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Cellular interactions in the adoptive transfer of contact sensitivity: characterization of an antigen-nonspecific Vicia villosa-adherent T cell needed for adoptive transfer into naive recipients.

The adoptive transfer of delayed-type hypersensitivity (DTH) into naive recipients requires the interaction of two functionally distinct Ly-1+ T cells: and I-J- cell effector cell for DTH which transfers antigen-specific DTH only into animals whose suppressive mechanisms have been compromised, and and I-J+ cell which alone never transfers DTH but allows the transfer of DTH by the I-J- DTH effector cell into naive animals. We investigated the phenotypic and functional characteristics of the cell which "protects" the I-J- DTH effector cell from host suppressive mechanisms and allows the transfer of DTH into naive recipients. This cell was found to express the cell surface phenotype Lyt-1+,2-, L3T4+, and I-J+, and, in contrast to the I-J- DTH effector cell, was found to be adherent to the lectin Vicia villosa (VV). These cells routinely are found in the spleens of both immune or naive animals, and regardless of their origin are antigen-nonspecific in their functional activity in that they complement VV-nonadherent cells to transfer DTH responses of both TNP and oxazolone-primed cells. Treatment of recipient mice with cyclophosphamide (to remove host suppressor mechanisms) or Bordetella pertussis vaccine (which stimulates splenic T cells to circulate) abrogates the need for these cells in the transfer population, whereas treatment of donor mice with B. pertussis functionally depletes these cells from splenic T cell populations. Therefore, it appears that in the adoptive transfer of DTH responses, the antigen-specific I-J- VV-nonadherent cell requires an I-J+ VV-adherent cell in the circulation to overcome host suppressive mechanisms. The importance of these I-J+ cells in DTH responses is discussed.

Animals

Electrophysiological investigations in adoptively transferred experimental autoimmune encephalomyelitis in the Lewis rat.

Lewis rats with experimental autoimmune encephalomyelitis transferred adoptively with myelin basic protein-specific T line cells (AT-EAE) were studied clinically, electrophysiologically, and histologically. Injection with 5 x 10(6) line cells induced EAE with a rapidly developing tetraplegia after a latent period of 4 days. Electrophysiological testing revealed a profound slowing of afferent conduction within the dorsal column of the spinal cord, and conduction abnormalities in the spinal roots. Injection with a lower cell dose of 1 x 10(6) T line cells caused only moderate clinical signs paralleled by milder conduction slowing and conduction failure. Light microscopy showed marked inflammation with infiltration of mononuclear cells and some demyelination throughout the spinal cord and roots. Inflammation and demyelination were dose dependent and the caudal parts of the spinal cord were more affected than the cranial parts. The peripheral nerves were free of electrophysiological and morphological alterations. Systemic treatment with 4-aminopyridine accelerated and partially restored conduction in the dorsal columns and roots, while increasing the body temperature had a detrimental effect, suggesting demyelination as a prominent pathophysiological mechanism. These findings show that in AT-EAE in Lewis rats the dysfunction of the central nervous system and of spinal roots is cell dose dependent, that the peripheral nervous system distal to the spinal roots is spared, and suggest that paranodal demyelination is an important pathogenic mechanism.

4-Aminopyridine

Local adoptive transfer of the antitumor cellular immune response in syngeneic and allogeneic mice studied with a rapid radioisotopic footpad assay.

The immunologic nature of the cellular immune response against tumor cells inoculated in the footpad of mice was studied with a rapid, quantitative, and specific assay. The results indicate: a) The antitumor cellular immune response could be transferred adoptively in syngeneic and allogeneic mice with specific immune thymus (T) lymphocytes isolated on nylon columns; b) T-independent cells of host origin were necessary for the manifestation of the antitumor footpad reaction; and c) there was a close correlation between immune responses detected by the footpad assay and those detected by transplantation techniques. The footpad reaction consisted of several nonspecific and specific components. Nonspecific factors disturbing the specific footpad reaction in syngeneic and allogeneic recipients were discussed.

Animals

Clonal dominance: loss and restoration in adoptive transfer.

An adoptive transfer system was used to study the mechanism responsible for clonal dominance of the anti-phosphorylcholine response in BALB/c mice. The adult spleen contains phosphorylcholine-specific precursor cells that are capable of developing into antibody-producing cells after transfer into lethally irradiated animals. The neonatal liver of the BALB/c mouse lacks precursor cells specific for phosphorylcholine but contains immature cells that differentiate into specific precursors during the normal course of ontogeny. The transfer of fetal or neonatal liver cells into lethally irradiated recipients prevents the appearance of the dominant H8 clone which constitutes the majority of the clones responding to phosphorylcholine in adult BALB/c mice. However, if these cells are transferred into neonatally suppressed recipients that lack the H8 idiotype, dominance of the H8 clone can develop. The conversion of the committed immature progenitor cell into a responsive B lymphocyte precursor is a regulated event. Regulation at the level of progenitor cells determines the eventual clonal profile of the immune response to phosphorylcholine. It is suggested that selection of the dominant clone occurs at this level.

Animals

Host immune responses after administration of inactivated Venezuelan equine encephalomyelitis virus vaccines. I. Description and characterization of adoptive transfer by immune spleen cells.

Cellular immune responses after immunization with a number of inactivated Venezuelan equine encephalomyelitis (VEE) virus vaccines were evaluated in mice by means of an adoptive transfer system. Formalin-inactivated, TC-83 strain VEE virus vaccine was immunogenic and highly effective in protecting recipient mice against challenge with virulent VEE virus. In contrast to immunization with live TC-83 VEE virus vaccine, however, immunization with inactivated VEE vaccine did not provide donor mice with the capacity to transfer adoptive immunity readily. Only when mice were immunized with inactivated VEE vaccine combined with specific adjuvants (particularly complete Freund's adjuvant or Bordetella pertussis) were donors capable of consistently transferring adoptive immunity. The total dose of inactivated VEE vaccine did not appear to influence the capacity to transfer adoptive immunity. On the other hand, weekly boosters of VEE vaccine and/or administration of vaccine with specific adjuvants did markedly influence donor immune responses.

Animals

CD3+ and CD4+ cells adoptively transfer experimental hypersensitivity pneumonitis.

To characterize the cells responsible for transfer of adoptive murine experimental hypersensitivity pneumonitis (EHP), we depleted Micropolyspora faeni (M. faeni)-sensitized C3H/HeJ spleen cell (SC) cultures of CD3+, CD4+, or CD8+ cells before administration to recipients. We determined the length of time sensitization persists, the ability of cultured lung-associated lymph node (LALN) cells to transfer EHP, and the ability of cultured SC from animals subjected to two, four, or eight weekly intratracheal challenges of M. faeni to transfer EHP. The extent of pulmonary inflammatory response after challenge with intratracheal M. faeni was used to determine adoptive transfer. Depletion reduced the proportion of CD3+ cells from 21 to 1%, CD4+ cells from 15 to 3%, and CD8+ cells from 7 to 1% in the cultured SC population. The proportion of B cells exhibited reciprocal changes. Cultured SC could transfer EHP. Depletion of CD3+ and CD4+, but not CD8+ cells, ablated or diminished the capacity to transfer EHP. Sensitized cells persisted in recipients for at least 8 wk. Cultured LALN cells could transfer EHP. Recipients of cultured SC from 4- and 8-wk donors exhibited less extensive pulmonary abnormalities than recipients of cultured SC from 2-wk donors. The proportion of CD3+, CD4+, CD8+, B cells, and macrophages was the same in cultured cells from 2-, 4-, and 8-wk donors. We conclude that the active cells in SC cultures are CD3+, CD4+, and CD8- T cells, and there are differences in the ability of cultured cells to adoptively transfer EHP that are dependent on the nature of the donor but not on the phenotype of the cell population.

Alveolitis, Extrinsic Allergic

Cell interactions between histoincompatible T and B lymphocytes. I. Allogeneic effect by irradiated host T cells on adoptively transferred histoincompatible B lymphocytes.

The adoptive transfer of 2,4-dinitrophenyl(DNP)-keyhole limpet hemocyanin(KLH)-primed lymphocytes into a heavily irradiated allogeneic recipient permits the development of a secondary anti-DNP antibody response to DNP-bovine gamma globulin(BGG) whether or not the irradiated allogeneic host possesses BGG-specific helper T cells. This "allogeneic effect" has been demonstrated to result from the capacity of residual, apparently radioresistant, T cells in the irradiated host to exert an active effect on the transferred histoincompatible B lymphocytes. This conclusion derives from two corroborative experiments. In the first, an allogeneic effect was shown to occur on DNP-primed F(1) spleen cells that had been adoptively transferred to irradiated parental recipients; the second experiment demonstrated the development of an allogeneic effect on anti-theta-treated, DNP-specific donor cells transferred to irradiated allogeneic hosts. These results emphasize the extreme caution required in designing and interpreting experiments that may involve adoptive cell transfers into histoincompatible hosts, and illustrate why such models are unsuitable for investigation of the question of physiologic cooperative interactions between T and B lymphocytes. Suitable approaches are described in the accompanying paper.

Animals

T-cell involvement in adoptive transfer of line 10 tumor immunity in strain 2 guinea pigs.

Several aspects of adoptive transfer of tumor immunity were studied in the line 10 hepatocarcinoma in the syngeneic Sewall-Wright strain 2 guinea pig. In particular, the need for cooperation between donor and recipient T-cells was investigated. Donor immune spleen cells remained immunologically capable of inducing tumor rejection for at least 160 days after adoptive transfer. Irradiated (1,000 rad) or mitomycin-treated immune spleen cells lacked tumor-rejection activity, which is indicative of the necessity for in vivo proliferation after adoptive transfer of immunity. Furthermore, adoptive transfer of tumor immunity was abrogated after treatment of the line 10 immune spleen cells with rabbit anti-guinea pig-thymocyte serum (ATS) plus complement. The role of recipient T-cells was investigated in strain 2 guinea pigs which were T-cell depleted by thymectomy, irradiation, and bone marrow reconstitution (T-XBM animals). Severe suppression of T-cell activity was present at 2 and 6 weeks after irradiation and bone marrow reconstitution. At 10 weeks nonspecific T-cell activity was partially restored. The induction of antigen-specific responses, measured by delayed-type hypersensitivity skin testing in vivo and antigenic stimulation in vitro, was suppressed at 2 weeks after irradiation and bone marrow reconstitution. Additional in vivo treatment of T-XBM animals with a rabbit ATS improved the T-cell depletion only moderately. Tumor growth and tumor rejection after adoptive transfer of immunity were equal in normal and T-cell-deprived recipient animals, thus indicating that recipient T-cells are not needed for tumor rejection after adoptive transfer of line 10 tumor immunity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Inhibition and augmentation of lymphoma metastasis by adoptively transferred peritoneal macrophages in hamster.

The effect of adoptively transferred peritoneal exudate cells on the metastasis of hamster lymphoma was studied. Metastatic spread occurring after the surgical removal of a primary tumor was considerably inhibited by the adoptive transfer of the peritoneal exudate cells (PEC) stimulated by immunostimulants, using a streptococcal preparation (OK-432) or a purified beta (1-3) glucan (SPG). However, the inhibitory effect on metastasis was abrogated by the in vitro treatment of the peritoneal adherent cells with silica. PEC stimulated with lymphokines in vitro was also effective in inhibiting metastasis. However, the adoptive transfer of peritoneal adherent cells treated in vitro with 12-O-tetradecanoylphorbol acetate (TPA) in vitro, augmented metastatic spread in tumor-bearing hamsters which usually exhibit concomitant immunity. The relation of the state of the functional activity of macrophages to metastasis is discussed.

Animals

Restoration of viral immunity in immunodeficient humans by the adoptive transfer of T cell clones.

The adoptive transfer of antigen-specific T cells to establish immunity is an effective therapy for viral infections and tumors in animal models. The application of this approach to human disease would require the isolation and in vitro expansion of human antigen-specific T cells and evidence that such T cells persist and function in vivo after transfer. Cytomegalovirus-specific CD8+ cytotoxic T cell (CTL) clones could be isolated from bone marrow donors, propagated in vitro, and adoptively transferred to immunodeficient bone marrow transplant recipients. No toxicity developed and the clones provided persistent reconstitution of CD8+ cytomegalovirus-specific CTL responses.

Antigens, Differentiation, T-Lymphocyte

In vivo proliferation of adoptively transferred tumor-infiltrating lymphocytes in mice.

The adoptive transfer of tumor-infiltrating lymphocytes (TILs) in conjunction with interleukin-2 (IL-2) administration can mediate a reduction in established pulmonary and hepatic metastases of a variety of murine tumors as well as in patients with metastatic melanoma. To characterize further the fate of adoptively transferred TILs, the uptake of the thymidine analog 5-[125I]iodo-2-deoxyuridine ([125I]UdR) into the DNA of dividing cells was used to study the in vivo proliferation and migration patterns of transferred TILs in C57BL/6N mice. Animals received 500 rad of total body irradiation prior to cell transfer to separate incorporation of radiolabel into endogenous lymphoid cells from that into transferred TILs. Mice were subsequently treated with i.v. injections of TILs or no cells followed by i.p. injections of Hanks' balanced salt solution or IL-2. At various time points, mice received [125I]UdR, and 20 h later tissues were removed and counted on a gamma analyzer. A proliferation index (PI) was calculated by dividing the mean cpm of organs of experimentally treated mice by the mean cpm of organs of control mice. Animals receiving TILs alone demonstrated small increases in [125I]UdR in the lungs, liver, and spleen of saline-treated controls (PI = 1.4, 1.6, and 1.7, respectively, on day 4), while animals treated with 50,000 U of IL-2 alone showed greater increases in the lungs, liver, kidneys, and spleen (PI = 3.9, 6.1, 3.3, and 15.8). Mice receiving TILs plus IL-2 demonstrated the highest levels of radiolabel incorporation in the same organs (PI = 10.5, 19.4, 10.2, and 22.4). Over a period of 10 days, TIL plus IL-2 treated animals continued to incorporate significantly greater amounts of [125I]UdR for as long as high-dose IL-2 was administered. Animals treated with TILs demonstrated increased incorporation of radiolabel with increasing doses of IL-2. Injection of irradiated TILs did not result in an increased uptake of [125I]UdR into these tissues, thus confirming that TIL proliferation is responsible for the radiolabel uptake in animals receiving TILs alone or TILs plus IL-2. Additionally, fluorescein-labeled anti-Thy-1.1 antibody identified proliferating TILs derived from congenic B6.PL Thy 1a/CY (Thy-1.1) animals in the lungs, spleen, and liver of recipient C57BL/6N (Thy 1.2) mice. In summary, we have demonstrated that adoptively transferred TILs distribute widely after i.v. injection and can proliferate in various tissues especially under the influence of exogenous IL-2.

Animals

Sympathectomy augments adoptively transferred experimental allergic encephalomyelitis.

Adoptively transferred experimental allergic encephalomyelitis (EAE) was significantly augmented in Lewis rats with ablated sympathetic nervous system. Sympathectomy was obtained by treatment of newborn rats with 6-hydroxydopamine. Sham-injected rats were used as a control. EAE was elicited in 7-8-week-old donor Lewis rats by immunization with a suspension of guinea pig (GP) brain and spinal cord in complete Freund's adjuvant. Successful transfer of EAE was accomplished with 50 x 10(6) lymph node cells (LNC)/rat, incubated for 72 h with GP myelin basic protein. LNC were obtained from draining lymph nodes, 9 days after immunization for EAE. The severity of passively transferred EAE was significantly augmented when donor LNC obtained from normal Lewis rats immunized for EAE were injected into sympathectomized rats as compared to sham-injected rats. When LNC were obtained from sympathectomized or sham-injected donors, the disease was significantly more severe in recipients of cells from sympathectomized animals. The severity of histological lesions in the brain and spinal cord was greater in rats with passively transferred EAE which received LNC from sympathectomized donors.

Animals

Proteoglycan-induced polyarthritis and spondylitis adoptively transferred to naive (nonimmunized) BALB/c mice.

Mononuclear cells from BALB/c mice with progressive polyarthritis and spondylitis induced by injection of fetal human articular cartilage proteoglycan (PG) were used to transfer arthritis by intravenous injection into irradiated, nonimmunized syngeneic mice. Successful transfer of arthritis to BALB/c mice required the injection of lymphocytes from mice with arthritis, along with 50 micrograms of human fetal PG, or lymphocytes stimulated in vitro with either fetal human PG or with mouse cartilage PG. In addition, interleukin-2 or immune sera from animals with arthritis significantly reduced the time to onset of transferred disease. The onset of adoptively transferred arthritis, using cells and antigen, from the time of the first injection (38.2 +/- 18.2 days, mean +/- SD) was shortened if lymphocytes from mice with transferred arthritis were reinjected (retransferred) into other, irradiated syngeneic mice (6.1 +/- 2.6 days). The appearance of autoreactive antibodies to mouse cartilage PG in the sera of mice with adoptively transferred arthritis (secondary or tertiary) preceded the appearance of the first clinical symptoms by a few days. The transfer of arthritis was blocked by pretreatment of donor (arthritic) lymphocytes with either anti-T cell or anti-B cell antibodies and complement. Exposure of mononuclear cells from mice with arthritis to PG, and its removal prior to transfer, also resulted in transfer of the arthritis. PG-induced arthritis was not transferred to nonirradiated mice, nor to irradiated mice injected with lymphocytes from animals with primary arthritis without chondroitinase ABC-digested fetal human PG. Arthritis never developed after injection of immune sera from mice with arthritis (without cells), nor when cells of nonarthritic animals were used with chondroitinase ABC-digested fetal human PG, with or without interleukin-2.

Animals

Studies of thymocytopoiesis in rats and mice. I. Kinetics of appearance of thymocytes using a direct intrathymic adoptive transfer assay for thymocyte precursors.

We describe a quantitative intrathymic (i.t.) adoptive transfer system for detecting thymocyte precursor cells in rats and mice. In this system, the generation of donor-origin thymocytes is analyzed on the FACS after the injection of test cells directly into the thymus of sublethally irradiated, histocompatible, RT-7 (rat) or Ly-1 (mouse) alloantigen-disparate recipients. Like the standard i.v. adoptive transfer assays for prothymocytes, the i.t. transfer assay is time, dose, and irradiation dependent. However, unlike the i.v. assays, the i.t. assay is highly sensitive, independent of cell migration, and specific for T-lineage precursor cells. Thus, the i.t. system requires between 25- and 50-fold fewer precursor cells than do the i.v. systems to generate a given number of donor-origin thymocytes; it detects nonmigratory as well as migratory subsets of precursor cells; it detects prethymic and intrathymic precursor cells with equal facility; and it produces a discrete, self-limited wave of donor-origin thymocytes and peripheral T cells. Moreover, neither hemopoietic nor lymphopoietic stem cell chimerism occurs at extrathymic sites. Comparison of the kinetics of thymocytopoiesis in the i.t. and i.v. transfer systems suggest that the seeding efficiency of prothymocytes in the i.v. assay approximates 0.04; the lag phase of the time-response curve is not due to a delay in the entry of prothymocytes into the thymus; and the relative amount of thymocyte precursor activity in various lymphohemopoietic tissues is highest in bone marrow, lowest (or absent) in lymph node, and intermediate in spleen, blood, and thymus. Moreover, the occurrence of saturation kinetics in the dose-response curve of the i.t. system supports the hypothesis that a finite number of microenvironmental niches for prothymocytes may exist in the thymus. These initial observations will require confirmation and extension in future studies. However, based on the present findings and related observations, we anticipate that the i.t. adoptive transfer system will contribute importantly to the definitive analysis of both normal and abnormal thymocytopoiesis.

Animals

Adoptive transfer of autoimmune diabetes mellitus in biobreeding/Worcester (BB/W) inbred and hybrid rats.

Adoptive transfer of diabetes was accomplished by the injection of Con A-activated acutely diabetic BB/W rat spleen cells into immunosuppressed diabetes-resistant BB/W control rats and F1 hybrid offspring produced by BB/W X Lewis, BN, Yashida, and NEDH matings. Immune suppression methods that facilitated adoptive transfer of diabetes included neonatal thymectomy, cyclophosphamide, and splenectomy plus rabbit anti-rat lymphocyte serum injections. The successful transfer of BB/W diabetes to otherwise normal (BB/W X inbred)F1 rats and to diabetes-resistant BB/W animals suggests that antigenically normal pancreatic beta cells were destroyed by the injected effector cells. Diabetes-resistant BB/W control rats also evidenced diabetes after the injection of cyclophosphamide alone. The requirement for immunosuppression suggests that an intact immune system protects against adoptive transfer and diabetes in diabetes-resistant BB/W rats.

Animals

S-antigen. Adoptive transfer of experimental autoimmune uveitis following immunization with a small synthetic peptide.

Experimental autoimmune uveitis was observed following the adoptive transfer of T cell lymphocytes (T cells) from Lewis rats previously immunized with a small synthetic peptide, peptide M, which corresponds to the amino acid sequence of a well-defined region of S-antigen. Prior to adoptive transfer, the T cells were restimulated in tissue culture with peptide M. Approximately five days following the intravenous administration of restimulated T cells, a severe uveitis was documented both clinically and histopathologically. Clinically, the disease was characterized by iris hyperemia followed by anterior chamber exudates and posterior iris synechiae. Histopathologically, the photoreceptor cell layer of the retina was completely destroyed. A subretinal exudate containing mononuclear cells and polymorphonuclear leukocytes was also present. In addition, the pineal glands of animals with experimental autoimmune uveitis showed inflammatory changes characterized by a lymphocytic infiltration of the subcapsular and central region of the gland. The clinical and histopathologic features of the experimental autoimmune uveitis were similar to those that develop following the adoptive transfer of T cells from Lewis rats previously immunized with S-antigen. Our results indicate that the amino acid sequence of the region of S-antigen corresponding to peptide M represents a distinct pathogenic site with the ability to adoptively transfer disease. We comment on the significance of this finding with regard to T cell-mediated immune mechanisms in certain forms of human uveitis.

Amino Acid Sequence

Pathogenesis of experimental allergic orchitis. III. T lymphocyte requirement in local adoptive transfer by peritoneal exudate cells.

In experimental allergic orchitis (EAO), a lesion characterized by mononuclear invasion of seminiferous tubules can be adoptively transferred within 1 to 4 days by testicular injection of peritoneal exudate cells (PEC) from syngeneic strain 13 guinea pigs (GP) immunized with homologous testicular antigens in complete Freund's adjuvant (CFA). This study examined the role of T lymphocytes, macrophages, and polymorphonuclear neutrophils (PMN) in the adoptive transfer. Guinea pig PEC contained 7% T lymphocytes, rare B lymphocytes, and over 90% of macrophages and PMN. After T lymphocytes were depleted by rabbit erythrocyte (E) rosette and Hypaque-Ficoll gradient centrifugation, cell preparations that contained 73% of original macrophages and 15% original T lymphocytes were obtained, and these cells did not transfer EAO (0 of 18 testes). In contrast, cell preparations enriched in T lymphocytes by nylon wool column or E rosette contained 1.5% of the original macrophages and 59% of the original T lymphocytes transferred EAO to 70% of the testes, starting at 1.5 x 10(6) T lymphocytes per testis. The number of T lymphocytes correlated with the incidence of adoptive transfer; the correlation existed regardless of the number of macrophages or PMN present. Finally, EAO was adoptively transferred to recipients that had total-body irradiation. The results indicate that (a) T lymphocytes are capable of transferring lesions of EAO, (b) in the transfer, the T lymphocytes did not function as helper T cells, since the transfer need not involve participation of host lymphoid cells, and (c) by inference, testis antigen-reactive T lymphocytes exist.

Animals