. LN 992 and LN 215 are positive with the anti-CALLA Mab N2A12. LN 308 and LN 992 are positive with anti-HLA-DR Mab D4-22. There was no correlation between the in vitro morphology of the lines and the expression of the various biochemical or surface markers. These results stress the heterogeneity of the phenotype of human malignant glioma lines. These lines will be useful tools for further immunologic studies.

8-Bromo Cyclic Adenosine Monophosphate↗

Epidermal growth factor and bovine growth hormone stimulate differentiation and myelination of brain cell aggregates in culture.

Bovine growth hormone (bGH) and epidermal growth factor (EGF) increased the activity of ornithine decarboxylase (ODC) in brain cell aggregates cultured in a serum-free chemically defined medium. ODC is considered as a marker of cell growth and differentiation. The effect of bGH and EGF on myelination was investigated by measuring two myelin markers, 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) and myelin basic protein (MBP). EGF treatment at days 2 and 5 caused a dose-dependent increase of both myelin markers at culture day 12. This increase could still be observed at culture day 19, indicating a prolonged action of EGF. The continual presence of bGH in the culture medium produced a large accumulation of MBP at day 19. This effect was dose-dependent and required the presence of triiodothyronine (T3). In contrast, the effect of bGH on CNP activity did not require the presence of T3. This is the first report showing a direct effect of bGH on CNS myelination in vitro and of EGF on both MBP accumulation and ODC activity.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Triiodothyronine stimulation of oligodendroglial differentiation and myelination. A developmental study.

The biochemical development of rotation-mediated aggregating brain cell cultures was studied in a serum-free chemically defined medium in the presence (complete medium) or the absence of triiodothyronine (T3). The expression of 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) and myelin basic protein (MBP), two myelin components, was temporally dissociated in brain cell aggregating cultures grown in a complete medium. CNP increased from day 8 and reached a plateau around day 25. MBP accumulated rapidly from the third until the fourth week in culture. The total protein content increased gradually until day 25. The activity of ornithine decarboxylase (ODC) used as an index of cell growth and differentiation, showed two well-defined peaks of activity. The first peak reached a maximum at day 6 and correlated with both the highest DNA content and the peak of [3H]-thymidine incorporation. The second peak of ODC activity (from day 19 to 35) coincided with the differentiation of oligodendrocytes. These results confirm that aggregating fetal rat brain cells cultured in a serum-free chemically defined medium undergo extensive differentiation. Addition of T3 to the culture medium doubled the CNP activity by day 16. In contrast, MBP was only slightly increased by day 16, reaching at 25 and 35 days 8 to 10-fold higher values than the untreated cultures. When T3 was removed between day 16 and 25, CNP decreased almost to control values and MBP failed to accumulate. Moreover, when T3 was reintroduced into the medium (between day 25 and 35), CNP activity was restored and MBP content was partially corrected. T3 treatment produced a concentration-dependent increase in ODC activity which was observed only around day 19. The first peak of ODC activity observed at culture day 6 was independent of the presence of T3. These results obtained in brain cell cultures emphasize the direct effect of T3 on myelination.

2',3'-Cyclic Nucleotide 3'-Phosphodiesterase↗

Anticonvulsive treatment of myelin-deficient (mld) mice improves survival and confirms the delayed increase of myelin basic protein.

Myelin-deficient (mld) mutant mice were treated with phenobarbital between 60 and 90 d of age. The survival rate at 90 d increased from 1.4% in untreated mutants to 46% in those who received phenobarbital. This is evidence that apneic spells during tonic seizures are a major cause of death in mld mice. Myelin basic protein (MBP) content of brain homogenates from treated mld mice increased significantly between 30 and 90 d. MBP was present in myelin purified from the 90-d-old treated mld mice. These results demonstrate that the MBP increase, which occurs after the active phase of myelin formation is completed, is a general phenomenon and is not caused by the selection of a small and mildly affected subpopulation of mutants.

Animals↗

The neuronal adhesion protein D2 in differentiating aggregates of brain cells.

The D2-protein is a high molecular weight protein involved in interneuronal adhesion. The concentration of D2-protein was measured both in aggregates of fetal rat telencephalic cells cultured in a chemically defined medium and in developing forebrain. Both the concentration of the D2-protein and the degree of sialylation were changed in the cultures in parallel with the corresponding values obtained from postnatal forebrain. In the cultures the highest specific concentration of D2-protein was observed after 12 days in culture. This value was 2.7 times higher than the average value of adult rat forebrain. Antibodies to D2-protein have previously been shown to inhibit fasciculation of neuritic fibers extending from cultured explants of sympathetic ganglia. We investigated the effect of such antibodies on the differentiation of aggregating telencephalic cells. By adding surplus antibodies to the cultures from day 11 to day 16 we were able to decrease the specific concentration of D2-protein on the neurons by 53% measured at day 19. The decrease was not compensated fully even after further 10 days in the culture. Although the concentration of D2-protein was decreased during the period of synaptogenesis no change was found in the specific concentration of a marker of mature synapses, the D3-protein. Thus, in this culture system synaptogenesis could proceed to an unimpaired extent in the presence of a decreased concentration of a putatively involved adhesion molecule. However, the specific concentration of two markers of myelination, 2',3'-cyclic nucleotide 3'-phosphodiesterase and myelin basic protein, were both increased, suggesting an antibody-induced stimulation of myelination in the cultured aggregates.

Animals↗

Myelination in the CNS of mld mutant mice: comparison between composition and structure.

Myelination was studied between 15 and 135 days postnatally in the brain and optic nerves of myelin deficient (mld) mutant mice. Between 15 and 30 days almost no myelin basic protein (MBP) could be detected in mld myelin. The axons were loosely wrapped by membranes which only fused at the extracellular sites forming the intraperiod line. At this age the major dense line was absent. At 25-30 days, purified myelin contained extremely high 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) (EC 3.1.4.37) activities which could be related to the redundant paranodal-like structures observed at this age in mld CNS. Therefore, it can be suggested that CNP is probably localized in such paranodal loops. After the active phase of myelin deposition was completed in controls, mld mutants showed important increases of MBP concentration in myelin with the concomitant appearance of the major electron dense line and better compaction of the myelin lamellae. The yield of myelin increased from 5 to 14% of control values during the period of 30 to 135 days. Since the recovery phase occurred at the time when myelin lipid synthesizing enzymes are at low residual activities, the myelin deficit could only be partially corrected. This study indicates that there is a delay of MBP synthesis in mld mice and the decrease of other myelin proteins could be secondary to the assumed primary defect involving MBP.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Murine leukodystrophies as tools to study myelinogenesis in normal and pathological conditions.

Myelinogenesis is controlled by several genes. Therefore, the study of mutations affecting myelination should provide better understanding of the assembly and maintenance of myelin, and in the case of similitude with human diseases, a direct insight into the pathogenesis of these diseases. Murine mutants can be bred readily and sequential analyses allow an examination of the dynamic processes of myelination. In this study, we have selected certain aspects of four leukodystrophies in mice. The precise mechanisms leading to the important myelin deficit observed in the jimpy mutation, a sex-linked recessive trait, are still not completely elucidated. Our results show in jimpy mice severe astrocytic alterations prior to myelin formation. Therefore, abnormalities of oligodendrocytes and possibly axons could be a secondary phenomenon. Nevertheless, a defect involving neuroglia precursor cells cannot be ruled out. At the present time, Pelizaeus-Merzbacher is a disease in which mainly oligodendrocytes appear to be altered. In consequence, our findings in jimpy mice do not support the present contention that this mutation represents a model for Pelizaeus-Merzbacher disease. We propose that the jimpy mutation could be invaluable to study cell-cell interactions at an early stage of myelinogenesis. Interest in the myelin deficient (mld) mutant derives from the specific lack of one of the major myelin constituents, myelin basic protein, and the concomitant absence of the major electron dense line during the active phase of myelin deposition in the CNS. Our present knowledge points out a defect of gene regulation involving myelin basic protein synthesis. The absence of this extrinsic membrane component made it possible to catch a glimpse of its role in the formation and maintenance of the complex structure of the myelin sheath in the CNS. Quaking mice have been considered to represent an arrest of myelinogenesis. This commonly accepted view has to be reconsidered at the light of recent morphological and biochemical findings. An abnormal processing of the myelin-associated glycoprotein could prevent the normal compaction of myelin until the animals reach adulthood. Twitcher is characterized by extensive central and peripheral demyelination and the presence of intracellular inclusions in macrophages similar to human globoid cell leukodystrophy. In both human and murine diseases, a deficiency of galactosylceramidase activity was demonstrated.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Immunocytochemical investigations of murine leukodystrophies. A study of the mutants 'jimpy' (jp) and 'myelin deficient' (mld).

Sections of the central nervous system of the leukodystrophic mouse mutants 'jimpy' (jp) and 'myelin deficient' (mld), as well as of healthy littermates, were immunostained for glial fibrillary acidic protein (GFA), myelin basic protein (MBP) and myelin-associated glycoprotein (MAG). Adjacent sections were stained conventionally for myelin. In jp, GFA-stained astrocytes were abnormally prominent already at the age of 12 days. A considerable amount of MBP and MAG was present in the vicinity of axons, although no myelin was visible in the conventional stains for myelin. In mld, GFA-staining astrocytes were present in normal numbers. MAG could be demonstrated in its normal localization along axons, but MBP was visible only in the comparatively old animal (85 days). Here, it was demonstrated in an abnormal site--the perikarya and the proximal parts of the processes of oligodendrocytes. Thin myelin sheaths present in this animal could not be stained for MBP.

Animals↗

Investigations on myelination in vitro: IV. "Myelin-like" or premyelin structures in cultures of dissociated brain cells from 14--15-day-old embryonic mice.

The present study reports ultrastructural and biochemical data characteristic of myelin-related structures in 30- to 41-day-old cultures of dissociated brain cells from 14- to 15-day-old embryonic mice. Multilayered membranous material was identified and displayed an alternation of electron-lucent and electron-dense lamellae with a periodicity of 102 A. In these membranes, typical myelin constituents like basic protein, cerebrosides, sulfatides, and CNPase could be identified. Although we are still unable to distinguish if these membranes are premyelin or compact myelin, which could be partly degraded, these results indicate that cultured mouse brain cells retain, to a certain extent, potential to produce myelin-related membranes.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Growth properties and biochemical characterization of mouse Schwann cells cultured in vitro.

Purified secondary cultures of mouse Schwann cells (less than 5% fibroblast contamination) have been obtained by taking advantage of the differential adhesion of Schwann cells and fibroblasts during trypsinization. The growth properties of the purified subcultures changed with time in culture. Cells passaged after 5 days in vitro (DIV) divided rapidly (doubling time 22 h), whereas cells that had been in vitro for longer periods progressively decreased their growth rate, becoming quiescent after 20 or more days. Schwann cells lacked the Thy 1.2 surface antigen, but were positively stained with antigalactocerebroside antibodies after prefixation. Biochemical analyses showed Schwann cells to be enriched in the activities of enzymes characteristic of the myelin-forming cells: 2'3'-cyclic nucleotide 3'-phosphodiesterase (CNP), cerebroside sulfotransferase (CST) and UDP-galactose: ceramide galactosyltransferase (CGalT).

2',3'-Cyclic Nucleotide 3'-Phosphodiesterase↗

[Determination of myelin basic protein in the cerebrospinal fluid in neurologic diseases].

Myelin basic protein (BP) is a specific constituent of the myelin sheath. This structural protein cannot be detected in the cerebrospinal fluid (CSF) unless myelin is acutely degraded. In order to detect active demyelinating diseases, BP was measured in CSF samples of radioimmunoassay. The assay is specific and sensitive to as little as 1.5 to 2.5 ng/ml BP. A moderate non-parallelism between the standard curve and various dilutions of CSF samples indicates that in CSF BP is present in an altered state. Over 1000 CSF samples have been measured in a double-blind study, in which 100 patients were selected and their clinical records evaluated. Twenty-eight patients without demyelinating disease had BP levels lower than 2.5 ng/ml. 72 patients had values higher than 2.5 ng/ml. Among them, the most frequent causes of demyelination were multiple sclerosis (19 cases), brain tumors (22 cases) and cerebral or spinal vascular accidents (12 cases). During a single acute demyelinating episode, BP levels revert to background levels within a few days. In contrast to immunological anomalies observed in the CSF, the presence of BP is concomitant with the breakdown of myelin. The size and location of the lesion influence the level of BP in the CSF. Thus, the assay is useful for the detection of active demyelination in the central nervous system and in following the course of the disease, although normal values do not rule out the presence of demyelinating lesions. For the time being, therefore, this assay should be restricted to specialized neurological centers and selected patients.

Adult↗

Distribution of lipid synthesizing enzymes, 2',3'-cyclic nucleotide 3'-phosphodiesterase, and myelin proteins in rat forebrain subfractions during development.

The distribution of UDP-galactose:ceramide galactosyltransferase (CGalT) was studied in subcellular fractions of rat forebrain during development using zonal centrifugation on linear gradients. Specialized subfractions: SN 1, a microsomal fraction, SN 4, a myelin-related fraction, and purified myelin were also used for this study. For comparison, two microsomal lipid synthesizing enzymes, a myelin-specific enzyme, 2',3'-cyclic nucleotide 3'-phosphodiesterase and myelin proteins were measured in the same subfractions. UDP-glucose:ceramide glucosyltransferase and cerebroside sulfotransferase were confined to microsomes. CGalT was localized in microsomes, but also in myelin and myelin-related fractions. The developmental change in distribution of CGalT in adult animals toward myelin containing fractions could indicate that the replacement of galactosylceramide in compact myelin could be carried out in close proximity to compact myelin (mesaxon, paranodal loops) rather than in the distant oligodendrocyte perikaryon.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗