Search PubMed⌕ Search

Biomedical subjects

C Garzelli

Publications and source records attributed to C Garzelli.

At least 55 records · Page 3Linked to original sources

Fr-MLV infection induces erythroleukaemia instead of lymphoid leukaemia in mice given pituitary grafts.

Here we report that the slow-transforming helper component of Friend murine leukaemia virus (Fr-MLV), which produces lymphoid leukaemias in normal mice, induces erythroleukaemia in mice given syngeneic pituitary grafts (SPG). Newborn mice were infected with Fr-MLV and, at one month of age, were transplanted with two pituitary glands under the kidney capsule. Sham-operated infected mice and uninfected transplanted mice served as controls. SPG selectively reduced the mean survival times of infected mice. Histopathology showed that, while most infected non-transplanted mice developed lymphoid leukaemias, virtually all Fr-MLF-infected mice given SPG developed erythroleukaemias. Experiments in vitro showed that Fr-MLV infection markedly depressed concanavalin A induced DNA synthesis in cells from spleen, thymus and lymph nodes. Addition of prolactin or growth hormone further suppressed lectin-induced mitogenesis of lymphoid cells from infected mice, but failed to influence the response of uninfected controls. These experiments indicate that, in mice, pituitary hormones modulate the development and the histological features of Fr-MLV induced leukaemias, and suggest that endocrine-immunological interactions play a role in retrovirus induced tumorigenesis.

Animals↗

A simple method for the biochemical purification of Ro/SS-A antigen.

In the present study, Ro/SS-A antigen has been isolated from human spleen by a two-step procedure. In the first step most of the non-antigenic material was removed by means of ammonium sulphate precipitation and ion exchange chromatography. The final purification was obtained by passing the Ro/SS-A-containing fractions twice through a Mono Q ion exchange fast protein liquid chromatography (FPLC) column. The purified antigen showed identical immunoreactivity with crude material on CIE and was composed of two polypeptides with a molecular weight of approximately 60,000 and 55,000 respectively on SDS-PAGE, both reacting on Western blotting with a panel of anti-Ro/SS-A antisera. This system permits milligrams of highly purified antigen to be obtained from grams of human spleen.

Autoantigens↗

A human monoclonal autoantibody isolated from a patient with infectious mononucleosis reactive with both self antigens and Epstein-Barr virus nuclear antigen (EBNA).

In order to investigate the mechanism(s) by which Epstein-Barr virus (EBV) induces the outcome of autoantibodies during infectious mononucleosis (IM), a human IgM (k) monoclonal antibody to cytoskeletal filaments of epithelial cells has been prepared by EBV transformation of peripheral blood B lymphocytes obtained from a patient with IM. The antibody was also found to react with smooth muscle of frozen sections of human stomach tissue by immunofluorescence, and with the Epstein-Barr nuclear antigen (EBNA) by an enzyme-linked immunosorbent assay. These findings demonstrate at the clonal level the epitope homology between host's cell antigens and EBV-encoded nuclear antigen, which might have relevance in EBV-induced autoimmunity.

Antibodies, Monoclonal↗

Epstein-Barr virus-transformed human B lymphocytes endocytose autologous and heterologous red blood cells.

Epstein-Barr virus (EBV)-transformed B lymphocytes, either isolated from a patient with EBV-induced infectious mononucleosis or obtained by in vitro infection of B lymphocytes of donors in different clinical conditions, have been tested for the ability to endocytose particulate forms of antigens, such as human, sheep or mouse red blood cells. By light and electron microscopy, it has been found that EBV-transformed B cells are able to bind and internalize human autologous and allogeneic erythrocytes, as well as sheep and mouse erythrocytes, independent of the specificity of the secreted immunoglobulins. The ability of EBV-transformed B lymphocytes to endocytose and process particulate forms of autoantigens during infectious mononucleosis might have a role both in the production of heterophile antibodies and in EBV-induced autoimmunity.

Animals↗

Mechanisms other than polyclonal B cell activation possibly involved in Epstein-Barr virus-induced autoimmunity.

In order to verify whether Epstein-Barr virus (EBV)-induced polyclonal B cell activation is the major cause of autoimmunity during infectious mononucleosis (IM), we have investigated, by immunoblotting, the fine specificity of anti-smooth muscle autoantibodies (autoAbs) in the sera of IM patients. Furthermore, we have isolated a number of in vivo infected EBV-positive cell lines from a patient with IM and compared the reactivity of the secreted immunoglobulins (Igs) with that of serum autoAbs. The reactivity of anti-smooth muscle autoAbs was found to be closely restricted to three proteins of approximate molecular weights 54, 52 and 48 kD. Furthermore, none of 48 EBV-positive B cell lines shared any reactivity with serum autoantibodies. Taken together, these results suggest that EBV-induced autoimmunity is not a consequence of a random activation of B cells, but a specific phenomenon, requiring mechanisms other than polyclonal B cell activation.

Antibody Specificity↗

Interleukin-1-like activity produced by hybrids constructed with Epstein-Barr-virus-transformed human B lymphocytes and mouse myeloma cells.

Peripheral blood B lymphocytes from a donor with positive tuberculin skin test reaction were transformed into lymphoblastoid cell lines by Epstein-Barr virus and then fused by polyethylene glycol with mouse myeloma cells. Human-mouse hybrid cells producing human IgM monoclonal antibody to purified protein derivative of tuberculin were isolated, and the concentrated supernatant of one of these cell hybrids was tested for the capacity of interfering with DNA synthesis of human and mouse lymphocytes. The hybrid cell supernatant was found to contain soluble factors that increased DNA synthesis in unstimulated human and mouse lymphocytes and that, conversely, decreased DNA synthesis in concanavalin-A-stimulated cells. Gel filtration experiments showed that these antagonistic activities were due to at least two different factors, one of which resembled human interleukin-1 in biochemical and biological properties.

Animals↗

Virus-induced thyroiditis.

Mice infected with reovirus type 1 developed a mild thyroiditis characterized by focal destruction of acinar tissue, infiltration of inflammatory cells, and autoantibodies to thyroglobulin and microsomal antigens. Thyroid involvement appears to be part of a more generalized virus-induced polyendocrine disease.

Animals↗

Multiple organ-reactivity of monoclonal autoantibodies to mouse erythrocytes.

Autoantibodies reacting with bromelain-treated autologous mouse red blood cells (Br-MRBC) are spontaneously produced by normal mice. In order to understand the biological significance of these autoantibodies, anti-Br-MRBC monoclonal autoantibodies have been prepared and studied for reactivity with a panel of frozen tissue sections from organs of normal mice by direct immunofluorescence. It has been found that the anti-Br-MRBC monoclonal autoantibodies are polyspecific, since they react with cells in multiple organs.

Animals↗

Epstein-Barr virus-transformed B cells process and present Mycobacterium tuberculosis particulate antigens to T-cell clones.

We have analyzed the presentation of mycobacterial antigens by Epstein-Barr virus-transformed human B (EBV-B) cells to mycobacteria-specific T-cell clones and lines, and to purified resting T cells. EBV-B cells were able to process and present not only soluble forms of antigen, such as PPD and the expressate preparation of M. tuberculosis strain H37Rv, but also particulate forms of antigen, such as whole mycobacterial H37Rv or M. bovis organisms. Electron microscopy studies demonstrated the capacity of EBV-B cells to phagocytose mycobacterial cells in 18 hr and pulsing experiments confirmed that an 18-hr of incubation is required for an efficient processing and presentation of mycobacterial determinants to T cells. The processing of whole-H37Rv particulate antigen by EBV-B cells was inhibited by the lysosomotrophic compound chloroquine and by high doses of irradiation. Finally, the analysis of the presentation of soluble and particulate mycobacterial antigens by PPD-positive and PPD-negative EBV-B cell clones has shown a preferential presentation of both forms of antigen by PPD-positive EBV-B clones.

Antigen-Presenting Cells↗

Human monoclonal antibody to purified protein derivative of tuberculin produced by hybrids constructed with Epstein-Barr virus-transformed B lymphocytes and mouse myeloma cells.

A method of producing human monoclonal antibody by combining somatic cell hybridization technology with the capability of Epstein-Barr virus (EBV) to transform human B lymphocytes is described. Peripheral blood lymphocytes from a donor with positive tuberculin skin test reaction were transformed by EBV and then tested for antibody production to mycobacterial purified protein derivative (PPD) by an enzyme-linked immunosorbent assay. Two EBV-transformed lymphoblastoid cell lines making IgM antibodies to PPD were obtained. One of these cell lines was fused by polyethylene glycol with a murine hypoxanthine-guanine phosphoribosyl transferase-deficient myeloma cell line that had been selected for resistance to ouabain. The human-mouse hybrids were selected in ouabain-containing HAT medium and 11 heterohybridomas producing IgM antibody to PPD were obtained. One of these was cloned by limiting dilution with efficiency at least 20-fold higher than parent EBV-transformed cell line. Heterohybridoma subclones reached levels of IgM antibody as high as 75.0 micrograms/ml of culture medium, whereas IgM production of EBV-transformed B cell clones ranged between 3.0 and 4.0 micrograms/ml.

Animals↗

Human monoclonal autoantibodies that react with both pancreatic islets and thyroid.

Transformation of human peripheral blood lymphocytes with Epstein-Barr virus and rapid screening on rat insulinoma cells by an enzyme-linked immunosorbent assay were used to identify monoclonal autoantibodies that reacted with human pancreatic islets. Six such monoclonal autoantibodies were isolated and cloned. All six also were found to react with human thyroid. It is concluded that lymphocytes able to make autoantibodies that react with both the pancreas and thyroid are common in the human B cell repertoire.

Animals↗

Role of antecedent mumps and reovirus infections on the development of type 1 (insulin-dependent) diabetes.

Type 1 diabetes mellitus is thought to derive from organ-specific autoimmune reactions, probably triggered by environmental factors. In view of the possible involvement of mumps virus and reoviruses in the pathogenesis of autoimmune endocrine disease, serum antibody levels to these viruses were measured in newly-diagnosed diabetic patients aged 5 to 25 years and in matched control subjects. Diabetic patients showed a significantly lower prevalence and reduced titers of antibodies to mumps and reoviruses. By contrast, the antibody response to measles virus (a non-diabetogenic agent) was remarkably similar in the two groups. It is suggested that individuals with an impaired humoral response to some viral agents are at increased risk of developing diabetes when exposed to pancreotropic viruses.

Adolescent↗

Epstein-Barr virus-transformed lymphocytes produce monoclonal autoantibodies that react with antigens in multiple organs.

Peripheral blood lymphocytes from normal individuals and patients with autoimmune abnormalities such as insulin-dependent diabetes mellitus and thyroiditis were infected with Epstein-Barr virus, and the culture supernatants were tested for autoantibodies that reacted with normal tissues. Between 58 and 86% of Epstein-Barr virus-transformed cultures produced immunoglobulin M antibodies, and between 9 and 24% of the transformed cultures produced immunoglobulin G antibodies that reacted with normal tissues. Ten Epstein-Barr virus-transformed clones secreting human immunoglobulin M monoclonal autoantibodies were isolated. Four of these monoclonal autoantibodies were studied in depth and found to react with antigens in multiple organs, including thyroid, pancreas, stomach, smooth muscle, and nerves. It is concluded that Epstein-Barr virus can trigger the production of autoantibodies without infecting the target cells to which the autoantibodies are directed.

Animals↗

The binding of insulin to mouse leucocytes during viral infections.

The effect of viral infections on insulin binding in vivo was evaluated by measuring the binding of 125I-insulin to several different tissues. We found that splenic leucocytes from mice infected with either the diabetogenic (D) or non-diabetogenic (B) variants of encephalomyocarditis virus, herpes simplex virus, or lactic dehydrogenase virus showed up to a 130% increase in insulin binding. As much as a 300% increase in the binding of 125I-insulin to splenic leucocytes was observed in mice given bacterial lipopolysaccharide. In neither virus-infected nor lipopolysaccharide-treated mice was there any substantial change in insulin receptors on thymocytes, liver membranes, or peripheral erythrocytes. Thus, the increased binding of insulin appears to be limited to leucocytes and does not appear to represent a generalized metabolic alteration. These experiments suggest that during infection, the binding of insulin to leucocytes, which is widely used to measure insulin receptors, may not always accurately reflect the insulin receptor status of other tissues.

Animals↗

Auto-anti-idiotypic antibodies inhibit T-cell-mediated hypersensitivity in BCG-infected mice.

It is shown that serum from mice heavily infected with BCG contains antibodies which block the cell transfer of delayed-type hypersensitivity (DTH) to purified protein derivative (PPD) when BCG-immune cells were preincubated in it. This suppressive activity is antigen specific in that the serum does not block the cell transfer of contact sensitivity to oxazolone. However, the suppressive activity is not antigen directed in that it is absorbed neither by PPD-coupled Sepharose beads nor by PPD-pulsed normal peritoneal exudate cells. On the other hand, the activity can be absorbed to BCG-immune T cells and eluted from a Sepharose column conjugated with affinity-purified mouse anti-PPD antibodies. The possibility that antireceptor antibodies arise during the BCG infection and regulate DTH reaction is discussed.

Animals↗

Regulation of the development of plaque-forming cells to bromelain-treated syngeneic mouse erythrocytes in bone marrow cell cultures.

The development of plaque-forming cells (PFC) to bromelain-treated syngeneic mouse red blood cells (Br-MRBC) was studied in bone marrow cell (BMC) cultures. It was found that the number of marrow PFC to Br-MRBC does not show the typical spontaneous increase observed in spleen cell (SPC), or peritoneal cell (PC) cultures. The number of anti-Br-MRBC PFC was markedly increased by lipopolysaccharide (LPS), even in conditions in which cell proliferation was blocked by mitomycin C, suggesting the presence of high numbers of Br-MRBC-specific precursor cells, potentially capable of differentiating into autoantibody-producing cells, in the marrow. Moreover, the low levels of anti-Br-MRBC PFC were further reduced in the presence of concanavalin A (Con A). The addition of Con A-activated BMC to BMC, SPC, or PC cultures actively suppressed the development of anti-Br-MRBC PFC. Con A-activated BM suppressor cells were found to be Thy 1.2-negative, Ig-negative, nonadherent cells. A possible role for the BM suppressor cell in tolerance to self antigens is discussed.

Animals↗

Enhancement of the spontaneous development of autoreactive B cells by PPD in mouse peritoneal cell cultures.

The effect of tuberculin purified protein derivative (PPD) on the development of plaque-forming cells (PFC) against bromelain-treated syngeneic mouse red blood cells (Br-MRBC) was studied in peritoneal cell cultures. The finding that PPD enhances the development of PFC to Br-MRBC, even under conditions where cell division is blocked by mitomycin C treatment, suggests that cell proliferation does not represent a necessary prerequisite for differentiation of precursor cells into autoantibody-forming cells.

Animals↗