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Biomedical subjects

G C Sharp

Publications and source records attributed to G C Sharp.

At least 73 records · Page 4Linked to original sources

Prevention and reversal of experimental autoimmune thyroiditis (EAT) in mice by administration of anti-L3T4 monoclonal antibody at different stages of disease development.

Experimental autoimmune thyroiditis (EAT) can be induced in CBA/J mice following the transfer of spleen cells from mouse thyroglobulin (MTg)-sensitized donors that have been activated in vitro with MTg. Since L3T4+ T cells are required to transfer EAT in this model, the present study was undertaken to assess the effectiveness of the anti-L3T4 monoclonal antibody (mAb) GK1.5 in preventing or arresting the development of EAT. Spleen cells from mice given mAb GK1.5 prior to sensitization with MTg and adjuvant could not transfer EAT to normal recipients and cells from these mice did not proliferate in vitro to MTg. Donor mice given GK1.5 before immunization did not develop anti-MTg autoantibody and recipients of cells from such mice also produced little anti-MTg. GK1.5 could also prevent the proliferation and activation of sensitized effector cell precursors when added to in vitro cultures. When a single injection of mAb GK1.5 was given to recipients of in vitro-activated spleen cells, EAT was reduced whether the mAb was given prior to cell transfer or as late as 19 days after cell transfer. Whereas the incidence and severity of EAT was consistently reduced by injecting recipient mice with GK1.5, the same mice generally had no reduction in anti-MTg autoantibody. Since EAT is consistently induced in control recipients by 14-19 days after cell transfer, the ability of mAb GK1.5 to inhibit EAT when injected 14 or 19 days after cell transfer indicates that a single injection of the mAb GK1.5 can cause reversal of the histopathologic lesions of EAT in mice. These studies further establish the important role of L3T4+ T cells in the pathogenesis of EAT in mice and also suggest that therapy with an appropriate mAb may be an effective treatment for certain autoimmune diseases even when the therapy is initiated late in the course of the disease.

Animals↗

Value and limitations of calcium channel blockade in the treatment of pulmonary hypertension associated with CREST--case reports.

Reversible vasospasm has been hypothesized to underlie the development of pulmonary hypertension in patients with CREST. Drugs that prevent arterial spasm have been used to treat pulmonary hypertension with variable results. The disparate pulmonary hemodynamic responses to calcium channel blockade reported herein suggest that CREST patients with mild pulmonary hypertension may have a component of reversible vasospasm responsive to vasodilator therapy, whereas patients with moderate to severe pulmonary hypertension may have fixed vessel lesions precluding a satisfactory response to calcium channel blockade.

Adult↗

Multiple antigen recognition by individual human monoclonal antibodies of rheumatic disease patient origin.

We tested by Western blot several thousand antibody-secreting human cell lines immortalized by hybridoma fusion or Epstein-Barr virus transformation of peripheral blood lymphocytes from patients with systemic lupus erythematosus or mixed connective tissue disease. The blots utilized total human Jurkat cell extract as the antigen. More than 20% of these established lines produced antibodies which recognized multiple bands on the blots, frequently 50 bands or more. Experiments were performed to rule out the possibility of the bands being the result of mixed cell populations or nonspecific antibody-antigen binding. Cloning of these cell lines failed to alter the Western blot patterns produced, indicating that the populations were monoclonal. Antibody eluted from a number of the different single blot bands showed the same ability to reproduce the multiple band pattern, thus revealing the presence of only one antibody. Western blots performed in the presence of specific and nonspecific inhibitors demonstrated the ability of the antibody to specifically recognize and bind to certain antigens. Binding did not result from indiscriminate sticking of IgM molecules to the nitrocellulose paper. The patterns of multiple antigen recognition were not due to antigen degradation. Additionally, enzyme linked immunosorbant assays revealed binding of the monoclonal antibodies to specific antigens, and the antibodies failed to recognize commonly crossreactive antigens such as DNA, histone, poly-L-lysine, glycophorin, and serum glycoproteins. The patterns of multiple antigen binding to a large number of polypeptides are therefore due to single antibodies, and the binding is specific.

Antibodies, Monoclonal↗

Augmentation of transfer of experimental autoimmune thyroiditis (EAT) in mice by irradiation of recipients.

Experimental autoimmune thyroiditis (EAT) can be adoptively transferred to normal syngeneic recipients using spleen cells from susceptible strains of mice primed in vivo with mouse thyroglobulin (MTg) and lipopolysaccharide (LPS) following in vitro activation of spleen cells by culture with MTg. Irradiation of recipient animals markedly augments the severity of thyroiditis induced in this system. Irradiation of recipients does not alter the time course of the development of thyroiditis, nor does it alter the requirement for both in vivo priming and in vitro activation of spleen cells for the development of EAT. Spleen cells from EAT-resistant strains of mice (e.g., Balb/c) do not induce EAT in irradiated recipients. Irradiated recipients develop significant levels of anti-MTg antibodies while unirradiated recipients have little detectable antibody response. The augmenting effect of irradiation can be substantially reversed by transferring naive spleen cells to recipients prior to the transfer of MTg/LPS-primed in vitro-activated spleen cells. In addition athymic CBA/Tufts nude mice develop more severe EAT than CBA/Tufts nude/+ littermates following transfer of activated CBA/J spleen cells. These data suggest that natural suppressor cells may regulate the development of EAT at the effector cell level.

Animals↗

The autoimmune antigen Me is distinct and related to undifferentiated connective tissue disease.

Using prototype Me serum, a new autoantibody-antigen system has been identified by Ouchterlony immunodiffusion and indirect immunofluorescence. Although immunologically distinct, the Me antigen has physiochemical and biochemical properties similar to those of the Sm antigen. Immunoblot assays indicate that Me sera commonly recognize 4 peptides of molecular weights approximating 100K, 65K, 21K, and 16K. The last of these may be identical to the D peptide recognized by Sm antibodies. The Me antigen may be associated with the RNP-Sm macromolecular complex. Me-positive patients have few clinical symptoms, and the most common diagnosis is undifferentiated connective tissue disease.

Antigen-Antibody Complex↗

Effects of the adjuvants SGP and Quil A on the induction of experimental autoimmune thyroiditis in mice.

In the present study, two adjuvants, SGP and Quil A, were assessed for their ability to induce experimental autoimmune thyroiditis (EAT) in mice. SGP (a synthetic copolymer of starch, acrylamide, and sodium acrylate) and Quil A (a plant saponin) were compared with lipopolysaccharide (LPS) and complete Freund's adjuvant (CFA) given together with mouse thyroglobulin (MTg) for their ability to induce EAT in CBA/J mice. Immunization with MTg and LPS, MTg and CFA, or MTg with SGP was effective in inducing anti-MTg antibodies and histologic EAT, while MTg with Quil A was ineffective in inducing either anti-MTg antibodies or EAT. MTg with LPS was able to prime mice for the development of an in vitro spleen cell proliferative response to MTg while MTg with SGP or with Quil A was unable to prime spleen cells to proliferate detectably in response to MTg. MTg with LPS given in vivo primes CBA/J spleen cells for further activation by in vitro culture with MTg to transfer EAT to naive CBA/J recipients. MTg with SGP was also effective in priming CBA/J spleen cells for in vitro activation and transfer of EAT while MTg with Quil A was ineffective. The effective adjuvant activity of SGP and its lack of toxicity relative to LPS should make it a useful agent for further studies in murine models of EAT.

Acrylic Resins↗

The cellular basis for the Ia restriction in murine experimental autoimmune thyroiditis.

Susceptibility to experimental autoimmune thyroiditis (EAT) in the mouse is linked to the I-A subregion of the major histocompatibility complex. EAT can be induced in susceptible strains of mice by immunization with mouse thyroglobulin (MTg) and adjuvant. We have described a cell transfer system wherein spleen cells from EAT-susceptible CBA/J mice primed in vivo with MTg and lipopolysaccharide (LPS) can be activated in vitro with MTg to transfer EAT to naive syngeneic recipients. This cell transfer system was used to elucidate the cellular basis for the I-A restriction in EAT. While the cell active in transferring EAT was Thy 1+ I-A-, depletion of I-A+ cells from the in vitro culture prevented the activation of EAT effector T cells. MTg-pulsed mitomycin C-treated naive syngeneic spleen cells as antigen-presenting cells (APCs) could replace the I-A+ cells in vitro. Allogeneic (Balb/c) APCs were ineffective. Using APCs from several recombinant inbred strains of mice, it was shown that C3H/HEN and B10.A(4R) APCs were effective in activating MTg/LPS-primed CBA/J spleen cells to transfer EAT while B10.A(5R) APCs were ineffective. This maps the H-2 restriction to the K or I-A subregions. Addition of polyclonal anti-Iak or monoclonal anti-I-Ak or anti-L3T4 during in vitro activation inhibited both the generation of EAT effector cells and the proliferative response to MTg. Irrelevant anti-Ia reagents, monoclonal anti-I-Ek, and monoclonal anti-I-Jk were ineffective. Thus the I-A restriction in murine EAT appears to result from an I-A restricted interaction between Ia+ APCs and Ia- EAT effector T cells.

Animals↗

The use of immunoblotting and immunoprecipitation of (U) small nuclear ribonucleoproteins in the analysis of sera of patients with mixed connective tissue disease and systemic lupus erythematosus. A cross-sectional, longitudinal study.

Antibodies to ribonucleoproteins (RNP) and to the Sm antigen in sera from patients with mixed connective tissue disease (MCTD) and systemic lupus erythematosus were studied using the techniques of immunoblotting and immunoprecipitation of U small nuclear RNPs. A cross-sectional study indicated that antibodies reacting with a 68K protein were associated with anti-RNP specificity in MCTD, but rarely occurred in systemic lupus erythematosus patients' sera. A longitudinal study demonstrated the persistence of MCTD blotting patterns over many years, and the subsequent disappearance of those specificities in sera from patients who were in prolonged remission.

Antibodies↗

The role of cellular proliferation in the induction of experimental autoimmune thyroiditis (EAT) in mice.

Experimental autoimmune thyroiditis (EAT) can be induced in susceptible strains of mice by injection of mouse thyroglobulin (MTg) and adjuvant. Lymphocytes from immunized mice develop a proliferative response to MTg which generally correlates with the development of EAT. We utilize a cell transfer system wherein spleen cells from CBA/J mice primed with MTg and lipopolysaccharide (LPS) in vivo are activated by culture with MTg in vitro to transfer EAT to naive recipients. In vivo priming of CBA/J mice is required to develop an antigen specific proliferative response to MTg. This response is optimal between 48 and 90 hr of culture at an MTg concentration of 125-250 micrograms/ml. The correlation between proliferation and transfer of EAT is not absolute as primed Balb/c X CBA/J F1 and AKR lymphocytes do not proliferate detectably in response to MTg but can be activated to transfer EAT; primed Balb/c lymphocytes neither proliferate nor transfer EAT. Proliferation per se is not sufficient to activate cells to transfer EAT as culture with nonspecific mitogens is not effective in activating primed CBA/J spleen cells to transfer EAT. However, lymphoblasts generated during in vitro culture of primed CBA/J spleen cells with MTg are responsible for transfer of EAT; small lymphocytes are ineffective. We conclude that antigen specific proliferation in response to MTg is essential in activating lymphocytes in vitro to transfer EAT.

Animals↗

The clinical significance of the in vivo antinuclear antibody phenomenon.

We describe a patient with systemic lupus erythematosus (SLE) with demonstrated direct immunofluorescent staining of epidermal nuclei in a rim pattern, the second case of in vivo antinuclear antibody (ANA) producing a rim pattern in normal epidermis. A review of the literature showed that 258 cases have been reported of in vivo ANA deposition in epidermal nuclei from nonlesional skin. This phenomenon, which is most common in patients with mixed connective tissue disease, SLE, and scleroderma, correlates frequently with antibodies to extractable nuclear antigens. In vivo ANA have also been described in renal and pulmonary tissue from patients with SLE. In most cases, the pathogenic significance of the phenomenon is unknown.

Antibodies, Antinuclear↗

Congenital complete heart block and SSA antibodies: obstetric implications.

Mothers with known or occult rheumatic disorders may be delivered of infants with congenital complete heart block. The more frequent use of ultrasonography during pregnancy now allows early detection of heart block in utero. The transplacental passage of SSA or SSB antibodies, of the IgG class, may mediate or be associated with immune damage to the fetal cardiac conduction system, as reported in our two patients. Maternal and/or newborn screening for SSA and SSB antibodies in selected patients permits an early presumptive diagnosis and will assist perinatal planning, particularly for immediate newborn cardiac pacemaker implantation. Early serologic detection of such antibodies may also assist family counseling of mothers at risk and should promote investigation of techniques to modify the immune status of these mothers. SSA- or SSB-positive maternal/fetal pairs should be prospectively managed by the obstetrician, neonatologist, and rheumatologist.

Adult↗

Immunogenetic studies of juvenile dermatomyositis. III. Study of antibody to organ-specific and nuclear antigens.

Ninety children with definite juvenile dermatomyositis (JDMS), who had been HLA typed, were tested for the presence of tissue or organ-specific antibodies. Sixty had active disease at the time of study. The mean disease duration was 4 years, and 30 had soft tissue calcifications. The following autoantibodies were sought: thyroid, gastric parietal cells, smooth muscle, striated muscle, microsomes, mitochondria, DNA, extractable nuclear antigen, Sm, PM-1, antinuclear antibody (ANA), and rheumatoid factor. Only the ANA and PM-1 were more frequent in patients than in controls (P less than 0.0002 and P less than 0.001, respectively). Higher levels of immune complexes (P less than 0.01) were found in sera from patients with JDMS than in sera from controls and were correlated with the presence of ANA in patients (P less than 0.01). Soft tissue calcification was not associated with any autoantibody or HLA antigen, but with disease duration and activity (P less than 0.001 and P less than 0.05, respectively). There was no association between the occurrence of any autoantibody and the presence of HLA-B8 or DR3 among the white patients with JDMS. The frequency of autoantibodies in 43 full siblings of children with JDMS was not increased. We conclude that children with JDMS, with or without HLA-B8/DR3, do not show evidence of a generalized nonspecific antibody response to tissue antigens. The significance of the increased antibody to nuclear antigens ANA and PM-1 remains to be determined.

Adolescent↗

Induction of experimental autoimmune thyroiditis in mice with in vitro activated splenic T cells.

Spleen cells from CBA/J or SJL mice sensitized with mouse thyroglobulin (MTg) and lipopolysaccharide (LPS) could be activated in vitro with MTg to transfer experimental autoimmune thyroiditis (EAT) to normal syngeneic recipients. EAT induced by these transferred cells was similar in incidence and severity to EAT induced by active immunization of mice with MTg and adjuvant and cells from EAT-resistant Balb/c mice could not be activated to induce EAT. The specific antigen MTg was required both for initial sensitization of the mice and for activation of spleen cells in vitro. The cells that were active in transferring EAT to mice were shown to be T cells. Removal of B cells from the cultured spleen cells had no effect on the ability of the cells to induce EAT.

Animals↗

Characterization of a new antigen-antibody system (Su) in patients with systemic lupus erythematosus.

A new antigen (Su) from calf thymus nuclear extract that reacts with sera from patients with systemic lupus erythematosus (SLE) is described. Antibodies to Su, demonstrated by immunodiffusion, were most frequently found in patients with a diagnosis of probable or definite SLE. Thirty-seven percent of patients with Su antibodies and a diagnosis of SLE were positive for antinuclear antibodies by indirect immunofluorescence, but lacked specific antibodies previously associated with SLE. Patients with Su antibodies exhibited a higher frequency of Raynaud's phenomenon, but exhibited a lower frequency of malar rash, alopecia, and arthritis when compared with SLE patients in previously published reports. The Su antigen is weakly acidic, heat-stable at 37 degrees C, heat-sensitive at 56 degrees C, resistant to DNase and RNase, but sensitive to trypsin. Its molecular weight approximated 154,000 daltons by Sepharose chromatography. The Su antibody may be associated with a subset of SLE patients with distinct clinical features, and may serve as a serologic marker for patients who are positive for fluorescent antinuclear antibodies but have no other detectable SLE-associated antibodies.

Antigens↗

Comparison of various preparations of nuclear antigens by hemagglutination inhibition (HAI).

A clinical laboratory carrying out tests for antinuclear antibodies requires an efficient, reliable preparation method to produce a high yield of nuclear antigens at low cost and a very sensitive, specific assay method for antigen activity. Various tissues were employed for preparation of small nuclear ribonucleoprotein (snRNP) and Sm antigens for these purposes. Fresh calf thymus cells and nuclei, commercially available calf and rabbit thymus acetone powders, fresh rat kidney and liver cells were used as sources of antigens prepared similarly by methods published previously. Preparations of antigens from whole calf thymus cell extracts were prepared with and without inhibitors to protease and RNase. snRNP and Sm antigens were assayed at each preparation step by hemagglutination inhibition (HAI). Using HAI it was possible to routinely assay snRNP and Sm at nanogram/ml quantities which was 10(6) fold more sensitive than Ouchterlony immunodiffusion. Results were expressed as relative specific activity as compared with calf thymus nuclear extract prepared by conventional methods. Protease and RNase inhibitors did not significantly increase yields. Thymus was the best source of snRNP and Sm. Fresh calf thymus extract produced a good, stable, reliable quantity of antigens, whereas calf and rabbit thymus acetone powders provided antigen at higher specific activity with less labor but slightly lower yields. Thus, considering the total cost of preparations, commercial sources may be superior to fresh sources in the clinical laboratory setting. These studies also revealed the utility of the sensitive HAI test not only in the clinical laboratory but also for further research endeavors.

Animals↗