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[The nature of the factors in immune lymph nodes that stimulate humoral and cellular immune reactions].

In the early period after antigen action, cells of the lymph node draining area of antigen injection produce a factor, which after its administration to intact mice, promotes intensified migration of myelopeptide producers in the bone marrow and increases bone marrow suppressor activity. Factor administration produced 2-3-fold increase in macrophage, peritoneal and lymph node count as compared with control, and 2-4-fold increase in humoral and cellular immune response. The factor consists of three easily identifiable components: Ig, MHC class II determinants and antigen determinants, that form unique complex similar to, or identical with the complexes detected in vivo within 3-6 hours after immunization in serum by other authors.

Animals

Infection-immunity in tularemia: specificity of cellular immunity.

The relationship between hypersensitivity and cellular resistance to infection with facultative intracellular parasites was studied in mice by using infection-immunity in tularemia as a model system. Delayed hypersensitivity to antigenic fractions of Francisella tularensis was first detected 6 to 7 days after immunization with viable F. tularensis vaccine, at which time immunity against challenge infection developed. Both immunity and delayed-type sensitivity reached maximal levels by 9 to 10 days. Immediate hypersensitivity occurred after immunization with both viable and nonviable tularemia vaccines but could not be correlated with resistance since nonviable antigens were not protective. Attempts to relate resistance to F. tularensis with nonspecific immunity factors were unsuccessful. Immunization of mice with BCG vaccine stimulated protection against infection with F. novicida and Salmonella typhimurium but provided no protection against infection with F. tularensis. Moreover, viable tularemia vaccine, while inducing marked protection against challenge with specific organisms, afforded no protection against infection with S. typhimurium or S. enteritidis. It is concluded that cellular immunity in tularemia involves an immunologically specific component.

Animals

A recombinant Leishmania chagasi antigen that stimulates cellular immune responses in infected mice.

Cellular immune mechanisms resulting in gamma interferon production are critical for protection against visceral leishmaniasis. Antigens stimulating T-cell responses are likely present in the intracellular amastigote form of the parasite, since this is the form found in a mammalian host. To identify T-cell antigens of Leishmania chagasi, the parasite causing South American visceral leishmaniasis, we used a double antibody-T-cell technique to screen an amastigote cDNA library. One cDNA selected (Lcr1) encodes an antigen that stimulated proliferation of splenic T lymphocytes from infected mice that were either resistant (C3H.HeJ) or susceptible (BALB/c) to L. chagasi infection. The Lcr1 cDNA contains four highly divergent 201-bp repeats homologous to the 204-bp repeat of a Trypanosoma cruzi flagellar antigen gene. Results are consistent with a single copy of the Lcr1 gene producing an mRNA of > 10 kb and a protein of > 200 kDa. Recombinant Lcr1, cloned adjacent to polyhistidine and purified on a nickel affinity column, stimulated gamma interferon but not interleukin-4 (IL-4), IL-5, or IL-10 secretion by T-cell-enriched splenocytes from either susceptible or resistant mice during L. chagasi infection. Immunization with Lcr1 partially protected BALB/c mice against challenge with L. chagasi, indicating the utility of the double screening approach in selecting relevant T-cell antigens.

Amino Acid Sequence

Cellular immunity in rheumatic heart disease.

Cellular immunity to non-specific antigens (PPD, Candida albicans, and streptococcal antigens) and mitogen (PHA) was investigated in patients with valvular heart disease of rheumatic origin. The result disclosed that lowered response in cellular immunity exists in these patients. The possible significance of this finding in occurrence of rheumatic activity was discussed.

Adult

Cellular immunity in current active pulmonary tuberculosis.

A group of 10 patients with recently diagnosed pulmonary TB were studied and compared to 10 bacillus Calmette-Guérin (BCG) immunized healthy individuals. Cellular immune mechanisms were explored in vitro utilizing fresh and precultured peripheral blood mononuclear cells exposed to PHA, PPD, and recall antigens (SK/SD and CA). Proliferative assays were also carried out in the presence of either each patient's serum (autologous serum) or cocultured with CD3(+)-depleted adherent cells. Serum measurements of soluble interleukin-2 (IL-2) receptor and synthesis of IL-2 generated by mononuclear cells stimulated with PPD and SK/SD were also performed. Patient sera were able to inhibit autologous as well as allogeneic cell responses, and a significant adherent cell suppressive effect was observed. As a whole the group of patients showed decreased blast transformation to PPD, preserved proliferative responses to other recall antigens, and a low PPD-induced generation of IL-2. Furthermore, as possible evidence of preactivated T cells, these patients demonstrated high soluble IL-2 receptor serum levels. Early compromise of specific cell-mediated immunity, including IL-2 abnormalities, may be of significance in newly diagnosed pulmonary TB.

Adult

[Cellular immunity in newborn infants with hyperbilirubinemia].

In order to identify the possibility of prenatal or perinatal bacterial contact with immunization of the cellular immunity system as underlying cause of the "idiopathic" newborn icterus (without blood group incompatibility) the lymphocyte transformation test with addition of streptolysin O or E. coli antigen was carried out in 68 newborns with a birth weight ranging between 1260 and 4200 g. The sensitization rate identified among the newborns with hyperbilirubinaemia did not differ significantly from those of the control group. Thus an ensured connection between a prenatal streptococcus or E. coli contact and the appearance of an idiopathic newborn hyperbilirubinaemia could not be established.

Antibodies, Bacterial

Apparent functional role for a cysteine-rich polydnavirus protein in suppression of the insect cellular immune response.

Polydnaviruses suppress the cellular immune response and inhibit growth and development in their lepidopteran host, allowing survival of their endoparasitic hymenopteran host. Characterization of genes disrupting insect physiological systems is a major objective in the study of polydnaviruses. Recently, a cysteine-rich gene family encoding a motif composed of invariable cysteine residues flanking hypervariable intercysteine amino acids was described (S.D. Dib-Hajj, B.A. Webb, and M.D. Summers, Proc. Natl. Acad. Sci. USA 90:3765-3769, 1993). They noted similarities to the positive selection pressure for mutations within the vertebrate major histocompatibility complex (MHC) class II genes and speculated that this class of polydnavirus genes may target and disrupt the insect immune system. To study the functional activity of this family of predicted cysteine-rich proteins, the VHv1.1 gene product was produced from bacterial and baculovirus expression systems. Polyclonal antiserum produced from the bacterial fusion protein reacted with a 30-kDa protein from hemocytes, cell-free plasma, and fat body of parasitized larvae. Immunofluorescence analysis of hemocytes from parasitized insects detected the 30-kDa protein bound to granulocytes and plasmacytes. To assay the functional activity of the 30-kDa VHv1.1 protein, a recombinant baculovirus was constructed allowing in vivo expression of the 30-kDa polydnavirus protein from infected insects. Expression of the VHv1.1 protein from the baculovirus system reduced the encapsulation response to washed wasp eggs relative to controls. The experimental evidence demonstrates that Campoletis sonorensis polydnavirus-infected cells secrete VHv1.1 into the hemolymph, where it binds to hemocytes and is associated with the inhibition of the cellular immune response.

Animals

[Effects of levamisole in the treatment of a group of patients with atopic asthma and depression cellular immunity].

We investigated the possibility of decreased cellular immunity (C.I.) in a substantial group of atopic asthmatic patients with respiratory tract infections during autumn and winter. Two-hundred and ten atopic asthmatic patients were selected, and the following tests for cellular immunity were performed. Skin tests with 11 bacterial and fungal antigens. Normal average value of the skin reactions is 2.5 mm. E rosettes with sheep erythrocytes. Normal value for patients of this age is 60 +/- 8%. Immunoglobulins A, G and M and complement fractions C3 and C4 were determined by radial immunodiffusion. IgE was determined using PRIST (Phadebas, Pharmacia). IgE was elevated in all except two of the patients. IgG, IgA and IgM, C3 and C4 were normal. Twenty five of the 85 patients had some depression in cellular immunity (decreased E rosettes and/or decreased skin reactions). Patients with depressed cellular immunity were given 2.5 mg Levamisol three times a week for three months. Their progress was evaluated clinically and immunologically and a positive correlation was found between clinical improvement and increased C.I. in 18 of the 25 patients. We consider Levamisol to be useful in approximately 8.5% of all asthmatic patients.

Adolescent

Cellular immunity in chronic Chagas' disease.

The cellular immune response was assessed in 20 patients with chronic Chagas' disease (American trypanosomiasis). Thymus-derived lymphocyte function was determined in vivo by cutaneous reactivity to several antigens including a soluble preparation derived from Trypanosoma cruzi and sensitization to 2,4-dinitrochlorobenzene. The in vitro T-cell reactivity was investigated by the proliferative response to phytohemagglutinin and to T. cruzi antigen and by inhibition of leukocyte migration with the specific antigen. In addition, the proportion and absolute numbers of peripheral blood T and B-lymphocytes were determined by rosette formation. This research indicates that the general and specific cellular immune response, evaluated by the tests herein mentioned, is well preserved in patients, with Chagas' disease. We conclude that chronic Chagas' disease is not associated with deficiency in cellular immunity, nor does it lead to it. Conceivably, the active participation of delayed hypersensitivity may play an important role in the expression of the human chagasic lesions.

Adult

Expermental salmonellosis. XI. Induction of cellular immunity and formation of antibody by transfer agent of mouse mononuclear phagocytes.

When mice were injected intraperitoneally with a ribonucleic acid (RNA) preparation extracted from the peritoneal mononuclear phagocytes (termed monocytes) of immunized mice, these macrophages developed cellular immunity and cellular antibodies. The peritoneal monocytes were obtained from normal mice and maintained in tissue culture bottles in a homogeneous cell population. When they were treated in vitro with an immune RNA preparation, they acquired cellular immunity, and cellular antibodies were detectable in such monocytes. These results suggest that the mononuclear phagocytic cell line constitutes a cell line responsible for antibody formation.

Animals

HCMV envelope antigens induce both humoral and cellular immunity in guinea pigs.

Antibody and cellular immunity were measured in guinea pigs immunized with whole virion, with nucleocapsids of human cytomegalovirus or with solubilized antigens containing virus envelope proteins. All the three types of immunogens induced the production of humoral antibody as well as cytomegalovirus (CMV)-specific cellular immunity. In immunization experiments envelope antigen was as effective as immunization with whole virion.

Animals

The mediator of cellular immunity. IX. The relationship between cellular hypersensitivity and acquired cellular resistance in rats infected with Listeria monocytogenes.

Acquired resistance to the intracellular bacterial parasite, Listeria monocytogenes can be transferred to normal recipients by thoracic duct lymphocytes or peritoneal exudate cells obtained from rats infected with this organism; The appearance of protective cells in thoracic duct lymph coincides with the development in the donors of delayed-type hypersensitivity to Listeria antigens and accumulation in induced peritoneal exudates of cells which are responsive to these antigens in the migration inhibitory factor (MIF) assay. The cells in exudates that confer protection, and those that release MIF, arise at sites remote from their final destination. From their point of origin in the caudal lymph nodes of infected rats, cells with these properties are delivered to the thoracic duct and hence to the blood from where they are drawn into the peritoneal cavity in response to inflammation. The parallel observed in the appearance, increase and subsequent decline of protective lymphocytes and MIF-producing cells in exudates suggest that the two activities are mediated by a single line of T cells. However this may be, the development and deployment of the cells concerned encourages the belief that MIF has a meaningful role in the expression of cellular resistance to infection.

Animals

[Cellular immunity in poxvirus infections. Demonstration, significance and cellular cross reactivity with brain matter].

Its proof, significance, and the cellular cross reactivity to basic encephalitogenic protein of vaccinia-stimulated T-cells. Vaccination against smallpox induces both, a cellular allergy and immunity, and the production of humoral antibodies. Of greater importance for the defense of the organism against infections by orthopox viruses is the cellular immunity. New methods for the proof of cellular immunity and an in vitro-technique for its examination by challange with variola vera virus are described. In close connection with induction of cellular allergy by vaccination an immunological cell-bound reactivity of isolated lymphocytes develops against the basic encephalitogenic protein. In this antigen-stimulated resp.-irritated stage isolated lymphocytes show an enhanced rate of chromosomal aberrations and a high rate of spontaneous transformations. Lymphocytes of patients with Multiple Sclerosis demonstrate a high stimulation rate (3H- resp. 14C-Thymidine-inlay) after challenge with antigen of vaccinia virus. The T cell-mediated cross reactivity between vaccinia and myelin extracts is discussed as an hypothetic pathogenic factor of CNS complications after primary smallpox vaccination.

Antigen-Antibody Reactions

Decreased cellular immune response of germ-free mice.

Cellular immune response to intracerebral lymphocytic choriomeningitis infection was studied in mice belonging to an identical strain but different in breeding conditions. In consequence of the cellular immune reaction on the leptomeninx, lymphocytic choriomeningitis developed and caused death in 100% of conventionally bred mice, whereas 80% of germ-free and 15% of mouse-pathogen-free mice failed to display lymphocytic infiltration of the leptomeninx and survived the infection as chronic virus carriers. This finding pointed to a deficient cellular immune response of germ-free and mouse-pathogen-free mice. The under-development of the lymphoid system due to the antigen-poor breeding conditions might be responsible for the deficiency.

Animals

Early wound excision and skin grafting restores cellular immunity after severe burn trauma.

Suppression of cellular immunity following thermal injury may contribute to the high incidence of postburn sepsis. Early excision and skin grafting may remove deleterious local wound factors and prevent immunosuppression. The effect on cellular immunity of early burn wound excision and skin grafting was investigated in an animal model using female Wistar rats. The development of immunosuppression shortly after burn injury was shown by popliteal lymph node assay and a 2,4-dinitrofluorobenzene skin reaction test. Excision and skin grafting 2 days after burn trauma restored parameters to normal. Burned tissue suppresses cellular immunity; this effect is preventable by early excision and skin grafting.

Animals

Assessment of cellular immune response to cancer of the breast.

Cellular immune competence and cell-mediated immunity to tumor antigens have been studied in patients with breast cancer. Some patients have been shown to have depressed lymphoproliferative responses to phytohemagglutinin and in mixed leukocyte culture. In some cases, this depression appeared attributable to suppressor cells. Many patients with breast cancer had a cellular immunity to extracts of autologous or allogenetic tumors, as detected by lymphoproliferation and leukocyte migration inhibition assays. In addition, some breast cancer patients reacted to antigens associated with murine mammary tumor virus. Some of the tests for cellular immunity have revealed correlations with clinical course and, therefore, may be of use in the management of patients with breast cancer.

Antigens, Neoplasm

Enkephalin-induced stimulation of humoral and cellular immune reactions in aged rats.

Twenty-month-old Wistar rats received intraperitoneal injections of the opioid pentapeptide, methionine-enkephalin (Met-Enk) in periods before and after immunization with cellular and soluble antigens. Animals were treated with 0.2 mg of Met-Enk/kg b.w., a dose previously found to increase immune capacity in young adult rats. Saline-treated 20-month-old, and Met-Enk-treated rats and saline-treated 8-week-old controls were set up for each experimental group. Immune performance was evaluated by plaque-forming cell response, antibody production and various immunoinflammatory reactions. At autopsy, thymus and spleen were weighed and processed for histological examination. The results showed that 0.2 mg dose of Met-Enk produced significant enhancement of both humoral and cellular immune responses in senescent rats. Methionine-enkephalin treatment also induced a significant increase in thymus and spleen weights in these animals. Analysis of the cellular make up of these organs revealed the enlargement of cortical and medullary areas, and pronounced pyroninophilia in the subcortical zone of the thymus and thymus-dependent areas of the spleen. The results suggest that Met-Enk exerts an immunorestorative activity in aged animals, and that changes in the opioid system may play an important role in the maintenance of immune functions during senescence.

Aging