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Biomedical subjects

S L Leu

Publications and source records attributed to S L Leu.

7 recordsLinked to original sources

The isolation and structural elucidation of three new neolignans, piperulins [corrected] A, B, and C, as platelet activating factor receptor antagonists from Piper puberulum.

Three new neolignans, piperulins [corrected] A [1], B [2], and C [3], were isolated from Piper puberulum. Their structures and relative stereochemistries were determined from spectral data and the X-ray crystallographic analysis of 1. Compounds 1 and 3 inhibit specific platelet activating factor receptor binding with IC50 values of 7.3 and 5.7 microM, respectively.

Animals↗

Biological activity of autoantibodies associated with Graves' dermopathy.

To test the hypothesis that Graves' dermopathy is due to cross-reactivity of thyroid autoantibody(ies) with a cellular target in pretibial skin, we tested the serum and serum immunoglobulin fraction of 20 such patients for their effects on the metabolic activities of cultured thyrocytes (rat FRTL cells), human pretibial skin fibroblasts, and human fibroblasts of other origins. The incorporation of 3H-labeled thymidine, amino acids, and glucosamine into DNA, protein, and glycosaminoglycans, respectively, was measured. TSH and the serum of each of the 20 patients with Graves' dermopathy markedly stimulated the synthesis of DNA, protein, and glycosaminoglycans by FRTL cells, but not by fibroblasts, whereas assays of serum from 38 of 40 patients with Graves' disease without dermopathy did not stimulate these processes in FRTL cells more than normal serum. Stimulatory activity was associated with immunoglobulins. Serum dermopathy-associated antibodies disappeared with the disappearance of the skin lesions. These results suggest that the serum of patients with dermopathy contains antibodies that recognize a component of the TSH receptor different from that recognized by serum of Graves' patients without dermopathy, the former acting in some manner to induce lesions in pretibial skin. The skin target remains unidentified.

Animals↗

Monoclonal antithyroglobulin antibodies derived from immunizations of mice with human eye muscle and thyroid membranes.

A mouse hybridoma clone secreting an immunoglobulin M monoclonal antibody (K-5-4), which reacted with human thyroglobulin (Tg), was obtained from spleen cells of mice immunized with crude membranes of human eye muscle tissues (Em). Its binding to Tg could be inhibited by another monoclonal anti-Tg (F1-11-1) derived from spleen cells of mice immunized with human thyroid cell membranes, but K-5-4 did not inhibit the binding of F1-11-1 to Tg. This finding suggests that K-5-4 may react with a site on the Tg molecule which is susceptible to conformational changes, such as that induced by binding of another anti-Tg antibody at another site on Tg. K-5-4 reacted with human, mouse, rat, guinea pig, bovine, and porcine Tg. Binding and immunohistological staining experiments failed to detect binding of K-5-4 to Em tissue. The very low frequency of one Tg-reacting hybridoma from 6 X 10(8) spleen cells fused after Em immunization contrasts with the relative ease with which monoclonal anti-Tgs were generated from spleen cells of mice immunized with crude human thyroid membranes. In the latter case, 1 anti-Tg hybridoma was generated for every 100,000 spleen cells fused, and an extensive library of monoclonal anti-Tgs was collected. Some of these antibodies were specific for human Tg only, while others cross-reacted with Tg of other animal species. None had the species reativity pattern of K-5-4. The anti-Tgs were used to affinity purify human Tg directly from supernatant of thyroid homogenate; the purified Tg was, in turn, used to affinity purify human polyclonal but monospecific anti-Tg directly from serum of patients in a simple and rapid procedure. We conclude that the monoclonal anti-Tgs are useful reagents in isolating and purifying Tg and anti-Tg.

Animals↗

Peripheral blood lymphocytes from normal individuals can be induced to secrete immunoglobulin G antibodies against self-antigen thyroglobulin in vitro.

Autoantibodies to the self-antigen thyroglobulin (Tg) are usually not found in sera of normal individuals, but are often present in sera of patients with autoimmune thyroid diseases. To determine if the presence of such autoantibodies could be due to the abnormal appearance of self-reactive B cells, which are otherwise absent in normal subjects, or to an alteration in the mechanisms regulating such B cells, peripheral blood lymphocytes (PBL) from normal individuals and patients with autoimmune thyroid diseases were cultured and stimulated in vitro with the polyclonal stimulant pokeweed mitogen (PWM). A modified plaque assay was used to enumerate cells secreting protein A-binding immunoglobulins (Igs) and specific antibodies against Tg. PBL from all individuals tested, including normal subjects (n = 26), could be induced by PWM to produce antibodies against Tg in vitro and these antibodies were of IgG isotypes. PBL from patients with detectable serum anti-Tg had more inducible cells secreting anti-Tg [27,000 +/- 10,700 (+/- SD)/10(6) PBL] than those from patients with autoimmune thyroid diseases, who had no detectable serum anti-Tg (8,000 +/- 5,000), and those from normal individuals (7,200 +/- 4,200). The demonstration of inducible mature (IgG) anti-Tg-producing cells in normal individuals suggests that subclinical autoimmunity against certain self-antigens may be a normal phenomenon in man and that its escalation into clinical autoimmune conditions is prevented through regulation of the specific self-reactive cells.

Adult↗

Helper and suppressor activities of lymphocyte subsets on antithyroglobulin production in vitro.

We studied the regulatory activities of T cells on specific antithyroglobulin (anti-Tg) and nonspecific immunoglobulin secretion in cultures of peripheral blood lymphocytes (PBL) of five patients with autoimmune thyroid diseases and high levels of serum anti-Tg. PBL were separated into a non-T population, including B-cells and monocytes, and a T-cell population by rosetting with sheep red cells. T-Cells were further separated into T helper (Th) and T suppressor (Ts) subsets by a panning technique using the monoclonal antibodies anti-Leu 3a and anti-Leu 2a, respectively. The three sets of cells, i.e. B, Th, and Ts, from patients and from normal individuals were cocultured in various combinations and stimulated with the polyclonal stimulant pokeweed mitogen. A sensitive plaque assay was used to enumerate cells producing anti-Tg and protein A-binding immunoglobulins. The PBL of both patients and normal individuals had Tg-specific suppressor cells. Ts-cells from patients in syngeneic or allogeneic combinations with B- and Th-cells at a ratio of 1:1:1 suppressed the pokeweed mitogen-induced anti-Tg response to 41 +/- 8% (+/-SE) and 50 +/- 20% of the control value, respectively, while Ts from normal individuals suppressed the response to 7 +/- 3% of the control value. The suppressive effect of the Ts-cells from patients and normal individuals on nonspecific immunoglobulin secretion was similar (reduced to 10-15% of control). Thus, there appeared to be a deficiency in Tg-specific suppressor activity in PBL of patients. On the other hand, Th-cells from patients (syngeneic or allogeneic) cocultured with patient B-cells produced a greater anti-Tg response than Th-cells from normal individuals. The helper activities of Th-cells of patients and normal individuals on nonspecific immunoglobulin secretion were similar. Thus, there appeared to be an increase in Tg-specific helper activity in PBL of patients.

Autoantibodies↗