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C L Burek

Publications and source records attributed to C L Burek.

At least 37 records · Page 2Linked to original sources

Amino acid sequence of a tryptic peptide of human thyroglobulin reactive with sera of patients with thyroid diseases.

Autoantibodies to human thyroglobulin (hTg) are found in the sera of many patients with thyroid diseases. To localize epitopes recognized by these autoantibodies, hTg was incubated with tryspin for 4 hours at 37 degrees C under non-reducing conditions. Releasing peptides from hTg in their natural conformation. These peptides were then analyzed by western immunoblot using either autoantibodies from patients with autoimmune thyroiditis or murine monoclonal antibodies (mAb) produced against hTg. The autoantibodies reacted primarily with two low molecular weight peptides with apparent molecular weights (MWap) of 15 and 20 kDa. The pattern of tryptic peptides recognized by these autoantibodies resembled that of one of the mAbs (137C1), as shown by immunoblots in either one or two dimensional SDS-PAGE. To characterize these peptides further, they were separated by a high performance liquid chromatography (HPLC). The column separated the 4-hour tryptic digest of hTg into multiple peptide peaks. Further analysis by SDS-PAGE showed that one of these peaks contained the 15 kDa peptide. The 15 amino acid sequence at the amino-terminus of this peptide was determined. This amino acid sequence (KVPTFATPWPDFVPR) corresponds to a unique sequence near the carboxyl-terminal end of hTg, starting with amino acid 2657. The size of the peptide indicates that it extends to the carboxyl-terminal end of hTg. This fragment contains one of the antigenic sites of hTg that binds autoantibodies from patients with autoimmune thyroid disease.

Amino Acid Sequence↗

Effects of early and late treatment with anti-CD4 monoclonal antibody on autoimmune disease in MRL/MP-lpr/lpr mice.

MRL/Mp-lpr/lpr (MRL/lpr) mice spontaneously develop a systemic autoimmune disease, characterized by vasculitis, lymphadenopathy, glomerulonephritis, and autoantibody formation, with target organ inflammatory lesions composed largely of CD4+ (helper) T cells. Previous reports have demonstrated that anti-CD4 monoclonal antibody (mAb) treatment of MRL/lpr mice from 1 to 5 months of age resulted in a dramatic reduction in both the frequency and the severity of autoimmune disease. In order to investigate the effects of early, short-course and late, short-course anti-CD4 mAb therapy on the autoimmune disease in MRL/lpr mice, groups of 12 to 15 animals were treated with weekly intraperitoneal injections according to one of four regimens: (i) anti-CD4 mAb from age 1 to 5 months (continuous treatment); (ii) anti-CD4 mAb from age 1 to 3 months (early treatment); (iii) anti-CD4 mAb from age 3 to 5 months (late treatment); and (iv) either normal saline or rat immunoglobulin (control treatment). Continuous treatment resulted in a dramatic reduction of both frequency and severity of the autoimmune disease, as demonstrated histologically and serologically. Early treatment also resulted in a significant reduction in autoimmune disease, while late treatment had little effect. Glomerulonephritis was detected in none of the animals in the continuously treated group (P < 0.05), 38% of those in the early-treated group (P = < 0.05), 92% of the late-treated group, and 100% of controls. The titer of antinuclear antibodies, of anti-dsDNA antibodies, and total immunoglobulin levels were all significantly reduced in the continuous-treatment and early-treatment groups, but not in the late-treatment group. Murine antibodies to rat anti-CD4 mAb were present in the late-treatment group. These results indicate that early short-course anti-CD4 mAb treatment of MRL/lpr mice is effective in ameliorating the autoimmune disease in this model, while late-treatment is ineffective, probably due to the induction of antibody directed against anti-CD4 mAb itself.

Animals↗

Immunoreactivity of multiple molecular forms of human thyroglobulin.

Human thyroglobulin (Tg) was purified from thyroids of normal individuals and of patients with Graves' disease using gel filtration (Sephacryl S-400) and ion-exchange (DEAE) column chromatography. We isolated five protein peaks of Tg from the DEAE column, using a step gradient, characterized them for protein and iodine content, and assessed their immunological properties by reactivity to polyclonal and monoclonal antibodies (mAbs). Normal and Graves' Tgs differed in the relative protein content of these five protein peaks from the DEAE column. In the case of normal Tg, the majority of Tg was eluted in peak 2 but in the Graves' Tg, most of the protein was eluted in peak 1 of this column. The immunoreactivity of these five protein peaks of Tg was studied using 11 mouse mAbs prepared against human Tg, sera from patients with autoimmune thyroiditis and polyclonal antibody from a rabbit immunized with human Tg. All of five protein peaks of Tg reacted equally with rabbit antibody. The sera of five thyroiditis patients showed greater binding to peak 1 of Graves' Tg than peak 1 of normal Tg. Similarly, most mAbs showed greater binding to peak 1 of Graves' Tg than the peak 1 of normal Tg. Of particular interest was one mAb (42C3) which reacted only with Tgs containing iodine. The immunoreactivity of this mAb paralleled the iodine content of Tg. This mAb might be useful for evaluating the role of iodine in the antigenicity of human Tg.

Antibodies, Monoclonal↗

Tryptic peptides of human thyroglobulin: I. Immunoreactivity with murine monoclonal antibodies.

Human thyroglobulin (Tg) was treated with trypsin at different concentrations of trypsin/Tg for various incubation times at 37 degrees C using non-reducing conditions. A ratio of trypsin to Tg of 1:100 (w/w) was optimal to release small peptides that were reactive to murine MoAbs to human Tg. Most peptides were released after only 1 h incubation with trypsin, but these peptides were further degraded at longer incubation times. However, a few small peptides, the largest of which with an apparent molecular weight (MWap) of 40 kD, resisted tryptic digestion up to at least 12 h of incubation. These resistant peptides were further degraded by trypsin at 18-24 h of incubation. Tryptic peptides of Tg, released at 1 h and 4 h of incubation, were analysed for their immunoreactivity to 16 well characterized anti-Tg MoAbs by Western immunoblot. Patterns of peptide recognition of these MoAbs were generally unique. Eight MoAbs reacted with peptides of MWap of 10-25 kD and above. Four other MoAbs reacted with peptides of MWap of 25-43 kD and above, and the remaining four reacted with peptides of MWap > 43 kD. Nine of these MoAbs failed to recognize peptides after reduction, suggesting that the MoAbs bind conformation-dependent epitopes. The above information will promote the development of models relating the structure of Tg to the autoimmune process, and may provide an understanding of those regions of Tg responsible for the induction of autoimmune thyroiditis.

Animals↗

Tryptic peptides of human thyroglobulin: II. Immunoreactivity with sera from patients with thyroid diseases.

Tryptic peptides of human thyroglobulin (Tg) were analysed by Western immunoblot for their reactivity to circulating autoantibodies from patients with Hashimoto's thyroiditis (HT), Graves' disease (GD) and thyroid carcinoma, and from normal human controls. Low molecular weight peptides were released after 4 h incubation of Tg with trypsin. The sera of thyroid disease patients reacted with several peptides, but predominantly bound three peptides with apparent molecular weights (MWap) of 25 kD, 20 kD, and 15 kD; the sera of normal individuals did not bind these fragments of Tg. The pattern of tryptic peptides recognized by the majority of sera from GD patients differed from that recognized by sera from most patients with HT. Autoantibodies from both groups of patients recognized a 15-kD peptide with a high frequency, but the sera from 26/43 (60%) GD patients also recognized a peptide with MWap of 25 kD, whereas the sera from 22/35 (63%) of HT patients recognized a 20-kD peptide. A few sera from patients with thyroid carcinoma reacted with peptides with MWap of 15 and 20-kD, and none bound the 25-kD peptide. The immunoreactivity of autoantibodies in HT sera to the 20-kD peptide paralleled the competitive inhibition of the MoAb 137C1 by these sera. In addition, MoAb 137C1 and Hashimoto's sera showed the same Western immunoblot-binding pattern to Tg tryptic peptides, suggesting that a Hashimoto-associated epitope and the 137C1-binding site are found on the same peptide. These findings suggest that distinct peptides are recognized by Tg autoantibodies from patients with different thyroid diseases.

Antibodies, Monoclonal↗

IgG subclass distribution of thyroglobulin antibodies in patients with thyroid disease.

The IgG subclass distribution of thyroglobulin antibodies (TgAb) has been studied in Hashimoto and Graves' patients by several investigators with conflicting results, in part explainable by methodological problems. We have recently developed a quantitative ELISA to measure in absolute terms the serum concentration of TgAb subclasses. The aim of the present study was to apply this method in a large series of patients with autoimmune as well as, for the first time, non-autoimmune thyroid diseases. We examined 28 patients with Hashimoto's thyroiditis, 30 with Graves' disease, 21 with thyroid carcinoma and 18 with non-toxic goitre, all selected for the presence of TgAbs. The results indicated that TgAbs in thyroid diseases were not restricted to any particular isotype, but comprised all four IgG subclasses. IgG1 was represented similarly in the four groups. The same was true for IgG3, even though its contribution to the total antibody content was very small. IgG4 was the dominant subclass in patients with Graves' disease, thyroid carcinoma and non-toxic goitre, probably reflecting a prolonged antigenic challenge. In Hashimoto's thyroiditis IgG2 was dominant, possibly because T helper lymphocytes infiltrating the thyroid are typically Th1 type.

Adult↗

Epitopes on thyroglobulin: a study of patients with thyroid disease.

Thyroglobulin antibodies (TgAbs) are typically found in autoimmune thyroid diseases and, more rarely, in nonautoimmune thyroid diseases and healthy subjects. To determine whether TgAbs associated with different conditions recognize different epitopes on the thyroglobulin molecule, we studied 28 patients with Hashimoto's thyroiditis, 30 with Graves' disease, 21 with thyroid carcinoma, 18 with nontoxic goiter, and 25 healthy subjects. All patients were selected for the presence of TgAbs; 4/25 healthy subjects also had TgAbs. The sera were assayed for the their ability to inhibit the binding of monoclonal antibodies to thyroglobulin in an ELISA assay. We found that: 1) TgAbs in Hashimoto's patients preferentially recognized three clusters of epitopes (II, III and typically VI), with no difference between the goitrous and the atrophic variants; 2) TgAbs in Graves' patients were directed toward cluster II, with no difference between the presence or the absence of ophthalmopathy; 3) TgAbs in thyroid carcinoma patients recognized the same clusters as Hashimoto's patients; 4) TgAbs in nontoxic goiter patients and in the four healthy subjects showed no restriction in epitope recognition. We suggest that in individuals with no overt clinical or biochemical thyroid abnormalities but with TgAbs, the finding that these TgAbs recognize particular immunodominant clusters may be utilized to predict full-blown thyroid disorders. Longitudinal studies are needed to evaluate the possible clinical application of this methodology.

Adult↗

Quantitative measurement of human thyroglobulin-specific antibodies by use of a sensitive enzyme-linked immunoassay.

A quantitative enzyme-linked immunoassay that measures in absolute terms the subclass concentration of human thyroglobulin (huTg)-specific IgG autoantibody was developed. Unique to this study was the use of an affinity-purified anti-huTg standard with a known concentration of the four IgG subclasses. The sensitivity of the ELISA assay was 1-5 ng/ml depending on the IgG subclass being measured. We examined 22 sera of patients with autoimmune thyroid disease. The total huTg-specific antibody concentrations in serum ranged from 0 to nearly 3000 micrograms/ml of IgG. The IgG subclass distribution in individuals with low huTg-specific IgG (< 10 micrograms/ml) was primarily IgG1 and IgG3 Ab. Patients with intermediate levels of huTg IgG (10-600 micrograms/ml) expressed all four subclasses; however, no particular subclass was dominant. Individuals with > 1000 micrograms/ml also showed huTg-Ab in all four subclasses, however, IgG1 and IgG2 were dominant. All four IgG subclasses were used in the response to huTg, although the pattern of usage varied between individuals. There was no dominant subclass usage seen in this patient population.

Adult↗

The detection of antithyroglobulin activity in human serum monoclonal immunoglobulins (monoclonal gammopathies).

The sera of 159 patients with monoclonal gammopathies were examined for the presence of anti-thyroglobulin (Tg) activity. An enzyme-linked immunosorbent assay was employed. Thirty-one (19.5%) sera were found to bind Tg. The activity against Tg was further confirmed by using purified immunoglobulins and employing competition assays. The anti-Tg antibodies were found in the sera of patients with IgG, IgM and IgA gammopathies. Anti-Tg antibodies were more frequent among patients with IgG gammopathy. Autoantibodies to Tg are found in patients with Hashimoto's thyroiditis, Graves' disease and occasionally in patients with thyroid carcinoma. Natural autoantibodies directed against human Tg have been detected, as well, in healthy subjects. None of the patients in the present study whose serum was found to contain high titers of anti-Tg human monoclonal antibodies had any clinical or biochemical evidence of thyroid disease. Our results of a high incidence of anti-Tg activity in the sera of patients with monoclonal gammopathies support previous reports of autoantibody properties characteristic of these immunoglobulins.

Autoantibodies↗

Anti-CD4 monoclonal antibody therapy suppresses autoimmune disease in MRL/Mp-lpr/lpr mice.

MRL/Mp-lpr/lpr (MRL/lpr) mice spontaneously develop systemic autoimmune disease, characterized by vasculitis, lymphadenopathy, glomerulonephritis, and autoantibody formation. The target organ inflammatory lesions are composed largely of CD4+ "helper" T cells, while the massively enlarged lymph nodes are composed primarily of CD3+ CD4- CD8- TCR alpha/beta + "double-negative" T cells. In this study we investigated the effect of treatment of MRL/lpr mice with anti-CD4 monoclonal antibody (mAb); control groups consisted of animals treated with normal saline or rat immunoglobulin (Ig). Anti-CD4 mAb treatment, which was started at 4 weeks and continued through 20 weeks of age, resulted in a dramatic reduction of both the frequency and severity of the autoimmune disease, as demonstrated histologically and serologically. Anti-CD4 mAb therapy markedly reduced the frequency of glomerulonephritis and eliminated vasculitis of the major renal arterial branches. Glomerulonephritis was detected in 9 of 9 saline-treated, 9 of 9 rat Ig-treated, but in only 1 of 9 anti-CD4 mAb-treated mice; vasculitis was detected in 6 of 9 saline-treated, 7 of 9 rat Ig-treated, but in none of 9 anti-CD4 mAb-treated mice. The frequency of antinuclear antibodies, titer of anti-dsDNA antibodies, and total Ig levels were all significantly reduced by anti-CD4 mAb therapy. These data support the hypothesis that CD4+ T cells play a central role in the disease process in this autoimmune strain.

Animals↗

The interaction of basic science and population-based research: autoimmune thyroiditis as a case history.

This brief commentary illustrates how laboratory research compliments populational research. The finding that susceptibility to autoimmune thyroid disease in animals is due to the additive effects of a number of unrelated genes led to a field study of a genetically predisposed population. In humans, as in animals, the major histocompatibility complex plays a preeminent role. Unlike many other autoimmune diseases, however, different HLA haplotypes predominate in different families, just as different H-2 haplotypes determine susceptibility in different strains of mice. Like the predisposed chicken, humans have a number of other genes that act independently to influence autoimmune susceptibility. Insight into the nature and action of the additional genes depends upon renewed studies of the animal models. Thus, we see a symbiotic relation between basic science as practiced in the laboratory and population-based research in the field.

Animals↗

Preliminary studies on the indium slide immunoassay for estimation of human chorionic gonadotropin and antihuman chorionic gonadotropin antibody.

Human chorionic gonadotropin (hCG) is synthesized and secreted as early as 170 hr after fertilization and has been used as an index for pregnancy. Neutralization of hCG with a beta-subunit hCG vaccine(s) has been proposed as a contraceptive technique. To monitor the duration of effectiveness of the vaccine, it will be necessary to monitor the anti-hCG antibodies, especially those responsible for inhibiting the hCG bioactivity. We report a simple, rapid technique using an indium slide immunoassay for the qualitative estimation of hCG and to monitor a bioeffective anti-hCG antibody. The sensitivity of the indium slide assay to measure hCG ranged from 1 microgram/ml to 1 ng/ml, depending on the format of the assay. The indium slide assay also detected anti-hCG antibodies generated against a specific determinant on hCG recognized by a neutralizing monoclonal antibody (P3W80) in women immunized with a contraceptive vaccine.

Antibodies↗

Induction of major histocompatibility complex antigens within the myocardium of patients with active myocarditis: a nonhistologic marker of myocarditis.

The histologic diagnosis of active myocarditis is frequently difficult to establish. A nonhistologic marker of immune activation would be clinically useful in identifying cases of immune-mediated myocarditis. A viral etiology with subsequent autoimmunity to cardiac antigens has been implicated in human myocarditis. Because autoimmunity and viral disease are commonly associated with increased expression of major histocompatibility complex (MHC) antigens on targeted tissue, we examined endomyocardial biopsy samples from patients with active myocarditis for abnormal levels of MHC antigen expression. Thirteen patients with active myocarditis and eight control patients with other well-defined cardiac diagnoses (coronary disease, amyloidosis or neoplasm) were studied. A sensitive radioimmunoassay was developed that utilized monoclonal antibodies to human MHC class I and class II antigens in order to quantitate the expression of both of these antigens within each biopsy. Abnormal MHC class I and class II antigen expression was present in 11 of 13 myocarditis specimens and 1 of 8 control samples (specificity 88%, sensitivity 84.6%). Active myocarditis samples had approximately a 10-fold increase in MHC class I and class II expression. Immunoperoxidase staining localized abnormal MHC expression primarily within microvascular endothelium and along myocyte surfaces (11 of 13). This study is the first to demonstrate a marked increase in major histocompatibility complex antigen expression within the myocardium of patients with active myocarditis. The identification of abnormal histocompatibility antigen expression within an endomyocardial biopsy may prove a useful adjunct to the histologic diagnosis of myocarditis.

Adult↗

Autoantigenic determinants on human thyroglobulin. I. Determinant specificities of murine monoclonal antibodies.

To map the antigenic determinants, a panel of 20 mouse monoclonal antibodies (mAbs) to native human thyroglobulin (Tg) was generated. Four criteria were established for distinguishing the determinants recognized by the various mAbs: (i) reactivity to Tgs from eight different species; (ii) reactivity to oxidized and reduced human Tg; (iii) the ability of thyroxine to inhibit binding of mAbs; and (iv) the pattern of antigenic determinant reactivity as determined in reciprocal competitive inhibition binding assays. Of 20 mAbs examined, 12 bound only to human Tg, 3 bound to all eight species tested, and 5 bound to human Tg and to Tg from at least one of the other seven species. Eight mAbs bound oxidized/reduced and native human Tg equally well, 2 bound to the oxidized/reduced protein better than to the native, 7 showed virtually no reactivity to oxidized/reduced human Tg, and 3 others reacted to the oxidized/reduced protein significantly less than they bound to the native. The binding of 5 mAbs to native human Tg was inhibited by thyroxine. The pattern of shared determinant specificities revealed that at least 12 determinant clusters were defined by the panel of mAbs. Among the 12 determinant clusters were 3 designated as immunodominant; 8 of 20 mAbs defined these immunodominant clusters. The four criteria taken together indicate that at least 19 different epitopes on human Tg could be distinguished by this panel of mAbs. These mAbs are useful for the study of determinant specificities of Tg autoantibodies in humans.

Animals↗

Autoantigenic determinants on human thyroglobulin. II. Determinants recognized by autoantibodies from patients with chronic autoimmune thyroiditis compared to autoantibodies from healthy subjects.

Using a panel of 20 well-characterized mouse monoclonal antibodies (mAbs) to native human thyroglobulin (Tg), the fine specificities of autoantibody responses in human autoimmune thyroiditis patients were compared to naturally occurring autoantibodies from healthy individuals. The antigenic determinants recognized by the human autoantibodies were assessed using competitive binding assays in which murine mAbs were inhibited by human autoantibodies. All determinants of human Tg recognized by the mouse were also responded to by the human subjects. Autoantibodies from adult and juvenile patients with chronic lymphocytic thyroiditis recognized principally 10 of 19 determinants defined by the panel of murine mAbs. The mAbs which define these 10 determinants do not react with Tg from seven other mammalian species; therefore, autoantibody responses in individuals with thyroiditis are directed primarily to species specific determinants of human Tg. These same determinants on human Tg were the principal ones recognized by the mouse following immunization. Particular patterns of fine specificities were not inherited from parents by probands or their siblings, even if identical twins. Naturally occurring Tg autoantibodies from healthy subjects recognized mainly thyroxine-containing cross-reactive determinants.

Adolescent↗

Circulating heart-reactive antibodies in patients with myocarditis or cardiomyopathy.

Heart-reactive antibodies are commonly observed in patients with myocarditis or cardiomyopathy. Such antibodies may be important in the pathogenesis of these disorders, yet the specific antigens recognized have not been studied systematically. This report characterizes circulating heart autoantibodies from patients with myocarditis (n = 17) or idiopathic cardiomyopathy (n = 71) and from healthy volunteers (n = 15). Indirect immunofluorescence demonstrated that high titer (greater than or equal to 1:20) immunoglobulin G (IgG) antibody activity occurred in 59% of the myocarditis samples, 20% of the cardiomyopathy samples and none of the normal samples. All samples were tested by Western immunoblotting for IgG activity against a normal human heart extract. The number of antigens recognized by each sample was enumerated and the molecular weight of each antigen estimated; the prevalence of reactivity against antigens in selected molecular weight classes was determined. There was no difference in the mean number of heart antigens recognized by serum from each group. For most weight classes, prevalence either did not differ significantly among the various groups or subgroups or was greatest among samples from healthy volunteers. Prevalence of reactivity with 190 to 199 kilodalton (kd) antigens was greatest (p less than 0.05) among low titer serum samples from patients with myocarditis. High titer cardiomyopathy serum differed from normal serum by an increased (p less than 0.05) prevalence of antibodies to 40 to 49 and 100 to 109 kd antigens. These results suggest that western immunostaining may ultimately contribute substantively to identifying patients with myocarditis or cardiomyopathy.

Adolescent↗