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Biomedical subjects

M H De Baets

Publications and source records attributed to M H De Baets.

At least 19 recordsLinked to original sources

Selection of recombinant anti-HuD Fab fragments from a phage display antibody library of a lung cancer patient with paraneoplastic encephalomyelitis.

Antibodies against the HuD antigen expressed in small-cell lung cancer (SCLC) cross-react with proteins expressed in neurons of the central and peripheral nervous system and are associated with paraneoplastic encephalomyelitis and sensory neuropathy (PEM/SN). We isolated anti-HuD Fab fragments from an antibody phage display library that was constructed from mRNA of a metastatic lymph node from a patient with SCLC and Pem/SN. Fab GLN495 recognized HuD and other related proteins (HuC and Hel-N1, or Hu antigens) in immunoblots of these recombinant proteins and in immunohistochemical and Western blot analysis of SCLC and neurons. Fab GLN495 inhibited up to 75% of the anti-Hu antibodies of the patient from which it was derived, suggesting that recognizes a dominant epitope in the polyclonal anti-Hu antibody response. Fab GLN495 also competed with anti-Hu sera from most but not all patients with PEM/SN, indicating that the same epitope is recognized by a large subgroup of patients. Human monoclonal anti-HuD antibodies may be useful in diagnosis of HuD expressing tumors and in clarifying the autoimmune etiology of PEM/SN. This study, the first to demonstrate that tumor specific recombinant antibodies can be isolated from metastatic lymph node tissue, shows that this approach may be generally applicable to isolate human antibodies against tumor specific antigens.

Amino Acid Sequence

Age-related susceptibility to experimental autoimmune myasthenia gravis: immunological and electrophysiological aspects.

Susceptibility to experimental autoimmune myasthenia gravis (EAMG) was found to decrease with aging in both Lewis and Brown Norway (BN) rats. In this study, the difference in susceptibility between young and aged Lewis and BN rats was used to analyze factors determining the clinical severity of EAMG. The incidence and severity of muscular weakness did not correlate with acetylcholine receptor (AChR) loss nor with the ability of antibodies to interfere with AChR function. Aged rats showed significantly lower anti-rat AChR antibody titers than young rats and developed less severe or no clinical signs of disease. In individual young or aged rats, however, no significant correlation was found between the clinical signs of disease and anti-rat AChR titer. Neuromuscular transmission was found to change with aging as measured by single-fiber electromyography (SFEMG). In aged BN rats, increased jitter and blockings were found even before EAMG induction. Despite this disturbed neuromuscular transmission, these aged BN rats were clinically resistant against induction of EAMG. The results of this study indicate that the age-related susceptibility to EAMG is influenced by factors determined by the immune attack as well as mechanisms at the level of the neuromuscular junction.

Aging

Myasthenia gravis as a prototype autoimmune receptor disease.

Myasthenia gravis (MG) is an organ-specific autoimmune disease in which autoantibodies against nicotinic acetylcholine receptors (AChR) at the postsynaptic membrane cause loss of functional AChR and disturbed neuromuscular transmission. The immunopathogenic mechanisms responsible for loss of functional AChR include antigenic modulation by anti-AChR antibodies, complement-mediated focal lysis of the postsynaptic membrane, and direct interference with binding of acetylcholine to the AChR or with ion channel function. The loss of AChR and subsequent defective neuromuscular transmission is accompanied by increased expression of the different AChR subunit genes, suggesting a role for the target organ itself in determining susceptibility and severity of disease. Experimental autoimmune myasthenia gravis (EAMG) is an animal model for the disease MG, and is very suitable to study the immunopathogenic mechanisms leading to AChR loss and the response of the AChR to this attack. In this article the current concepts of the structure and function of the AChR and the immunopathological mechanisms in MG and EAMG are reviewed.

Animals

Autoimmune diseases against cell surface receptors: myasthenia gravis, a prototype anti-receptor disease.

Autoimmune diseases against cell surface receptors are the result of a mainly antibody-mediated attack on membrane receptors. This results in a hypofunction of the target organ; occasionally antibodies can exert an agonist effect, e.g. in Graves' disease. Myasthenia gravis (MG) is an autoimmune disease of the neuromuscular junction associated with a plethora of other diseases, mainly autoimmune diseases. Antibodies against the acetylcholine receptor (AChR) reduce the number of receptors necessary for efficient neuromuscular transmission. The effector mechanisms of MG can be studied elegantly in an experimental animal model in rodents immunized with AChR or injected with antibodies against AChR. The thymus is thought to play a central role in the induction of MG. Microscopic analysis of these thymuses revealed a follicular hyperplasia of the medulla or a lympho-epithelial thymoma. Thymectomy results in clinical improvement along with a decline in anti-AChR antibody titres. Additional therapeutic measures include anticholinesterase drugs, immunosuppression and plasmapheresis.

Animals

Age-related resistance to experimental autoimmune myasthenia gravis in rats.

The influence of age on the induction of experimental autoimmune myasthenia gravis (EAMG) was investigated. Immunization with acetylcholine receptor (AChR) or injection of varying amounts of anti-AChR mAb 35 into young adult (10-12 wk) BN rats induced severe signs of EAMG including weight loss and decrement of muscle action potential, whereas aged BN rats (120-130 wk) did not show any clinical signs of EAMG. Serum anti-AChr mAb titers were not significantly different in young and aged rats up to 24 h after administration of mAb. No significant AChR loss was demonstrated in aged rats, whereas similarly treated young rats showed extensive AChR loss. In contrast to young rats, no degradation of the postsynaptic membrane could be demonstrated by electron microscopy in aged rats. C component C3 and C5b-9 membrane attack complex could be demonstrated at the neuromuscular junction in both young and aged mAb-treated rats. However, infiltrating macrophages and necrotic muscle fibers were seen only in young rats. These results suggest that the postsynaptic membrane in aged rats is resistant to autoantibody attack. AChR degradation by antigenic modulation may be less efficient in aged rats as a result of altered AChR density and distribution or rigidity of the postsynaptic membrane. Age-related resistance in the EAMG model can provide more information about the factors that determine the severity of myasthenia gravis. Manipulation of AChR density or lipid composition of the postsynaptic membrane may be of therapeutic interest in myasthenia gravis.

Aging

Myasthenia gravis: an autoimmune response against the acetylcholine receptor.

Myasthenia gravis (MG) is an organ-specific autoimmune disease caused by an antibody-mediated assault on the muscle nicotinic acetylcholine receptor (AChR) at the neuromuscular junction. Binding of antibodies to the AChR leads to loss of functional AChRs and impairs the neuromuscular signal transmission, resulting in muscular weakness. Although a great deal of information on the immunopathological mechanisms involved in AChR destruction exists due to well-characterized animal models, it is not known which etiological factors determine the susceptibility for the disease. This review gives an overview of the literature on the AChR, MG and experimental models for this autoimmune disease.

Adult

VH gene family utilization of anti-acetylcholine receptor antibodies in experimental autoimmune myasthenia gravis.

The immunoglobulin heavy chain (VH) gene family usage in experimental autoimmune myasthenia gravis (EAMG) model was investigated by RNA slot blot hybridization using VH gene family specific probes. Anti-acetylcholine receptor (AChR) monoclonal antibodies (mAbs) isolated from susceptible C57BL/6 and resistant BALB/c mice were found to be encoded by VH genes from at least six different families. The Vgam3.8 family was overrepresented in alpha-bungarotoxin blocking mAbs. Expression of cross-reactive idiotypes by anti-AChR mAbs was irrespective of the VH gene family usage. Strain dependent differences in susceptibility for EAMG were not reflected in an aberrant VH gene family usage of anti-AChR mAbs.

Animals

Role of acetylcholine receptor antibody complexes in muscle in experimental autoimmune myasthenia gravis.

In experimental autoimmune myasthenia gravis anti-rat nicotinic acetylcholine receptor (AChR) antibody titers correlated significantly with the AChR-antibody complexes found in muscle. It was shown that at least a large part of the AChR-antibody complexes are formed in vitro, which can be prevented by washing of the muscle homogenate. Using a modified assay, no differences in AChR-antibody complexes could be detected between rats with and without symptoms of experimental autoimmune myasthenia gravis. Also no difference in AChR loss nor in inhibition of alpha-bungarotoxin binding to AChR was found between these groups of rats. However, a significant difference in the reduction of AChR function was found, using an assay measuring agonist-induced 22Na+ flux into the TE671 cell line.

Animals

Paratope- and framework-related cross-reactive idiotopes on anti-acetylcholine receptor antibodies.

Cross-reactive idiotopes are a possible target for therapeutical interventions in autoimmune diseases. To investigate their role in the pathogenesis of experimental autoimmune myasthenia gravis (EAMG) we analyzed the Id of rat anti-AChR mAb 6, 35, 61, 65 and a control myeloma protein IR27. Anti-Id 6, 35, 61, 65 bound in a direct binding assay with various affinity to all rat anti-AChR mAb that were tested. Anti-Id IR27 recognized none of the anti-AChR mAb. The specificity of these crossreactions was confirmed by inhibition studies with anti-AChR mAb and two control rat myeloma proteins (IR27 and IR241). In addition, the Id expression on mAb D6, a mouse anti-human AChR mAb was recognized by anti-Id 6, 35, and 65. Anti-Id, except anti-Id IR27, bound to affinity purified IgG from the sera of rats with EAMG, but not to preimmune Lewis IgG. These results suggest extensive sharing of idiotopes among anti-AChR mAb, which are also present in EAMG serum. Anti-AChR mAb against the main immunogenic region (6, 35, 65) from different rat strains, shared at least one paratope-related cross-reactive idiotopes. In the view of the fact that anti-main immunogenic region antibodies might form a predominant fraction of the polyclonal response against AChR, it is conceivable that an anti-Id recognizing these antibodies could have therapeutical applications as for example a selective immune absorbent or in immunotoxin therapy.

Animals

In vivo effects of neonatal administration of antiidiotype antibodies on experimental autoimmune myasthenia gravis.

The in vivo effects of neonatal administration of varying doses of anti-idiotype antibodies on serum anti-acetylcholine receptor (AChR) antibody titers, idiotype expression, and disease severity was studied in experimental autoimmune myasthenia gravis. Polyclonal affinity purified anti-idiotype antibodies and monoclonal anti-idiotype antibodies directed at anti-AChR monoclonal antibody 65 were administered in dosages varying from the nanogram to the microgram range. Mab 65 is directed against the main immunogenic region of mammalian AChR. In 1 out of 4 experiments administration of a nanogram dosage of anti-idiotype antibodies led to an enhanced anti-AChR antibody response after immunization with AChR. But no enhancing effect on idiotype expression could be demonstrated during this experiment. Adoptive transfer of spleen cells from rats pretreated with a nanogram dosage of anti-idiotype antibodies resulted in an significantly increased antibody response against rat AChR after immunization. From these experiments we conclude that in vivo administration of polyclonal or monoclonal anti-idiotypes does not reproduceably modify the serum antibody level against the acetylcholine receptor, nor influences the idiotype profile of the immune response. Secondly, the idiotype mediated manipulation of the immune response against large antigens, like the acetylcholine receptor, is clearly more complicated than that against small haptens. Adoptive transfer models, might be helpful in analysing the possibilities of anti-idiotype treatment in myasthenia gravis in more detail.

Animals

Single-fiber electromyography in experimental autoimmune myasthenia gravis.

The sensitivity of stimulated single-fiber electromyography in the detection of early abnormalities in neuromuscular transmission in experimental autoimmune myasthenia gravis (EAMG) was tested. Increased jitter and blocking were seen up to 3 weeks before clinical illness or decrement developed. Stimulation at 10 Hz appeared more sensitive in detection of abnormalities than stimulation at 3 or 5 Hz. Jitter values did not correlate with anti-Torpedo acetylcholine receptor (AChR), nor with anti-rat AChR antibody titer. No correlation was found between jitter and AChR loss or AChR-antibody complexes in muscle. It is concluded that, in addition to AChR loss and the presence of AChR-antibody complexes, other factors must determine the neuromuscular dysfunction in EAMG and possibly myasthenia gravis.

Animals

IgA isotyping of antigliadin antibodies. A possible clue for a less invasive diagnosis of coeliac disease.

An enzyme-linked immunosorbent assay was used to measure serum antigliadin antibodies (AGA) of IgG and IgA classes. The assay was modified to measure IgA1 and IgA2 subclasses with monoclonal anti-IgA subclass antibodies. Serum IgG- and IgA-AGA levels were elevated in patients with coeliac disease (CD) but an overlap was seen with control sera. IgA-AGA isotyping using monoclonal anti-human IgA1 and IgA2 antibodies increased the sensitivity and specificity of the assay to almost 100%. All patients with active untreated CD and none of the control groups had elevated IgA1-AGA and IgA2-AGA. In order to measure the relative distribution of IgA1-AGA versus IgA2-AGA an IgA1/IgA2 ratio was calculated. In patients with active untreated CD a ratio of 2.8 was found, declining to 2.2 during treatment. A gluten challenge increased the ratio to 3.4. These findings suggest that IgA1-AGA subclass measurements are a useful screening test before small bowel biopsies are performed. This method can also be used to assess the results of a gluten free diet.

Antibodies

Effects of the rate of acetylcholine receptor synthesis on the severity of experimental autoimmune myasthenia gravis.

The effect of target organ manipulation by means of denervation and treatment with anabolic steroids on the severity of disease in EAMG was assessed in inbred rats. Unilateral limb denervation, a procedure known to increase the AChR content of muscle, 'protected' the denervated leg against antibody-mediated AChr loss in acute EAMG induced by passive transfer of mAb 35 directed against the main immunogenic region. Also in chronic EAMG, brought about by immunizing rats with AChR in complete Freund's adjuvant, the AChR loss of the denervated leg was about one fourth (13.5 vs. 53%) of the control leg. In both acute and chronic EAMG the amount of AChR complexed with antibody was lower in the denervated leg. This lower AChR occupancy with antibody in the denervated leg occurred also in conditions of marked antibody excess and was therefore due to enhanced AChR synthesis. Next the effect of treatment with a weakly virilizing anabolic steroid nandrolone in chronic and acute EAMG was examined in order to examine whether a hypothesized enhanced synthesis of AChR would protect animals from disease. In the absence of an immunosuppressive effect, in terms of concentration of antibodies to AChR, nandrolone treatment protected the rats from severe disease in the chronic EAMG model as shown by the fact that of the 9 rats 6 showed mild (1+) disease and 3 no disease at all; conversely 6 out of 9 control rats showed severe (3+) disease. Rats treated with nandrolone showed a 48 +/- 1.7% loss of AChR compared to a loss of 58 +/- 3.6% in the control rats, suggesting enhanced AChR synthesis. When nandrolone-pretreated rats were given acute EAMG by passive transfer of mAb 35 a paradoxical effect was seen. In contrast to the controls all of the rats pretreated with nandrolone showed severe signs of EAMG; this was associated with a higher loss of AChR and increased consumption of complement C4 as suggested by decreased concentrations of C4 in the serum. Results show increased AChR synthesis to protect against chronic EAMG both in terms of clinical disease (nandrolone) as well as AChR loss (nandrolone, denervation). In addition it was shown that nandrolone increases serum C4 consumption which in the complement-dependent acute EAMG model causes enhancement of the severity of clinical disease and increased AChR loss.

Acute Disease