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Biomedical subjects

M Cohn

Publications and source records attributed to M Cohn.

At least 181 records · Page 10Linked to original sources

Fibrinogen survival in cirrhosis: improvement by "low dose" heparin.

The effect of "low dose" heparin therapy on fibrinogen survival in patients with cirrhosis was studied in six patients. Survival of I-125 radiolabeled fibrinogen was measured using both autologous and homologous material. Average fibrinogen half-life before heparin therapy was 52 hours and after 3000 units of intravenous heparin every 6 hours was 101.8 hours. Median survival before heparin therapy was 56 hours and after therapy was 91 hours. In every instance fibrinogen survival was improved by heparin administration. These data indicate that "low dose" heparin improves fibrinogen survival in cirrhosis and suggest that disseminated intravascular coagulation is a primary process in the defibrination syndrome associated with cirrhosis.

Disseminated Intravascular Coagulation

Reticulum cell sarcoma: an effector cell in antibody-dependent cell-mediated immunity.

A transplantable, murine reticulum cell sarcoma is described which exhibits the cytologic, adherence, and phagocytic properties of macrophages. It forms specific rosettes with erythrocytes in the presence of the corresponding anti-serum. The ascites cells mediate antibody-dependent cellular immunity as assayed by release of radioactivity from 51Cr-labeled erythrocytes. The contribution of contaminating host cells in the cytotoxic reaction was ruled out by growing the tumor in F1 mice and removing the host cells by anti-H2 serum and complement. The tumor cells have receptors for IgG2a and IgG2b immunoglobulins. The availability of a pure population of effector cells in the immune system allows study of the biochemical processes pursuant to lysis of foreign cells.

Animals

Cytotoxic effects of antigen- and mitogen-induced T cells on various targets.

Mitogen-induced cytotoxicity was studied by culturing mouse spleen cells with an optimum mitogenic dose of concanavalin A (Con A) for 2 days and, after washing, assessing their ability to lyse tumor targets. We show that rapid lysis occurs only when the correct concentration of an agglutinating mitogen (phytohemagglutinin P (PHA) or Con A) is present in the assay. PHA is more efficient than Con A in revealing the cytotoxic effect. The Con A-induced effector cytotoxic cell is shown to be sensitive to anti-theta serum and complement. Cytotoxic T cells were also induced by H-2 different allo-immunization. These effector cells specifically lyse targets which bear the immunizing H-2 antigens in the absence of PHA. When PHA is present in the assay, they will also lyse syngeneic tumor targets nonspecifically. Since not all dividing T cells (e.g., T lymphomas, and T blasts induced by M locus different, H-2 similar mixed lymphocyte culture) lyse PHA-P815, we propose that this assay measures only a subset of effector T cells, namely, cytotoxic T cells, regardless of their antigen specificity. The tumor cells, P815 and EL4, are sensitive both to antigen-specific T cell-mediated lysis in the absence of PHA and to nonspecific, PHA-revealed lysis. Small lymphocytes, T cell blasts, and B cell blasts are sensitive to lysis by T cells which are directed against H-2 antigens on their surface, but are not very susceptible to nonspecific T cell lysis in the presence of PHA. The reason for this difference in susceptibility of tumor and normal cells to PHA-revealed nonspecific T cell lysis is not known but may have some relevance to in vivo tumor rejection.

Animals

Effects of phentolamine on dibutyryl cyclic AMP and norepinephrine in rats anesthetized with amobarbital.

In vitro evidence demonstrated that norepinephrine (NE) increased endogenous levels of cyclic AMP in brain tissue. In vivo findings showed that in rats anesthetized with amobarbital, NE certrally administered prolonged narcosis whereas exogenous dibutyryl cyclic AMP shortened it. Phentolamine, an alpha adrenergic receptor inhibitor, administered centrally prolonged narcosis but did block all symptomatology accompanying its administration. Phentolamine added to dibutyryl cyclic AMP dose-relatedly antagonized the shortening of the duration of narcosis. Such ovservations suggest that whereas the inhibitory action of phentolamine affects NE at the alpha adrenergic receptor site, it antagonizes cyclic AMP at other sites as well.

Amobarbital

The effect of 2-mercaptoethanol on murine mixed lymphocyte cultures.

Mouse spleen cells which have been depleted of adherent cells do not respond to allogeneic lymphocytes in vitro. Their cytotoxic response can be restored by inclusion of mercaptoethanol in the medium. Mercaptoethanol is shown to have a stimulatory effect also on the response of normal (unseparated) spleen cells to alloantigens. The enhancement of the DNA-synthetic and cytotoxic response is similar, varying from 3.5-15-fold. Cytotoxic cells also appear in unmixed lymphocyte cultures in the presence of mercaptoethanol and fetal calf serum. The specificity of these background cytotoxic cells is not known.

Animals

Immunoglobulin structure: amino terminal sequences of mouse myeloma proteins that bind phosphorylcholine.

The amino terminal sequences of five light and heavy immunoglobulin chains from myeloma proteins of the BALB/c mouse with binding activity to phosphorylcholine are presented. Except for a single substitution in position 4, all five heavy chains have identical amino terminal sequences through the first hypervariable region. Proteins which share unique (idiotypic) antigenic determinants are identical through the first hypervariable region of their light and heavy chains. Proteins with differing idiotypic determinants have light chains of differing amino acid sequence. These observations suggest that the heavy chain plays a more important role than the light chain in determining the phosphorylcholine binding site.

Amino Acid Sequence

Functional characteristics of Peyer's patch lymphoid cells. II. Lipopolysaccharide is thymus dependent.

This study shows that LPS is not mitogenic in cultures containing B cells, or B cells and accessory adherent cells or ME, unless T cells are present. This observation rules out models of induction of antibody synthesis in which it is assumed that the delivery of a mitogenic signal by the interaction of LPS with the membrane of the B cell is in itself sufficient for B-cell induction (19). Further, it makes unlikely the proposed extrapolation of such a model to other so-called thymus-independent antigens, e.g., PVP, levan, dextran, and SIII (19). The mitogenic action of LPS appears to be due to its ability to complete an inductive stimulus to B cells (13). We interpret the observed thymus dependence of the B-cell response to LPS in light of a model in which two signals are obligatory for B-cell induction (14). The first signal in the inductive pathway is delivered to the antigen-sensitive cell via a conformational change in the receptor upon interaction with antigen. The second signal is delivered via the thymus-derived cooperating system. Since LPS can induce immune responses to both immunogenic and nonimmunogenic ligands (9-13) we envision that one signal is delivered to the B cell via specific binding of the ligand to the B-cell antigen receptor, while a second signal is delivered as a result of T-cell cooperation via membrane-bound LPS. This has been termed abnormal induction (20). In this example LPS is the foreign membrane-bound determinant in question although histocompatibility antigens (21, 22), viral determinants, or surface bound lectins could act similarly. In light of the above model, one observation should be pointed out. LPS inhibits the induction of a SRBC response in normal Peyer's patch cells to which adherent cells or ME is added. This inhibition appears to be a T-cell-mediated effect because it is abolished by partial depletion of the T-cell population by antitheta treatment. Since the induction of IgM producing PFC is being measured, the T-cell-dependent LPS inhibition could act either (a) by induction of T-cell "suppression" (23, 24) of the normal cooperating system required for a SRBC response, or (b) by the induction of such high levels of cooperating function (13) as to be inhibitory to a SRBC IgM response. Our observations contrast sharply with prior reports which describe LPS as a thymus-independent antigen (2-4) and a B-cell mitogen (5-8) capable of stimulating immune responses in the absence of T-cell cooperation (2-12). This demonstration of the thymus dependence of LPS stimulation has been possible because Peyer's patches from congenitally athymic (nude) mice are functionally a highly purified B-cell population devoid of T cells and accessory adherent cells. In this respect, earlier studies relied on nude spleen cultures and spleen cultures from thymectomized, lethally irradiated, and bone marrow-reconstituted mice (3, 4, 6-13). These spleen cultures which contain B cells and accessory adherent cells are recognized to be deficient but not devoid of the thymus-derived contribution to the inductive stimulus (12, 13). It could be argued that the presence of T cells and adherent cells is in fact required for the antigen-specific effect and not for the LPS effect. However, this is unlikely since our experiments show that LPS is not directly mitogenic for B cells and does not stimulate background anti-SRBC PFC. It seems unlikely that Peyer's patch antigen-sensitive cells differ from antigen-sensitive cells in the spleen in their mechanism of induction. We have shown that Peyer's patch B cells can be specifically induced by antigen, and Peyer's patch T cells mediate cooperating and killer functions. Alternately, the possibility that Peyer's patch B cells were not stimulated by LPS as a result of prior cryptic exposure to LPS (13) in the intestinal tract was excluded since cultures containing B cells, T cells, and adherent cells or ME were stimulated to DNA synthesis by LPS. The reason that certain antigens appear to be thymus independent may be that their repeating polymeric nature permits inductive interactions at very low levels of thymus-derived cooperation (see reference 20 for quantitative considerations). It has been stated that the inductive properties of all thymus-independent antigens are directly related to their ability to act as B-cell mitogens (19). The observation that LPS is thymus dependent for its B-cell mitogenic activity makes us question the thymus independence of any antigen.

Animals

Immunochemical analysis of the idiotypes of mouse myeloma proteins with specificity for levan or dextran.

This paper deals solely with idiotypic determinants, the configurations of which are modified when the antibody bearing them interacts with its ligand. This phenomenon is measured as an inhibition of the reaction between anti-idiotype and idiotype. Two points are made: (a) The assay for ligand-modifiable determinants can be used to determine the "size" of the combining site. This is illustrated here with the anti-alpha(1 --> 6) dextran mouse myeloma immunoglobulin W3129. Whether the interaction between a homologous series of alpha(1 --> 6) oligosaccharide ligands and the combining site of W3129 is measured by inhibition of precipitation with alpha(1 --> 6) dextran (4) or of binding of W3129 to anti-W3129 idiotype, the finding is the same. The order of inhibition is isomaltohexaose = isomaltopentaose >> isomaltotetraose > isomaltotriose >>> isomaltose. The combining site is optimally complementary to isomaltopentaose. (b) Cross-idiotypic specificity is closely correlated with cross-combining specificity; the converse is not true. This is illustrated here with three groups of mouse myeloma immunoglobulin, each specific for alpha(1 --> 3) dextran, alpha(1 -->6) dextran, beta(2 --> 1) or beta(2 --> 6) levan. If a given anti-idiotypic serum cross-reacted with several myeloma proteins, they always had similar combining specificity. Thus the three proteins, J558, MOPC 104E, and UPC 102, which cross-react with anti-J558 have combining specificity for alpha(1 --> 3) dextran; cross-reacting W3082, UPC 61, and Y5476 have specificity for levan; and cross-reacting W3129 and W3434 have specificity for alpha(1 --> 6) dextran. This extends previous studies with proteins specific for phosphorylcholine (7) or gamma-globulin (8). As expected, the converse is not true, for proteins may have combining specificity for alpha(1 --> 6) dextran e.g. QUPC 52, or levan e.g. J606, UPC 10 and yet not carry the above-mentioned reference idiotypes. The correlation between cross-idiotypic and combining specificity breaks down when idiotypic determinants which are not modifiable by ligand are studied. The implications of this are pointed out since most investigations deal with ligand-nonmodifiable determinants.

Animals

Mouse immunoglobulin heavy chains are coded by multiple germ line variable region genes.

The N-terminal 20 residues of 13 heavy immunoglobulin chains from myeloma protein of the BALB/c mouse are compared with the same residues of 15 other heavy chains described in the literature. Sixteen of 28 sequences are different from one another. These proteins fall into four major sets, with 18 of the proteins in the largest set being further divisible into at least five subsets. This pattern of diversity suggests there are at least eight germ line genes coding for the variable regions of mouse heavy chain. Many of the immunoglobulins from which these heavy chains are derived exhibit binding activity for various haptens. The differing hapten specificities are closely correlated with distinct primary amino-acid sequences.

Amino Acid Sequence