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Retinal burns caused by exposure to MIG-welding arcs: report of two cases.

A new generation of arc welder has recently become widely available at a price which is within reach of most amateurs and part-time mechanics, known as the MIG welder (metal-arc inert gas welder). In MIG welding the arc is ensheathed in a stream of inert gas which prevents the molten metal from oxidising. The stream of gas changes the character of the emitted radiation, and it is possible that this type of welder poses a greater threat to sight than previously recognised. Radiation in the ultraviolet range emitted by arc welders is absorbed by the unprotected cornea and lens, giving rise to a keratoconjunctivitis, or 'arc-eye,' which, though intensely painful, is not considered a threat to sight. Radiation in the visible and near infrared spectrum, however, penetrates the eye to be absorbed by the retina and may cause thermal or photochemical damage which may be permanent and sight-threatening. Retinal injuries resulting from exposure to ordinary electric welding arcs have been reported, but such injuries are uncommon. Two cases of retinal burns resulting from exposure to MIG welder emissions which presented on consecutive days to the Leicester Royal Infirmary are presented. This is the first report of such injuries relating specifically to MIG welding.

Adult

Differential effect of aging on membrane immunoglobulin (mIg)-mediated endocytosis in the inductive and effector sites of the mucosal immune system.

The effect of aging on the endocytosis of anti-immunoglobulin (Ig) antibody as ligand by membrane Ig receptors (mIg) of B cells in the spleen, the mesenteric lymph nodes (MLN), and the Peyer's patches (PP) was investigated. Horse radish peroxidase (HRP) labelled (Fab')2 anti-mouse Ig specific for IgM, IgG, and IgA was used as the ligand. The rate of mIg mediated ligand endocytosis by aged B cells was significantly reduced in the PP as compared to the young group. In contrast, there were no age-related differences in the rate of mIg-mediated ligand endocytosis by B cells in the spleen and MLN. After 2 hr of incubation, about 70-80% of ligand added was internalized by splenic and MLN B cells from both young and old mice. Aged PP B cells showed significantly slower rate of ligand internalization as compared to those cells from young mice. This effect was pronounced at 30 and 60 min after incubation. Young PP B cells were found to internalize about 50% of the ligand within 30 min, while it took 60 min for aged B cells to internalize the same amount. The age-related rate of mIg-mediated endocytosis by B cells in the MLN, as opposed to a slower rate of endocytosis by B cells in the PP, emphasizes its distinct nature as a mucosal site.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

B lymphocyte antigen receptors (mIg) are non-covalently associated with a disulfide linked, inducibly phosphorylated glycoprotein complex.

T and B lymphocyte antigen receptors exhibit single transmembrane spanning regions and very short, three to five amino acid, C-terminal cytoplasmic tails. Ligation of these receptors leads, apparently through GTP binding protein activation, to rapid stimulation of a polyphosphoinositide specific phosphodiesterase (PPI-PDE). T lymphocyte antigen receptors (alpha beta) are coupled to PPI-PDE via a receptor associated complex of membrane proteins, designated CD3. Although an analogous transducer complex is presumed to exist in B cells, no such structure has been defined. We utilized in vitro [32P]phosphorylation to identify and characterize a membrane immunoglobulin (mIg) associated phosphoprotein complex which appears to represent a B cell analog of CD3. The phosphoprotein complex consists of three N-glycosylated polypeptides which occur as disulfide linked dimers, non-covalently associated with mIg. The complex associated with mIgM (pp32, pp34 and pp37 subunits) differs from that associated with mIgD (pp33, pp34 and pp37 subunits), and the isotype specific phosphoprotein (pp32 or pp33) appears to exist as a disulfide linked heterodimer with either pp34 or pp37. Aluminum fluoride stimulates phosphorylation of all of the subunits, and at least one of the proteins is phosphorylated on a tyrosine residue(s).

Animals

B cell activation. VI. Effects of exogenous diglyceride and modulators of phospholipid metabolism suggest a central role for diacylglycerol generation in transmembrane signaling by mIg.

Previous evidence indicates that in vitro activators of protein kinase C, such as phorbol myristate acetate (PMA), are able to induce early activation events in murine B cells, including membrane depolarization and increased I-A antigen expression. These same events are induced by specific antigen and anti-receptor antibody. This evidence suggests that protein kinase C activation may be an important intermediary event in mIg-mediated transmembrane signaling. Previously, investigators have suggested that protein kinase C activation is regulated by a novel second messenger, diacylglycerol (DG), and DG is generated by phosphatidylinositol (PI) hydrolysis after receptor-ligand interaction in many systems. In view of this concept, we examined the effects of nonspecific activators and inhibitors of DG production and DG itself on membrane potential and levels of I-A antigen expression in murine B cells. Our results indicate that exposure to DG, or induction of DG production by treatment of B cells with exogenous phospholipase C, results in depolarization and increased I-A antigen expression similar to that induced by anti-receptor antibody and specific antigen. Furthermore, we demonstrate that depolarization and increased I-A expression induced by anti-receptor antibody is blocked under conditions in which DG production is inhibited. As expected, based on its direct activation of protein kinase C, PMA stimulation is unaffected by this inhibition. These results support our earlier hypothesis that occupancy of antigen receptors on B cells is linked to subsequent activation events by PI hydrolysis, DG generation, and protein kinase C activation.

Animals

Up-regulation of c-fos expression is a component of the mIg signal transduction mechanism but is not indicative of competence for proliferation.

Control of entry into and progression through the early phases of cell cycle in B lymphocytes is poorly understood at the molecular level. Products of the c-fos proto-oncogene have been implicated in regulation of G0 to G1 cell cycle phase transition and cell proliferation in other systems. In view of these observations, the relationship between signals generated through receptor Ig which alter the B cells position in cell cycle and relative level of c-fos expression was investigated. Not unexpectantly, anti-Ig under conditions which promote G0-G1 and G1-S phase transition was observed to selectively up-regulate expression of c-fos. More interestingly, however, anti-Ig-induced cross-linking of surface Ig on the WEHI-231 B lymphoma also caused rapid and transient up-regulation of c-fos mRNA levels although it was associated with inhibition of proliferation of these cells. These results are important because they show that 1) c-fos expression is inducible in both normal and transformed B lymphocytes as a consequence of signals generated through receptor Ig, and 2) up-regulation of c-fos expression is not positively linked to B cell proliferation but rather appears to be a component of the surface Ig signal transduction mechanism. Finally, studies utilizing phorbol diesters suggest that pathways leading through protein kinase C are involved in both the growth inhibition and c-fos expression WEHI-231 following membrane-associated Ig cross-linking.

Animals

Membrane Ig cross-linking regulates phosphatidylinositol 3-kinase in B lymphocytes.

Cross-linking of the B cell AgR results in activation of mature B cells and tolerization of immature B cells. The initial signaling events stimulated by membrane immunoglobulin (mIg) cross-linking are tyrosine phosphorylation of a number of proteins. Among the targets of mIg-induced tyrosine phosphorylation are the tyrosine kinases encoded by the lyn, blk, fyn, and syk genes, the mIg-associated proteins MB-1 and Ig-beta, phospholipase C-gamma 1 and -gamma 2, as well as many unidentified proteins. In this report we show that mIg cross-linking also regulates phosphatidylinositol 3-kinase (PtdIns 3-kinase), an enzyme that phosphorylates inositol phospholipids and plays a key role in mediating the effects of tyrosine kinases on growth control in fibroblasts. Cross-linking mIg on B lymphocytes greatly increased the amount of PtdIns 3-kinase activity which could be immunoprecipitated with anti-phosphotyrosine (anti-tyr(P) antibodies. This response was observed after mIg cross-linking in mIgM- and mIgG-bearing B cell lines and after cross-linking either mIgM or mIgD in murine splenic B cells. Thus, regulation of PtdIns 3-kinase is a common feature of signaling by several different isotypes of mIg. This response was rapid and peaked 2 to 3 min after the addition of anti-Ig antibodies. The anti-Ig-stimulated increase in PtdIns 3-kinase activity associated with anti-Tyr(P) immunoprecipitates could reflect increased tyrosine phosphorylation of PtdIns 3-kinase, increased activity of the enzyme, or both. In favor of the first possibility, the tyrosine kinase inhibitor herbimycin A blocked the increase in ant-Tyr(P)-immunoprecipitated PtdIns 3-kinase activity as well as the anti-Ig-induced tyrosine phosphorylation. Moreover, this response was not secondary to phospholipase C activation but rather seemed to be a direct consequence of mIg-induced tyrosine phosphorylation. Activation of the phosphoinositide pathway by a transfected M1 muscarinic acetylcholine receptor expressed in WEHI-231 B lymphoma cells did not increase the amount of PtdIns 3-kinase activity which could be precipitated with anti-Tyr(P) antibodies. Similarly, inhibition of the phosphoinositide pathway did not abrogate the ability of mIg cross-linking to stimulate this response. Thus, mIg-induced tyrosine phosphorylation regulates PtdIns 3-kinase, an important mediator of growth control in fibroblasts and potentially an important regulatory component in B cells as well.

Animals

Membrane IgM cross-linking is not coupled to protein kinase C translocation in WEHI-231 B lymphoma cells.

The early molecular events involved in the process of signal transduction via membrane immunoglobulins (mIg) include phosphatidyl inositol metabolism, intracellular Ca2+ mobilization, and protein kinase C (PKC) activation. Anti-mIg antibodies exert either stimulating or inhibitory effects depending on the activation state and/or the differentiation stage of B cells. WEHI-231 is a murine B lymphoma that becomes inactivated upon anti-mIg treatment. This lymphoma has an immature B cell phenotype and is considered as a model for tolerance induction in B lymphocytes. In this study, we have investigated the relationship between mIg triggering, Ca2+ elevation, PKC translocation, and growth inhibition in WEHI-231 cells. Monoclonal antibodies to mu and kappa chains of the mIgM receptor promoted a rapid increase in intracytoplasmic Ca2+ and were potent inhibitors of cell growth. Ca2+ elevation and PKC translocation have been previously shown to be associated in B lymphocytes. To study the subcellular distribution of PKC in WEHI-231 cells, we used enzymatic assays and immunodetection methods. Although phorbol 12-myristate 13-acetate induced a rapid and almost complete redistribution of cytosolic PKC to the membrane fraction, anti-mIg treatment failed to modify the compartmentalization of PKC. These findings extend recent observations suggesting that B cell triggering through mIg receptors may involve additional pathways independent from PKC activation. PKC activation in normal B cells is also believed to provide a regulatory signal which limits the magnitude of the early signals produced by anti-mIg. Such a regulatory control is unlikely in WEHI-231 cells, due to the dissociation between Ca2+ mobilization and PKC translocation. Our findings therefore suggest that the sensitivity of immature B cells such as WEHI-231 to the inhibitory effects of anti-mIg antibodies may result in part from alterations of the phosphoinositide signal transduction pathway.

Animals

[Monoclonal immunoglobulins in kidney transplantation. Characterisation, evolution and risk factors].

Sera from 192 consecutive HIV negative renal transplant patients with more than 6 months follow-up were investigated for monoclonal or oligoclonal immunoglobulins (mIg) by immunoelectrophoresis or immunofixation. Gammapathy was present in 25 patients (13 percent). Eleven patients had only one monoclonal band, whereas 14 had two or more bands. Sixty percent were IgG K, 29 percent IgG lambda and 11 percent IgM lambda or K. Ninety percent of these mIg did not exceed 2 g/l; mIg appeared within 2-27 months following the transplantation (mean time-lag 8 +/- 6.4 months). The mIg were often transient: 20 disappeared within 1-33 months, most of them (14) being absent after 1 year of follow-up. Some risk factors for mIg could be identified: the patient's age (a risk factor only in women); the duration of dialysis; the occurrence of prior CMV infection; treatment with cyclosporine. The persistence of mIg was characterised by one or more of the followings: high titer of mIg, EBV infection or reactivation, inability to switch from IgM to IgG CMV antibodies. No significant association was found with the hepatitis B surface antigenemia, previous infection with hepatitis C or the number of rejection episodes. In 6 patients, the clinical course was characterised by severe infection or tumours. Although long-term follow ups are not yet available, patients in whom one or more mIg have been demonstrated should be carefully followed.

Adult

Selective activation of p42 mitogen-activated protein (MAP) kinase in murine B lymphoma cell lines by membrane immunoglobulin cross-linking. Evidence for protein kinase C-independent and -dependent mechanisms of activation.

Cross-linking of membrane immunoglobulin (mIg), the B lymphocyte antigen receptor, with anti-receptor antibodies stimulates tyrosine phosphorylation of a number of proteins, including one of 42 kDa. Proteins with a similar molecular mass are tyrosine-phosphorylated in response to receptor stimulation in other cell types and have been identified as serine/threonine kinases, termed mitogen-activated protein (MAP) kinases or extracellular signal-regulated kinases (ERKs). The MAP kinases constitute a family of related kinases, at least three of which have molecular masses of 40-45 kDa. In this paper we show that mIg cross-linking stimulated the myelin basic protein phosphotransferase activity characteristic of MAP kinase in both mature and immature murine B cell lines. This enzyme activity co-purified on three different columns with a 42 kDa protein that was tyrosine-phosphorylated (pp42) in response to mIg cross-linking and which reacted with a panel of anti-(MAP kinase) antibodies. Although immunoblotting with the anti-(MAP kinase) antibodies showed that these B cell lines expressed both 42 kDa and 44 kDa forms of MAP kinase, only the 42 kDa form was activated and tyrosine-phosphorylated to a significant extent. Activation of protein kinase C (PKC) with phorbol esters also resulted in selective tyrosine phosphorylation and activation of the 42 kDa MAP kinase. This suggested that mIg-induced MAP kinase activation could be due to stimulation of PKC by mIg. However, mIg-stimulated MAP kinase activation and pp42 tyrosine phosphorylation was only partially blocked by a PKC inhibitor, the staurosporine analogue Compound 3. In contrast, Compound 3 completely blocked the ability of phorbol esters to stimulate MAP kinase activity and induce tyrosine phosphorylation of pp42. Thus mIg may activate MAP kinase by both PKC-dependent and -independent mechanisms.

Amino Acid Sequence

Effects of iodine intake on thyroid secondary lysosomes after subtotal thyroidectomy.

This study tested the effects of different iodine intakes on thyroid ultrastructure and function in thyroid remnants after subtotal thyroidectomy (sub-tx). Removal of most of the thyroid gland causes an elevation of endogenous TSH, which chronically stimulates the residual tissue. Male Sprague-Dawley rats were divided into three groups; Low Iodine Group (LIG), Moderate Iodine Group (MIG), and High Iodine Group (HIG). There was no significant difference among total thyroid weights removed by sub-tx, but thyroid remnant weights and TSH levels were higher at death (6 weeks after sub-tx) in LIG than in MIG and HIG. Total specific activities of cathepsin D and of arylsulfatase A in the sedimentable and nonsedimentable subcellular fractions were at least 38% lower in LIG than in MIG and HIG. The ratio between relative follicular volume and colloid volume determined by morphometry was higher in LIG than in MIG and lower in HIG than in MIG. Ultrastructurally, the relative volume occupied by secondary lysosomes was higher in HIG than in MIG, whereas the number of secondary lysosomes was not higher in LIG than in controls. Autoradiographic studies with 125I revealed that a large part of the radioactivity was in thyroid cell secondary lysosomes in MIG and HIG when radioiodine was injected 3 weeks before death. It is concluded that after sub-tx, iodine 1) regulates the weight of thyroid remnants, perhaps only indirectly through TSH, 2) modulates the number of secondary lysosomes in thyroid cells, and 3) slows down the turnover of secondary lysosomes. An iodine-deficient regimen impedes the secondary lysosomes to increase. Because of these findings, we postulate that chronic TSH stimulation along with a possible toxic role of iodine after sub-tx could induce an accumulation of lysosomal bodies.

Animals

Cross-linkage of Ly-6A/E induces Ca2+ translocation in the absence of phosphatidylinositol turnover and mediates proliferation of normal murine B lymphocytes.

Ly-6A/E is a phosphatidylinositol (PI)-linked membrane protein whose expression is induced or upregulated on normal murine T and B cells by IFN-gamma. Cross-linkage of Ly-6A/E expressed on normal murine T cells stimulates Ca2+ translocation, and in the presence of a protein kinase C (PKC) activator, lymphokine secretion, and cellular proliferation. Utilizing an anti-Ly-6A/E mAb, we studied the effect of cross-linking Ly-6A/E on IFN-gamma-treated resting B cells, for Ca2+ translocation, PI turnover, and cellular proliferation. Since these events are known to be stimulated by cross-linkage of B cell membrane (m)Ig, we compared the changes mediated through these respective membrane proteins. We show that cross-linkage of B cell Ly-6A/E stimulates a large, rapid, and sustained increase in the concentration of intracellular free calcium ([Ca2+]i) comparable in magnitude, though somewhat delayed, relative to that observed after cross-linking of mIg. Cross-linkage of B cell Ly-6A/E does not, however, stimulate detectable PI turnover, in contrast to PI turnover induced by ligation of mIg. Both the Ly-6A/E- and mIg-mediated increase in [Ca2+]i occur through mobilization of internal Ca2+ stores as well as entry of Ca2+ into the cell from the extracellular compartment. Ly-6A/E-mediated Ca2+ translocation appears to be under the regulation of PKC in that short term pretreatment of B cells with the PKC activator, PMA, inhibits the Ly-6A/E- as well as the mIg-mediated increase in [Ca2+]i, whereas prolonged exposure to PMA, under conditions that lead to depletion of PKC, results in an augmentation in Ca2+ translocation after ligation of either Ly-6A/E or mIg. Co-capping studies indicate that Ly-6A/E and mIg cap independently in the B cell membrane, thus suggesting that the Ly-6A/E-induced effects on Ca2+ translocation are not mediated through simultaneous modulation of mIg. Anti-Ly6A/E, by itself, does not stimulate an increase in [3H]thymidine incorporation by IFN-gamma-treated resting B cells, but induces a striking increase in the presence of PMA. By contrast, anti-Ig by itself stimulates significant increases in [3H]thymidine incorporation that is inhibited by PMA. Thus, Ly-6A/E is a potent mediator of B cell activation that may use a signal transduction system in quiescent B cells that is distinct from that of the Ag receptor.

Animals

Anti-neutrophil cytoplasm antibodies in patients with monoclonal gammopathies.

Anti-neutrophil cytoplasm antibodies (ANCA) are specific markers for systemic vasculitis. In view of the autoreactivity to other autoantigens reported in patients with monoclonal immunoglobulins (MIg), the reactivity of 150 sera from 125 patients with MIg was tested for ANCA by radioimmunoassay (RIA) with inhibition stage and indirect immunofluorescence (IIF). Seven were positive for IgG ANCA, all with IgG MIg and 5 were positive for IgM ANCA, 4 with IgM MIg and 1 with IgG MIg. No IgA ANCA were found. The patterns seen on IIF were identical to those seen with sera from patients with systemic vasculitis and were cytoplasmic in 6 and peri-nuclear in 6. The restriction of the ANCA activity to the MIg was studied in six sera by light chain specific RIA, and anion exchange fractionation of the sera. The ANCA activity appeared to be polyclonal in at least three sera and could be found in the monoclonal fraction in only three patients. Associated autoimmune diseases were found in some of these ANCA positive patients including Sjögren's syndrome, MacDuffie hypocomplementemic vasculitis and rheumatoid polyarthritis but the classical vasculitic features normally associated with ANCA were not observed. We conclude that ANCA is a further autoreactivity present in some sera with MIg and discuss the relation between monoclonal gammopathies and autoimmunity.

Aged

Postreplication labeling of E-leaflet molecules: membrane immunoglobulins localized in sectioned, labeled replicas examined by TEM and HVEM.

Conventional freeze-fracture techniques were combined with immunogold labeling and with plastic embedding and sectioning to analyze the distribution of membrane immunoglobulins (mIgs) and their associated intramembrane particles (IMPs) in E-face replicas of murine B-lymphocyte plasma membranes. Immunogold labels were applied to cells after the process of freeze-fracture and replication. Conventional stereoscopic transmission electron microscopic examination of sectioned, labeled replicas (SLRs) revealed that the gold-labeled mIgs were bound to and localized on the outer leaflets of split and replicated membranes. The gold labels were attached to the external determinants of the mIg molecules, which were retained beneath and contiguous with the replicated E-faces. The mIgs were also localized on the external surface of unreplicated microvilli. In addition, thick sections examined by high-voltage transmission electron microscopy (HVEM) revealed large expanses of replica with well-resolved IMPs. mIgs colocalized with small-diameter (less than 60 A) IMPs in E-face replicas of B-lymphocytes whose mIgs were patched by anti-immunoglobulin. Thus, postreplication E-surface labeling of split and replicated membranes is a high-resolution technique that is suitable for the study of membrane protein distribution in E-face replicas and contiguous nonreplicated tissue.

Animals