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Biomedical subjects

M Teodorescu

Publications and source records attributed to M Teodorescu.

At least 19 recordsLinked to original sources

Clinical value of an integrated ELISA system for the detection of 6 autoantibodies (ssDNA, dsDNA, Sm, RNP/Sm, SSA, and SSB).

An ELISA panel assay (ANA/6) which simultaneously detects IgG autoantibodies against 6 antigens (ssDNA, dsDNA, Sm, RNP/Sm, SSA, and SSB) was evaluated with sera from 98 patients with systemic lupus erythematosus (SLE) and related conditions, 68 disease controls, who were positive or negative by fluorescent ANA (FANA), and 100 healthy controls. The antigen panel specifically identified the particular autoantibodies present and had a high level of sensitivity which was reflected by the frequency of detection of autoantibodies in different patient groups. All active patients with SLE were positive for at least one autoantibody and 80% of these patients had 3 or more autoantibodies compared to only 20% of inactive patients. A large heterogeneity in antibody profiles was also noted. About 90% of patients with positive FANA, but no detectable autoimmune rheumatic disorder, i.e., false positive, were negative by the panel. A new method of standardization was designed to use the ANA/6 quantitatively. Very large differences in the level of all 6 autoantibodies were observed between sera from patients with active and inactive SLE, suggesting a potential usefulness of ANA/6 for patient management.

Antibody Specificity

Covalent binding to alpha-macroglobulins of a protein with free SH groups produced by activated B cells: blocking by D-penicillamine and gold compounds.

alpha 2-Macroglobulin (alpha 2M) complexed with proteinases or modified by the action of amines has been shown to affect immune responses in vitro, though as yet the mechanisms are poorly understood. Supernates from rabbit lymphoid cells cultured in medium with normal rabbit serum and 35S-methionine (or 14C-leucine) were found to contain intensely radiolabeled alpha-macroglobulins (alpha M) (alpha 1 and alpha 2) on electrophoresis. When human alpha 2 M, instead of rabbit serum, was added to cultures, it also appeared radiolabeled, suggesting that lymphocyte-produced proteins (LyP) formed complexes with serum alpha M. These alpha M-associated LyP were produced in greater quantity when lymphocytes were cultured in the presence of mitogens; they were not produced by cells cultured in the presence of cycloheximide; they were produced primarily by B cells rather than T cells or macrophages. Pretreatment of serum or alpha M with methylamine, enhanced rather than inhibited the formation of LyP-alpha M complexes, a finding which is contrary to that expected if the LyP were a proteinase. Since this methylamine treatment of alpha M also results in the generation of free SH groups from the internal thioester bonds of alpha M, the formation of disulfide bonds between LyP and alpha M was considered. Indeed, (a) the LyP-alpha M complex formation was inhibited by N-ethylmaleimide, aurothiomalate, sodium aurothioglucose or D-penicillamine; (b) blocking the SH groups with NEM, of either culture fluid supernates or serum, had an inhibitory effect on the formation of these complexes; (c) the LyP-alpha M complexes were dissociated by sodium dodecyl sulfate (SDS) only after their reduction with 2-mercaptoethanol (2-ME). Thus, a disulfide bond was formed between alpha M and LyP with free SH groups (SH-LyP). Molecular sieving by high performance liquid chromatography (HPLC) of the serum-free radiolabeled supernates indicated that SH-LyP eluted at a position corresponding to a polypeptide of mol. wt of about 22,000. However, SDS-PAGE of the 22,000 mol. wt HPLC fraction showed that the major protein was approximately mol. wt 11,000 under both reducing and non-reducing conditions. In addition, the SH-LyP reduced by 2-ME from its binding site on alpha 2M had a mol. wt of about 11,000 in SDS-PAGE, suggesting that it was a non-covalent homodimer of mol. wt 11,000 polypeptides. We suggest that alpha 2M as well as SH-LyP may affect the immune system by functioning as SH-reactive agents.

Animals

The relationship between the percentage of circulating B cells, corticosteroid levels, and other immunologic parameters in thermally injured patients.

Thermal injury is known to induce alterations in the immune system, but the precise mechanisms have yet to be elucidated. We investigated the temporal relationship between serum and urine corticosteroid levels, the number of circulating B cells, serum immunoglobulin levels, and delayed hypersensitivity reactions in the postburn period. Fifteen adult patients (mean age, 44 years) admitted with thermal burns greater than 20% body surface area (BSA) (mean, 50%) were evaluated during four postburn periods. Using a bacterial adherence assay in blood smears, we observed an increased percentage of B lymphocytes (20.3%) in the early postburn period compared to normal controls obtained during the same time period (13.1%). The percentage of B cells gradually decreased during the subsequent 4 weeks and was not influenced by the eventual clinical outcome. The changes in B-cell percentage were paralleled by changes in the level of urine 17-hydroxysteroids. Serum IgG concentrations were low during the initial postburn period in survivors and nonsurvivors and returned to normal and above-normal levels in the late postburn period in both groups. The delayed hypersensitivity skin test reactions were also depressed in the immediate postburn period and returned to normal only in the surviving group at the end of the second postburn week. We speculate that the increased endogenous secretion of stress hormones results in an increase in circulating B cells secondary to their release from lymphoid organs and that the normalization of hormone levels as wound healing ensued was associated with the return of B cells to the lymphoid organs. This lymphocyte redistribution may result in polyclonal cellular interactions, with subsequent B-cell activation, and increased IgG production.

Adrenal Cortex Hormones

Increase in proliferation and cytotoxic cell development in human mixed lymphocyte cultures in the presence of very low concentrations of LPS: role of IL-1 and prostaglandin E2.

Lipopolysaccharide (LPS) added to human allogeneic mixed lymphocyte cultures (MLC), even at very low concentrations, increased the level of specific cytotoxicity that developed. Proliferation was also increased by LPS in MLC but no increase was detectable when the allogeneic stimulus was absent. LPS enhanced only low cytotoxic responses while having little effect on naturally high responses. Significant enhancement in cytotoxic response was found within the picogram-nanogram per milliliter range of concentrations of LPS and only when it was added at the initiation of cultures. This early action of low concentrations of LPS suggested that IL-1 was involved. Indeed, a supernatant from silica-treated human mononuclear cells containing IL-1 activity also enhanced cytotoxic and proliferative responses. Aside from increasing IL-1 secretion we also found that LPS significantly increased synthesis and secretion of PGE2 which had a selective inhibitory effect. Namely, addition of indomethacin or flurbiprofen to MLC further enhanced the cytotoxicity of LPS-treated but not that of untreated cultures without increasing the proliferative response. These results suggest a key role for macrophage-derived IL-1 and PGE2 in the regulation of proliferative and cytotoxic responses of T cells. They also suggest that very low amount of LPS may reach the immune system and contribute to the expression of cell-mediated immune responses.

Adult

A low molecular weight proteinase inhibitor produced by T lymphocytes.

A low molecular weight (MW) proteinase inhibitor, between 6500 and 21,500 MW, appeared in the supernatant of rabbit spleen cells cultured at high density for 24 hr. The inhibitor inhibited the enzymatic activity of trypsin for both a high MW natural substrate, fibrinogen, and for a low MW artificial substrate, Chromozym TRY. The low MW proteinase inhibitor is protein in nature and is different, in terms of specificity for enzymes, MW and sensitivity to different physical or chemical treatments, from aprotinin, a low MW proteinase inhibitor (6500 MW) of bovine origin, and from the soybean trypsin inhibitor, a relatively high MW proteinase inhibitor (21,500 MW). The inhibitor was found in the supernatant of purified T cells but not B cells, and its production was increased in the presence of an optimal concentration of Con A. The possibility that this proteinase inhibitor has a role in the regulation of trypsin-like proteinases involved to the immune response remains to be investigated.

Animals

Inactivation of human interleukin-2 (IL-2) by alpha 2-macroglobulin-trypsin complexes.

The loss of the biological activity of interleukin-2 (IL-2, T-cell growth factor) in the presence of alpha 2-macroglobulin-trypsin (alpha 2M.t) complexes has been investigated using an IL-2-dependent cloned 'cytotoxic' murine T-cell line. While reaction mixtures of native alpha 2M, aprotinin or methylamine-treated alpha 2M and IL-2 had no effect on IL-2 activity when incubated at 37 degrees for 5 h, alpha 2M.t (90 nM, [T]:[alpha 2M] = 0.8) inactivated IL-2 at a rate of one-sixth of that of the free enzyme. This effect was abolished by treatment of alpha 2M.t with aprotinin (MW 6500). Soybean trypsin inhibitor coupled to Sepharose 4B was capable of absorbing the IL-2 degrading activity from the trypsin solution. In contrast, alpha 2M.t treated with the solid-phase immobilized soybean trypsin inhibitor continued to inactivate IL-2, but did not degrade a macromolecular substrate (remazol-brilliant blue hide). Thus, IL-2 (MW 15,500) gains access to the active site of the alpha 2M-bound trypsin, resulting in a rapid loss of its biological activity. These observations offer an explanation for the in vitro immunosuppressive effects of alpha 2M.t.

Cell Division

Immunobiological function of normal rabbit synovial cells.

The ability of enzyme-dissociated primary cultures of synovial cells (Sy) to present antigen was investigated. Adult rabbits were immunized in foot pads with bovine serum albumin (BSA) in complete Freund's adjuvant (CFA) or with CFA alone. Four to six weeks later draining popliteal lymph node cells (LNC) and synovial cells were obtained. Synovial cells were cultured overnight with or without antigen. About 20% of these synovial cells had Fc receptors and 15% C3 receptors. As a positive control splenic adherent cells (SAC) were similarly treated. Next day, autologous lymph node cells were added to the extensively washed and irradiated synovial cells or splenic adherent cells. Lymphocyte proliferation was measured by [3H]thymidine uptake. Synovial cells as well as splenic adherent cells induced mixed lymphocyte reaction (MLR) and autologous mixed lymphocyte reaction (AMLR) and effectively presented antigen for specific immune response to the priming antigen. Thus, the synovium contains macrophage-like cells that can effectively interact with lymphocytes and participate in the immune phenomena in the joints of patients with rheumatoid arthritis.

Animals

The use of bacteria as probes for lectins in preparations of solubilized human tonsil cell membranes.

In earlier work we have shown that some bacteria bind naturally to lymphocyte subpopulations and that this binding may be due to lectin-carbohydrate interactions. Here we determined the possibility of using bacteria to probe for these lectins in solubilized tonsil cell membrane preparations. Since lectins are capable of agglutination, we determined the ability of human tonsil cell membrane extract (TCME) to agglutinate bacteria. We used Escherichia coli strain YS57 which does not bind to human lymphocytes and a mutant strain derived from it, E. coli UI 2023, which binds to about 50 percent of human lymphocytes. The UI 2023 was agglutinated while the YS57 was not; this agglutination was not due to antibodies or DNA. When E. coli UI 2023 was treated with periodate, it lost its ability to be agglutinated. The agglutination of E. coli UI 2023 was not blocked by any of the monosaccharides and disaccharides used but was blocked by the E. coli LPS, more specifically, by its carbohydrate moiety. Also, the E. coli UI 2023 absorbed the agglutinating factor while its parental strain, YS57, did not. Sodium dodecylsulfate-polyacrylamide gel electrophoresis of TCME after absorption with bacteria showed that a band around 67kD was absent in the TCME absorbed by E. coli prevented the absorption by E. coli UI 2023 whereas Na2IO4-treated LPS did not. In addition, tonsil cell membrane was radioiodinated before obtaining the TCME; sodium dodecylsulfate-polyacrylamide gel electrophoresis of the radioiodinated TCME recovered after elution from E. coli UI 2023, but not from E. coli YS57, showed again a band around 67 kD.(ABSTRACT TRUNCATED AT 250 WORDS)

Agglutination

Allogeneic lymphocyte stimulation in rabbits: induction of a low MW inhibitor for trypsin and for a concurrently induced alpha-macroglobulin-proteinase complex.

We have shown previously that the i.v. inoculation of allogeneic lymph node cells in rabbits induces the appearance in the serum of an alpha M-serine proteinase complex which behaves in an Ig-turnover assay as any polyclonal B-cell activator (PBA), and that this PBA activity is due to the enzyme. Here, we show that the allogeneic stimulation also induces the appearance in the low molecular weight fraction of the serum (1000-110,000 MW) of an inhibitor which blocks the PBA activity of the complex without affecting the PBA activity of LPS or dextran sulphate. The inhibitor blocked the ability of the enzyme associated with alpha M to degrade Chromozym TRY, a low MW trypsin substrate. The inhibitor also blocked the enzymatic activity of trypsin for large as well as for low MW substrates. Thus, allogeneic stimulation in vivo results in the production, not only of an alpha M-proteinase complex, but also of an inhibitor for this proteinase as well as for trypsin. The appearance of the inhibitor, along with the alpha M-serine proteinase complex as a result of allogeneic stimulation in rabbits, is of interest since a similar alpha M-serine proteinase complex and inhibitor may appear in the serum of patients with rheumatoid arthritis.

Animals

Specific cytotoxicity of human lymphocyte subpopulations defined by bacterial adherence.

It has been shown that lymphocytes can be subdivided into subpopulations based on their binding of bacteria. Monolayers of immobilized and fixed bacteria were used here to separate T cells into BA-T1T2, adherent to Escherichia coli-2 (EC-2+) and BA-T3T4, non-adherent to this strain of bacteria (Ec-2-) (our denomination). The cells were activated in mixed lymphocyte cultures (MLC) and tested for cytotoxic activity. The BA-T1T2 cells developed the same cytotoxic activity as the sham-separated T cells whereas BA-T3T4 cells did not become cytotoxic. When the T cells were separated into BA-T2 cells, adherent to Bacillus globigii (Bg+), and BA-T1T3T4, non-adherent, (Bg- cells became cytotoxic. Since BA-T1 cells, which represent 10-20% of T cells, are common to the two populations they appear to contain all T cells needed to develop the specific cytotoxicity for allogeneic cells. When the cells were first activated in MLC for 6 days and then separated by adherence to E. coli-2 or B. globigii, all cytotoxic cells were in the non-adherent fraction. We concluded that the subpopulation of T cells which are Ec-2+Bg- (less than 20%) contain all the cells required for the development of cytoxic cell function and that after activation they become Ec-2-Bg-.

Bacillus

Class II histocompatibility antigen-mediated immunologic function of normal articular chondrocytes.

Using monoclonal antibodies, we examined the display of rabbit Ia by articular chondrocytes. We found that 29 to 46% of chondrocytes displayed Ia antigen compared with 46 to 60% of spleen cells. Ia antigen expression was not likely to be the result of enzyme treatment. To investigate antigen presenting activity of enzyme dissociated normal articular chondrocytes, adult rabbits were immunized in the front foot pads with ovalbumin (OVA) in complete Freund's adjuvant. Four to six weeks later, draining popliteal lymph node cells (LNC) were obtained. Articular chondrocytes were obtained by overnight collagenase, DNase, and hyaluronidase digestion of cartilage from both ends of femurs and proximal end of tibias. Antigen-presenting cells from spleen were used as positive controls. LNC and nylon wool-purified T cells were cultured with OVA pulsed and mitomycin C-treated chondrocytes or spleen cells, and lymphocyte proliferation was measured by 3H-TdR uptake. Both chondrocytes and spleen cells showed antigen presenting activity, and stimulation of lymphocyte proliferation was inhibited by murine monoclonal anti-rabbit Ia antibody (2C4), whereas control plasmacytoma cell supernatants had no effect. When T cells were purified first by Sephadex G-10 and later by nylon wool columns, these cells were dependent on antigen-presenting cells for immunogen (OVA)-induced lymphocyte proliferation. Again, chondrocytes under these strict experimental conditions presented antigen to T cells. Chondrocytes also stimulated autologous and allogeneic normal lymphocytes. Thus, normal chondrocytes have Ia antigens on their surface and can function as antigen-presenting cells. These results are significant for the understanding of local cellular interaction in the pathogenesis of rheumatoid arthritis.

Animals

The role of intercellular contacts in the activation of B lymphocytes by anti-immunoglobulin antibodies.

It has been proposed that anti-Ig antibody activates B cells in a way analogous to the antigens, i.e., it delivers its signal by cross-linking and clustering the Ig receptors on the surface of one cell. However, the cross-linking of different B cells which may deliver to each other a signal has not been considered. Thus, we examined the effect of preventing cell contacts on the response of rabbit B cells to anti-Ig allotype antibody by using a solid agarose medium. First, we examined the 14C-uridine incorporation in liquid medium and in liquid or solid agarose in cultures stimulated with anti-Ig antibody (Ab). The response was high in liquid agarose or liquid medium but was absent when the agarose-containing medium was solidified at the start of the cultures. If the agarose was solidified 6 hr after the start, a good response was obtained. Moreover, if the cells were sedimented at the start before solidifying the agarose-containing medium, a good response was also obtained. Similar results were obtained when T cells were activated by Con A. To examine whether B cells require contacts with other B cells or with non-B cells, we examined their response to anti-Ig Ab in the absence of macrophages or T cells, and found that purified B cells from lymphoid organs or from thoracic duct responded well in the absence of T cells and/or macrophages. The response was also absent when the cells were cultured in agar at a "local" concentration close to 10(8) cell/ml. Also, concentrated supernatants of anti-Ig-stimulated cells did not increase the response to anti-Ig in solid agarose. These two last observations suggest that the lack of response in solid agarose is not due to a lack of diffusible factors or to a lack of feeder cells. Therefore, because the only difference between the cultures that responded to anti-Ig or Con A and those that did not was the distance between the cells, we concluded that the contact between B cells or between T cells is essential to their activation by their respective mitogens. We speculate that the anti-Ig Ab or the antigen cross-links B cells, which then provide each other with the activating signal or with one of the activating signals.

Animals

Enhancement of human MLR by very low concentrations of lipopolysaccharide and blocking of this enhancement by polymyxin B.

Addition of 50 micrograms LPS/ml to as little as 5 pg of LPS/ml to the allogeneic human mixed leukocyte reaction (MLR) enhanced [3H]thymidine incorporation 2-4-fold. The same concentrations of LPS had no effect on thymidine incorporation in cultures without the allogeneic cells. The Limulus amebocyte lysate (LAL) test we used was sensitive only to 15 pg LPS/ml indicating that the MLR is more sensitive to LPS than the LAL test. A commercially available RPMI 1640 culture medium used by many investigators was found to contain concentrations of LPS that would significantly enhance the MLR. Polymyxin B blocked the MLR-enhancing effect of LPS while having no inhibitory or stimulating effect itself. We concluded that low concentrations of LPS are helpful in revealing MLR incompatibilities by enhancing the lymphocyte responses and that the addition of polymyxin B is essential in the study of factors affecting the MLR by eliminating any LPS contribution.

Cells, Cultured

Degradation of a chromogenic substrate by alpha 2-macroglobulin from plasma of patients with rheumatoid arthritis.

We have shown previously that serum from patients with rheumatoid arthritis (RA) contains a polyclonal B cell activator that is associated with alpha 2-macroglobulin (alpha 2M). Some biologic effects of this activator appear to be due to a trypsin-like protease attached to alpha 2M. Therefore, in the present study, we used an anti-alpha 2M antibody solid-phase assay, with Chromozym-Try as a substrate, to determine the level of alpha 2M-protease complexes in plasma alpha 2M. We found higher levels of these complexes in RA patients than in 2 control groups. Since alpha 2M-protease complexes have been shown to induce RA-like inflammation in experimental animals and to be produced by lymphoid cells, we speculate that they may be involved in the pathogenesis of RA. However, the role of the other cells or enzyme systems in the formation of these complexes has not yet been ruled out. Results of these investigations could lead to another link between activation of the immune system and joint inflammation.

Adult

Binding of bacteria in lymphocyte subpopulations: role of lectin-carbohydrate interactions.

Bacteria have been found to bind to lymphocyte subpopulations in a highly reproducible manner. Some of these bacteria such as B. melitensis and a strain of E. coli binds to mammalian B. cells. The binding of B. melitensis and other bacteria is due, at least in part, to lectins on lymphocytes interacting with the carbohydrates on the LPS or LTA of the bacteria. These receptors for bacteria give some indications regarding the functional potential of the cells, suggesting the possibility that the receptors identified by bacteria are used in cellular interactions with normal or malignant cells.

Animals

Detection of alpha 2-macroglobulin-associated proteases in the plasma of patients with rheumatoid arthritis.

In previous work a polyclonal B cell activator has been detected in the serum of patients with rheumatoid arthritis (RA). This activator is associated with alpha 2-macroglobulin (alpha 2M) and its activity is blocked by low-Mr trypsin inhibitors, which suggests that it may be a protease-alpha 2M complex. Here we determined the possibility of developing a routine clinical chemistry test for detection of this complex in patients' blood. We measured with chromogenic substrates the total proteolytic activity of citrated plasma and of the alpha 2M immunoabsorbed from plasma. Low-Mr substrates containing Arg were degraded much better by plasma from RA patients than by plasma from patients with other arthritides. Low-Mr substrates containing Leu, Lys, or Gly or the large-Mr substrate Azocoll were not degraded by RA patients' plasma. alpha 2M from RA patients' plasma attached to a solid-phase immunoabsorbent degraded an Arg-containing tripeptide much better than did the alpha 2M from normal donors, from patients with systemic lupus erythematosus, or from those with joint inflammation of other, "non-autoimmune" origin. Although the enzyme associated with alpha 2M in the plasma from RA patients appeared to be similar to trypsin, the differences in optimal pH, cation concentration, degradation of Lys-containing substrates, and biological activity suggest otherwise. We speculate that the alpha 2M-protease complexes are generated in the immune system and contribute to the inflammatory and autoimmune phenomena in RA.

Arthritis, Rheumatoid