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Biomedical subjects

D Teitelbaum

Publications and source records attributed to D Teitelbaum.

At least 19 recordsLinked to original sources

Synthetic copolymer 1 inhibits human T-cell lines specific for myelin basic protein.

Copolymer 1 (Cop 1) is a synthetic basic random copolymer of amino acids that has been shown to be effective in suppression of experimental allergic encephalomyelitis and has been proposed as a candidate drug for multiple sclerosis. Cop 1 is immunologically cross reactive with myelin basic protein (BP) and was shown to inhibit murine BP-specific T-cell lines of various H-2 restrictions. In the present study these findings were extended to include human T-cell lines. Cop 1 competitively inhibited the proliferative responses and interleukin 2 secretion of six BP-specific T-cell lines and 13 clones with several DR restrictions and epitope specificities. Conversely, BP inhibited--albeit to a lesser extent--the response of all the Cop 1-specific T-cell lines and clones, irrespective of their DR restrictions. Another random copolymer of tyrosine, glutamic acid, and alanine, denoted TGA, had no effect on these lines. Neither Cop 1 nor BP inhibited the response of lines and clones specific for purified protein derivative. Cop 1 and BP exerted their cross-inhibitory effects only in the presence of antigen-presenting cells. These results suggest that Cop 1 can compete with BP for the binding to human major histocompatibility complex molecules. In view of recent studies implicating BP reactivity in multiple sclerosis, these findings suggest a possible mechanism for the beneficial effect of Cop 1 in this disease.

Antigen-Presenting Cells

Cross-reactions and specificities of monoclonal antibodies against myelin basic protein and against the synthetic copolymer 1.

Antibody cross-reactivity is here demonstrated between basic protein (BP), the encephalitogenic molecule of myelin, and copolymer 1 (Cop 1), the synthetic amino acid copolymer, which has a suppressive effect on experimental allergic encephalomyelitis and is effective in reducing the number of relapses in exacerbating-remitting multiple sclerosis. This cross-reactivity is conclusively established using mouse monoclonal antibodies (mAbs). About a third of anti-rat BP mAbs and most of anti-mouse BP mAbs cross-reacted with Cop 1. This cross-reactivity could be demonstrated with anti-BP mAbs of different specificities. In addition, several anti-Cop 1 hybridomas cross-reacted with BP. This cross-reactivity was verified in several assay systems, including competitive inhibition experiments. Moreover, some anti-BP mAbs and anti-Cop 1 mAbs reacted in a heteroclitic manner and favored the cross-reactive antigen over the immunogen. In contrast to the mAbs, no cross-reactivity could be demonstrated with the antisera of immunized mice. This observation may reflect the different B-cell populations expressed in the mAb response as compared to the polyclonal response. Thus, the use of mAbs has uncovered specificities that are not evident in antisera and has revealed pronounced cross-reactivity between BP and Cop 1 at the B-cell level. These results further establish the immunological interrelationships between Cop 1 and BP, demonstrated earlier at the T-cell level.

Animals

Immunomodulation of experimental allergic encephalomyelitis by antibodies to the antigen-Ia complex.

Autoimmune diseases occur when T lymphocytes become activated on recognizing self antigen linked to the autologous class II molecule of the major histocompatibility complex (MHC). The resulting complex of antigen MHC T-cell receptor could be a target for treatment of autoimmune diseases. Studies in which each component is blocked separately might be limited by interference in non-relevant immune responses that either use the same set of T-cell-receptor V gene segments or are linked to the same MHC. We report here an attack by a specific antibody on the unique antigenic site formed by the binding of two components of the trimolecular complex, the autoantigen bound to the self MHC. We tested its effect in experimental allergic encephalomyelitis, an acute neurological autoimmune disease which is widely regarded as a model for autoimmune disorders and which is mediated by CD4+ T cells recognizing myelin basic protein (BP), or its peptides, in association with self Ia. We made monoclonal antibodies which bound only the complex of BP and I-As. These antibodies blocked the proliferative response in vitro to the encephalitogenic determinant of BP and reduced the response to intact BP, without affecting the response to a nonrelevant antigen-purified protein derivative of tuberculin presented on syngeneic macrophages. They also inhibited experimental allergic encephalomyelitis in H-2s mice. Hence, antibodies directed specifically to the autoantigen-Ia complex, may offer a highly selective and effective treatment in autoimmune diseases.

Animals

[Clinical trial of copolymer 1 in multiple sclerosis].

A synthetic copolymer of amino acids, copolymer 1 (Cop 1), proved to be very effective in suppressing experimental autoimmune encephalomyelitis (EAE), an animal model for multiple sclerosis (MS). It is 1 of a series of synthetic amino acid copolymers which simulate the basic protein constituent of the myelin sheath and the autoantigen responsible for induction of EAE. It cannot induce EAE but it does suppress it in a variety of animals. The immunological cross-reaction between Cop 1 and the basic protein is the basis for this suppressive activity. In view of the resemblance between EAE and MS, clinical trials with Cop 1 in MS were started. The first preliminary clinical trial was at this hospital and involved 4 patients with severe MS. A double-blind, randomized placebo-controlled pilot trial was carried on for 2 years in 50 patients with the exacerbating-remitting form of MS but with a Kurtzke Disability Status Scale rating of no more than 6. There were statistically significant differences in the number of patients with exacerbations in the placebo group, 23, as compared to only 16 in the Cop 1-treated group. As to exacerbations per patient, the 2-year averages were 2.7 and 0.6, respectively. Side-effects of Cop 1 were minimal. These results suggest that Cop 1 may be beneficial when given early in the exacerbating-remitting form of MS. Further trials, necessary to establish its efficacy in MS, are being run at the Albert Einstein College of Medicine in NY.

Amino Acids

Suppression of experimental allergic encephalomyelitis by COP1--relevance to multiple sclerosis.

The evidence in this presentation clearly indicates that in the case of the model disease EAE, desensitization procedures are effective in suppressing the symptoms of the disease and in providing protection against it. The antigens used in our studies are all synthetic materials immunologically relevant to the myelin encephalitogenic protein, but not encephalitogenic themselves. The most effective of these materials is a random basic copolymer of alanine, glutamic acid, lysine and tyrosine, denoted COP 1. The finding that the suppressive polymers show immunological cross-reactivity with the encephalitogenic protein provides a logical basis for the explanation of their suppressive activity in terms of an immunological desensitization mechanism. Our studies suggest that the effectiveness of COP 1 in preventing EAE results from the production of antigen-suppressor T cells, and/or from blocking MBP-specific effector T cells. The results of the clinical trial presented here show demonstrable improvement in the COP 1-treated patients as compared with the placebo subjects, particularly for those patients with less severe MS at the start of the treatment. Thus, although the evidence supporting the antigenic role of MBP in MS is not strong, COP 1, a synthetic polypeptide simulating some of the properties of MBP, appears to be effective in altering the course of MS and is of potential value as a modality for the treatment of this disease.

Animals

Specific inhibition of the T-cell response to myelin basic protein by the synthetic copolymer Cop 1.

Cop 1 is a synthetic basic random copolymer of L-alanine, L-glutamic acid, L-lysine, and L-tyrosine in a residue molar ratio of 6.0:1.9:4.7:1.0 and with a molecular weight of 21,000 which proved to be effective in specific suppression of experimental allergic encephalomyelitis and has been proposed as a candidate drug against multiple sclerosis. In the present study we further investigated the mechanism of Cop 1 suppressive activity and tested whether Cop 1 could inhibit the specific T-cell response to myelin basic protein (BP). Eight BP-specific T-cell lines and clones with various H-2 restrictions and antigenic specificities were used. The responses of all these lines and clones to BP, as followed by both cell proliferation and interleukin 2 secretion assays, were affected by Cop 1. For one line, a direct cross proliferation with Cop 1 was observed, whereas in the other seven lines and clones, Cop 1 specifically inhibited the responses to BP in a competitive dose-dependent manner. The inhibition of the response to BP is specific to Cop 1, as D-Cop 1 and another random acidic polymer, poly(Tyr,Glu,Ala) (TGA), both of which were previously demonstrated to be ineffective in suppression of experimental allergic encephalomyelitis, did not inhibit the response to BP. Furthermore, Cop 1 specifically inhibited only the response of the T-cell lines and clones to BP. It did not inhibit their response to the mitogen Con A, nor did it inhibit the responses of the purified protein derivative-specific T-cell line and clone. These results suggest that Cop 1 may be effective in suppression of experimental allergic encephalomyelitis, not only because of the selective stimulation of suppressor T cells, as we have previously demonstrated, but also by specific inhibition of BP-specific effector T cells.

Animals

The effect of Cop 1, a synthetic polypeptide, on chronic relapsing experimental allergic encephalomyelitis in guinea pigs.

Cop 1, a synthetic polypeptide, was evaluated for its effect on a chronic relapsing form of experimental allergic encephalomyelitis (EAE). Pretreatment of juvenile Strain 13 guinea pigs with Cop 1 in incomplete Freund's adjuvant (IFA) which were subsequently challenged with guinea pig spinal cord in complete Freund's adjuvant (CFA) had a marked effect in delaying or preventing the appearance of clinical signs of EAE. Administration of Cop 1 on appearance of clinical signs of EAE prevented progression of the first episode of the disease. Although relapses were not always prevented, they were modified on their duration and intensity both clinically and histologically.

Animals

Effect of cyclophosphamide on suppressor cell activity in mice unresponsive to EAE.

Protection against experimental allergic encephalomyelitis (EAE) was induced in susceptible mice of (SJL/J X BALB/c)F1 hybrid, by injection of either mouse spinal cord homogenate, the small mouse basic protein, or Cop 1 in incomplete Freund's adjuvant, before EAE induction. It was demonstrated that the unresponsiveness induced by the three antigens is mediated by suppressor T cells residing in the spleen cell population and can be adoptively transferred to normal syngeneic recipients. Low dose of cyclophosphamide (20 mg/kg) administered 2 days before the encephalitogenic challenge abrogated the unresponsiveness to EAE and reverted the protected mice sensitive to disease induction. Cyclophosphamide was also active on adoptively transferred unresponsiveness, thus donors that had been treated with cyclophosphamide were unable to further transfer unresponsiveness to EAE. These results indicate the elimination by cyclophosphamide of suppressor cells that interfere with the effector mechanisms leading to EAE.

Animals

The autoimmune features of acute transverse myelopathy.

Lymphocytes from patients with acute transverse myelopathy (ATM) were shown to undergo a specific and significant transformation when cultured in vitro in the presence of either the central nervous myelin basic encephalitogenic protein (BE) or the peripheral nerve myelin P2 protein. A similar pattern of response was demonstrated in acute disseminated encephalomyelitis and in acute myeloradiculitis. Lymphocytes from patients suffering from other autoimmune neurological disorders or other neurological diseases affecting the spinal cord showed no response to there immunologically related antigens, which have previously been found to have the capacity of inducing experimental allergic encephalomyelitis, either alone or with experimental allergic neuritis, when injected into animals. The specific in vitro response to BE and P2 suggests that in vivo sensitization of lymphocytes to such self-antigens occurs in ATM and than a cell-mediated, probably postinfecious autoimmune mechanism may be an important factor in the pathogenesis of the disease.

Acute Disease

Experimental allergic neuritis induced by a basic neuritogenic protein (P1L) of human peripheral nerve origin.

Experimental allergic neuritis (EAN) in the peripheral nervous system, without involvement of the central nervous system, was produced in laboratory animals by the injection of a basic neuritogenic protein, P1L, purified from human peripheral nerves. The animals manifested a positive skin test with P1L, and their lymphocytes were found to be transformed in vitro in the presence of this protein several days before the appearance of the clinical signs. Passive transfer of the disease was performed with lymph node cells from donor guinea pigs immunized with P1L protein. EAN, the experimental model for the human disease Guillaain-Barré syndrome, was shown to be a transient disease and could be suppressed by the administration of hydrocortisone.

Animals

A simple fluorescent method to determine complement-mediated liposome immune lysis.

A simple inexpective method is described to study the kinetics of complement-mediated immune lysis of liposomes containing sheep red blood cell lipid antigens. It is based on the fact that trapping the fluorescent molecule 1-aminonaphthalene-3,6,8-trisulfonate and the dynamic quencher, alpha, alpha'-dipyridinium p-xylene dibromide within the liposome inner volume results in an extinguished fluorescence signal. On addition of helmolysin plus active complement, liposome lysis occurs. The exit of the fluorophore and quencher and their subsequent dilution in the external volume abolishes the quenching, resulting in a high fluorescence signal. The details of the method are described as well as the initial kinetic results.

1-Naphthylamine