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At least 19 recordsLinked to original sources

[The growth and morphophysiological study of the bushy tissue receptor in a nerve tissue culture].

The conditions for growing bush receptors on collagen substrate in presence of 2-4 ng/ml highly purified brain neurite stimulating protein were determined in the study of spinal ganglia cultures of 10-11-day chicken embryos. The degree of neurite branching and sinuosity and the distribution density of preterminals of cultured bush-like receptors are like those of chicken embryos' natural interoceptors. The ultrastructure of end receptor plates in culture resembles that of natural mechanoreceptor terminals. Cultural receptors are characterized by spontaneous electrophysiological activity. They respond to tactile irritation with bursts of discharges.

Animals

Complement receptors in human peripheral nerve tissue.

Cryostat sections of human peripheral nerve tissue adsorbed sheep erythrocytes sensitized with antibody and human complement (EAC). Activated complement was essential for the reaction to occur. The receptor had specificity for the C3b fragment. In order to obrain binding to nerve tissue, the indicator cells had to be coated with more complement than that required for binding to C3b receptors in spleen and renal tissue. The receptors are located within the nerve fascicles and are probably of glycoprotein nature. The receptors for C3b in peripheral nerve tissus may be of significance in the deposition of immune complexes, which may play a role in acute polyradiculoneuritis.

Complement Activation

Observations on nerve tissue infected with M. leprae.

Nerve tissue from leprosy patients showed (i) small linear pinkish translucent crystalloid bodies, (ii) small round structures in relation to filamentous strands, (iii) short pieces of filaments with round spaces within them and (iv) miscellaneous structures like pink granules, brown bodies and dark masses. These structures are being studied for their relationship to leprosy.

Humans

Characteristic distribution of glycolipids in gadoid fish nerve tissues and its bearing on phylogeny.

Glycolipids were isolated from nerve tissues of gadoid fishes including Alaskan pollack and Pacific cod. Their chemical structures were determined by gas-liquid chromatography and gas chromatography-mass spectrometry, and their constituents were analyzed in detail and compared with those of glycolipids from other fish groups. The results revealed that gadoid fish nerve membranes contain peculiar glycolipid molecular species that are distinctly different from those in other teleostean fishes and higher vertebrates. The mole percentage ratio of the four major glycolipids (cerebroside-sulfatide-galactosylglyceride-sulfogalactosylglyce ride) was 48:12:25:15, indicating profound accumulation of glycoglycerolipids. Galactosylglyceride and sulfogalactosylglyceride were primarily of the diacyl type (greater than 90%), the major fatty acids being 16:0 and 18:1. An abundance of glucocerebroside (25 to 55% of cerebroside) and its fatty acid ester (37 to 47% of ester cerebroside) was noted. Cerebroside and sulfatide were characterized by the absence of hydroxy and odd numbered fatty acids, and 24:1 acid was a predominant component of both glucocerebroside and galactocerebroside. Subcellular fractionation revealed that myelin membranes comprised such unusual glycolipid constituents as those seen in whole nerve tissues. A vertebrate whose nerve membranes consist of such peculiar glycolipid molecules has not previously been reported. The characteristics of the glycolipid composition in gadoid fishes are discussed in relation to myelin functions, physicochemical properties of nerve membranes, and the phylogenic significance of this fish group.

Animals

Effect of dental amalgam restorations on the mercury content of nerve tissues.

In an autopsy study in two men and an experimental study performed on three female beagles the mercury burden of nerve tissues was determined. Nerve tissues from the head and face region and from three peripheral nerves were analyzed for mercury content with the aid of atomic absorption spectroscopy. In the dogs dental amalgam restorations were placed so as to investigate the possible influence from the amalgam on the mercury content of the tissues under study. The mercury content in man and dogs differed widely from one nerve to another, with no apparent relation to the number, type, or location of tooth restorations.

Aged

Alanine formation and alanine aminotransferase activity in the nerve tissue with proliferating macroglia.

In the nerve tissue with proliferating macroglia cells were observed a lowered oxygen consumption, an increased aerobic glycolysis and alanine formation and a higher alanine aminotransferase and glutamate dehydrogenase activity than in the control tissue in the homogenates and in the cell sap fraction. The substrate saturation curves, apparent Km and pH optimum values in the tissue with proliferating macroglia and in the control did not differ from one another. The authors assume that a higher alanine aminotransferase activity in the tissue with macroglia proliferation can reflect either a higher synthesis of the enzyme in the altered tissue, or a predominance of glial elements in the altered tissue possessing a higher alanine aminotransferase activity than the nerve cells.

Alanine

Guillain-Barré syndrome: demonstration of antibodies to peripheral nerve tissue.

Sera from 30 patients with acute Guillain-Barré syndrome were tested for the presence of antibodies to peripheral nerve tissue using the antiglobulin consumption test. An increased binding of IgG was observed in 15 out of 30 sera and in these sera F(ab')2 fragments prepared from IgG retained the capacity to combine with peripheral nerve tissue, suggesting an antigen-antibody interaction. The specificity for peripheral nerve tissue was demonstrated by absorption experiments. F(ab')2 fragments prepared from IgG of normal sera, however, failed to react with the tissue, suggesting a non-specific binding through the Fc part of the molecule. In sera from patients fully recovered from the Guillain-Barré syndrome and from patients with other neuropathies, no increased binding of IgG was observed.

Acute Disease

Lipids from nerve tissues of the horseshoe crab, Limulus polyphemus.

1. The predominant lipids of nerve cords, ganglion and brain from horseshoe crabs were cholesterol (11% of lipid) and phospholipid (81% of lipid). 2. Major phospholipids were phosphatidyl ethanolamine and phosphatidyl choline with lesser amounts of phosphatidyl serine and phosphatidyl inositol and sphingomyelin. 3. The phospholipid fraction was characterized by a high content of plasmalogen, i.e. alk-1-enyl acyl phosphatides, so that 42% of the ethanolamine phosphatides were the plasmalogen, phosphatidal ethanolamine. 4. Phosphatidyl choline and phosphatidyl ethanolamine were high in polyunsaturation with 20:4 and 20:5 major fatty acids. Sphingomyelin had predominantly long chain saturated fatty acids. 5. Cerebrosides and gangliosides, which are associated with vertebrate nerve tissues, were absent from nerves of horseshoe crabs.

Animals

Effect of temperature, cholesterol and nerve tissue on multiplication of armadillo M. leprae.

The effect of temperature, nerve tissue and certain constituents of the medium on multiplication of armadillo M. leprae was studied using Hanks BSS. An equal or better growth was seen at 30 degrees C and 10 degrees C compared to 37 degrees C. Multiplication was also seen at -20 degrees C. Adding cholesterol, foetal calf serum, cystine-HCl, sodium thioglycollate or nerve suspension and covering medium with liquid paraffin each showed beneficial effect. Hanks containing foetal calf serum, cholesterol with sodium thioglycollate or cystine-hydrochloride showed maximum multiplication. These combinations may be used for testing additional factors for further improvement of the medium.

Animals

[Heterogeneity of protein metabolism and activities of certain enzymes in functionally different structures of nerve tissue].

The article deals with a review of the results of studies conducted at the department which evidence for inhomogeneity of localization, composition and different intensity of intravital renewal of proteins as well as for different activity of some enzymes most important for the nervous system functions in the macro- and microstructural formation of the nerve tissue. On the basis of the experimental data concerning the presence in the nerve tissue of a wide range of rates for intravital renewal of proteins in the structures of different functions as well as of those concerning subcellular and suborganoid localization of intracellular peptid-hydrolases, a conclusion is drawn that catabolism of the protein molecules occurs mainly on the cell membrane structures. The effect of acid peptide-hydrolases is chiefly manifested in the died and damaged cells and neutral ones in the intact functioning cells. As among the proteins most important functionally for the nervous activity ATP-hydrolyzing enzymes occupy a special place, the article provides basic data of studies in the ATPase activity in the nervous tissue, intracellular localization of the enzyme, its sensitivity to uni- and bivalent ions, as well as in the mechanism of interaction with ouabain--specific inhibitor and with melipramine--neurotropic substance.

Adenosine Triphosphatases

The effect of an anthraquinone laxative on colonic nerve tissue: a controlled trial in constipated women.

Anthraquinone containing laxatives have been accused to cause degenerative changes in the colonic nerve tissue; prospective studies, however, are not available. This article reports the result of a semiprolective study in 11 matched pairs of chronically constipated women. Each pair consisted of one women having regularly taken an anthraquinone containing laxative for at least one year and a control person without such a medication. Six endoscopic biopsies were taken from the left colon and rectum which were evaluated by electron microscopy and subsequent ultramorphometry for the ratio of damaged to intact neurons, density of neurosecretory vesicles, axonal diameter and number of lysosomes. Medians of the three colonic locations were calculated in each individual and for each variable, and they were compared by non-parametric statistics. Medians of the ratio of damaged to intact neurons in anthraquinone treated women and controls were 0.162 and 0.146 (p = 0.0326, one-tail), medians of the number of type I vesicles were 293 and 348.5 per 100 microns 2 (p = 0.0365, one-tail), respectively. None of the other variables were different between groups. These data do not support the hypothesis that anthraquinone containing laxatives are able to provoke relevant degenerative changes in the colonic nerve tissue since the variables are either similar in both groups or only slight differences could be found which are unlikely to be of pathophysiological relevance.

Adult

Correlated appearance of ossification and nerve tissue in human fetal jaws.

The factors initiating the onset of desmal jaw formation are not known. The purpose of the present report was to examine the correlation between the appearance of ossification and nerve tissue in human fetal jaws. This was done through elaboration of similarities in occurrence of tissue types at four different sites of initial bone formation in the jaws. Radiological and histochemical methods applied to the jaws of 26 human embryos/fetuses revealed that nerve tissue appeared in the jaws before bone tissue. Early bone formation occurred in close relation to the mandibular nerve, the maxillary nerve, the palatine nerve, and the naso-palatine nerve. It is suggested that the foramina (mental foramen, infraorbital foramen, palatal foramen, and incisive foramen) are the areas of incipient bone formation, and that the sequence in bone formation corresponds to the sequence in the development of nerve fibers from the trigeminal ganglion.

Histocytochemistry

[Early functional and structural changes in the nerve tissue following contact with chymopapain].

Using magnetic resonance imaging, conventional histology, and spinal evoked potentials, the authors studied the short-term effects of chymopapain on nerve tissue in the lumbar vertebral canal region in rats. Chymopapain in different concentrations was injected into the subarachnoid space in 31 rats. As early as 20 minutes later latency changes in the evoked potentials were observed; the histologic examinations after two hours showed bleeding, swelling of the myelin, and vascular changes. Magnetic resonance imaging of the lumbar spine, performed after six hours, showed a markedly stronger signal, indicative of an intraspinal edema, as compared to the control group. The authors' studies are clear proof that changes in nerve tissue following contact with chymopapain occur considerably faster than hitherto assumed in the literature.

Animals

[Use of a histological fixative for extraction of the RNA precursor pool from mollusk nerve tissue].

The incorporation of 3H-uridine into the nucleotide pool of the molluscan nerve tissue was calculated in a routine fixative solution (formalin--alcohol--acetic acid, 9:3:1). The optimal conditions for the precursor output from the tissue being studied, the results obtained well compare with those obtained by common biochemical techniques. Our method gives a possibility to use the same sample of tissue for historadiographical investigation of labeled RNA and for cytochemical determination of nuclear acid amounts.

Animals

Effects of chondroitinase ABC on intrathecal and peripheral nerve tissue. An in vivo experimental study on rabbits.

The enzyme chondroitinase ABC has recently been suggested for use in chemonucleolysis. The effects of 200 U ml of chondroitinase ABC were studied on intrathecal and peripheral nerve tissue in rabbits. After the intrathecal (subarachnoid) application of 0.2 ml of either the diluent in the control group (N = 2) or chondroitinase in the study group (N = 4), no neurologic deficit was detected. Compared with the control group, no morphologic changes at the light microscopic level were induced in the spinal cord by chondroitinase. No neurophysiologic differences were detected between tibial nerves after exposure to 1 ml of the diluent (control, N = 8) or chondroitinase (the other leg) for 4 weeks, nor did the study group, compared with the control group, show any morphologic changes in the tibial nerves. Because the concentration of chondroitinase ABC tested was approximately 40 times higher than might be used clinically for chemonucleolysis, the present study indicates a wide margin of safety for unwanted side effects on nerve tissue.

Animals

Ultrastructural changes in neonatal sciatic nerve tissue: effects of passive maternal smoking.

The dangers of cigarette smoking having already been recognized, this study attempts to delineate findings from a passive smoking study at the ultrastructural level. The project utilized a model of mice subjected to cigarette smoke and encompassed the electron microscopic examination of neonatal tissue for morphological abnormalities. Study of sciatic nerve tissue taken from the offspring of passively smoked females revealed definite toxic effects on the neonatal tissue. This investigation, which concentrated on morphological changes, indicates that passive maternal smoke inhalation may result in abnormal changes to the fine structure of fetal tissue although further investigation in this area is necessary to broaden our knowledge and understanding of the mechanisms involved.

Animals

Effect of insulin, proinsulin and pancreatic extract on myelination and remyelination in organotypic nerve tissue in culture.

The effect of insulin, proinsulin and crude pancreatic extract was studied in organotypic nerve tissue cultures, principally in relation to the development of myelin. Cultures were exposed to media supplemented with these substances beginning on the first day of explantation. By 4 days in vitro, there was a good neuritic outgrowth from all the fragments. That from the insulin and pancreatic extract-fed were more profuse and extended further than from the control group. By 8-12 days in vitro it was also possible to observe more myelinated axons in these treated groups. The pattern of changes in the myelin associated enzyme activity, 2',3'-cyclic nucleotide 3'-phosphohydrolase (CNPase) paralleled the differential increase in myelination. Insulin-fed cultures showed a more rapid increase in CNPase activity, which, after 21 days in vitro reached a plateau about 30-50% over that of the controls. Cultures treated with pancreatic extract showed a similar pattern of increased activity, while in proinsulin-treated explants the activity was only significantly higher after 21 days in vitro. To study the effect of these substances on remyelination, well myelinated cultures were completely demyelinated by exposure to anti-white matter antiserum and were subsequently exposed to the same normal control or supplemented media. The amount of myelin and concomitantly the CNPase activity increased rapidly and in the same proportion between the various groups as was observed previously during primary myelination. Insulin as well as crude pancreatic extract and, to some extent, proinsulin demonstrated a marked effect on the time of onset and principally on the total amount of myelin developed by treated cultures as compared to those maintained in normal nutrient medium.

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