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Adoptive transfer of diabetes to and from old normoglycaemic BB rats.

Approximately 4% of diabetes-prone BB/Mol rats escape overt diabetes which occurs in other rats between 56 and 130 days of age. The ability of preactivated spleen cells from older non-diabetic and from acutely diabetic rats to adoptively transfer diabetes into young diabetes-prone rats was compared, and it was found that they transferred disease with similar incidence and with overlapping onset times in the recipients. Old non-diabetic rats were themselves susceptible to diabetes adoptively transferred from acutely diabetic or from old nondiabetic donors. Lymphocytic insulitis and pancreatic insulin content in unmanipulated old non-diabetic rats were both intermediate between those seen in acutely diabetic and in diabetes-resistant rats. In vivo treatment with polyinosinic-polycytidylic acid induced diabetes with faster onset in old non-diabetic rats than in young diabetes-prone rats. Adoptive transfer of fresh, whole spleen cells from old nondiabetic rats did not protect young BB rats against spontaneous diabetes, while cells from diabetes-resistant rats did. Spleens from old non-diabetic rats contained significantly lower percentages of T cells than spleens from acutely diabetic rats but not lower than spleens from age-matched diabetic rats, suggesting that this reduction was age-related. Finally, spleens from both old non-diabetic and from acutely diabetic rats were negative for the regulatory RT6+ T-cell subset. It is concluded that quiescent beta-cell autoimmunity seen in a fraction of BB/Mol rats can be reactivated upon non-antigen-specific immune stimulation.

Animals↗

Recombinant interleukin-2 by continuous infusion and adoptive transfer of recombinant interleukin-2-activated cells in patients with advanced cancer.

Twenty-five patients with disseminated cancer (nine with renal cell carcinoma, five with melanoma, three with Hodgkin's lymphoma and chronic myelocytic leukemia [CML], two with soft tissue sarcoma, one each with large-cell lymphoma, breast cancer, and colon cancer), 13 males and 12 females, aged 25 to 68, were treated with recombinant human interleukin-2 (rIL2) by continuous infusion and adoptive transfer of autologous lymphocytes activated in vitro with IL2. Patients underwent leukapheresis on days 1, 8, 15, and 22 of the treatment. Cells, bulk activated for 20 hours in serum-free culture medium with 1,000 U IL2/mL in transfusion transfer packs as culture vessels, were transfused the following day. The infusion of IL2 by continuous infusion for six days started immediately after each adoptive transfer for 4 weekly courses. The dose of IL2 was escalated weekly in each patient; starting doses of IL2 were also escalated in subsequent cohorts of patients until maximally tolerated doses were reached. Nine patients had objective tumor regressions (three with renal cell cancer, two with Hodgkin's lymphoma, and one each with melanoma, sarcoma, breast, and colon cancer). Six responses were partial, two were minor, and one was mixed. Responding patients were maintained with IL2 by continuous infusion for six days every 6 to 8 weeks, without adoptive cell transfer. The median duration of responses was 16 weeks (3 to 60 + weeks). Tumor regression was related to the dose of IL2 (greater than or equal to 3.4 x 10(6) U/m2/d for six days) and to the in vivo lymphoproliferative effects of the lymphokine, but not to the total number of cells adoptively transferred. Side effects of treatment were transient and quickly reversible. Renal, hepatic dysfunction, and dyspnea were directly related to the dose of IL2 and to lymphocytosis. Other toxicities were mild hypotension with mild fluid retention, oral mucositis, anemia, thrombocytopenia, fever, and fatigue.

Adult↗

Adoptive transfer of experimental allergic encephalomyelitis and localization of the encephalitogenic epitope in the SWR mouse.

Adoptively-transferred experimental allergic encephalomyelitis (EAE) was induced in the SWR (H-2q) strain of mouse using lymph node cells, spleen cells, or cell lines sensitized to whole myelin basic protein (MBP). With the aid of synthetic peptides, the minimal encephalitogenic epitope of MBP for the SWR strain was localized to amino acids 87-99 of the MBP molecule. The 87-99 sequence is also encephalitogenic for the SJL strain of mouse and the Lewis rat. EAE was induced with a protocol similar to that for the induction of EAE in the SJL strain with the exception that sublethal irradiation of recipients was necessary. Mice developed typical clinical and pathological EAE 6-14 days post-transfer of cells sensitized to either whole MBP or peptide 87-99, after which they remitted. No relapses were observed. Thus, adoptively transferred EAE can be induced in irradiated H-2q mice for which the encephalitogenic epitope is one of the nested encephalitogenic epitopes for SJL (H-2s) mice, namely residues 87-99.

Animals↗

Adoptive transfer of experimental allergic encephalomyelitis in mice with the aid of pertussigen from Bordetella pertussis.

Adoptive transfer of experimental allergic encephalomyelitis (EAE) in (SJL X BALB/c)F1 mice was accomplished by an iv injection of 2.4 to 4.7 X 10(7) lymph node cells (LNC) from mice immunized with mouse spinal cord emulsified in complete Freund's adjuvant when both donors and recipients had been treated iv with 400 ng of pertussigen at the time of immunization for the donors and on transfer of cells for the recipients. Pertussigen was essential in both donors and recipients for development of frank EAE. Signs of EAE in recipients were delayed, appearing 21-23 days after cell transfer; the maximum response at about Day 27 is considerably delayed in comparison with other reported studies on passive transfer of EAE. Histologically, recipient mice with paralysis due to EAE had typical perivascular infiltrates of mononuclear cells in the brain and spinal cord. The mechanisms by which pertussigen promotes the development of EAE after adoptive transfer of sensitized LNC are uncertain.

Animals↗

Adoptive transfer of cell-mediated immunity to tuberculin using RNA from tuberculin-sensitive subjects.

Adoptive transfer of delayed hypersensitivity skin test response to tuberculin with 'immune' RNA extracted from the sensitized lymphocytes of a healthy subject or a patient with Hodgkin's disease was successfully demonstrated in previously non-sensitive patients with neoplastic diseases including Hodgkin's disease. 'Non-immune' RNA obtained from non-sensitive man, on the other hand, failed to transfer PPD skin reactivity in non-sensitive recipients. 'Immune' RNA-mediated PPD skin test response remained positive for a considerable period of time, indicating that the effect of 'immune' RNA is systemically active. 'Immune' RNA was found to be RNase-sensitive but DNase-resistant. In vitro adoptive transfer of delayed hypersensitivity with 'immune' RNA, as assayed by lymphocyte transformation test, was unsuccessful.

Deoxyribonucleases↗

Systemic immunosuppression induced by photodynamic therapy (PDT) is adoptively transferred by macrophages.

Some derivatives of hematoporphyrins are strongly retained by tumor tissue as compared to normal tissue, and exposure of these photosensitizers to radiation in the visible spectrum can cause serious biological damage. These properties have been exploited in the development of a new treatment for cancer termed photodynamic therapy (PDT). However, recent studies have also demonstrated that PDT can also induce a state of systemic immunosuppression. The purpose of this study was to determine whether PDT-induced suppression of contact hypersensitivity (CHS) responses was an active phenomenon that could be adoptively transferred by viable splenocytes from PDT-treated mice. Although induction of adoptively transferable suppressor cells in PDT-treated mice required exposure to antigen, the suppressor cells were found to be antigen nonspecific in their function. Furthermore, splenocytes from PDT-treated mice were capable of generating levels of allospecific cytotoxic T lymphocyte (CTL) activity which were comparable to those generated by normal control mice, but the ability of irradiated spleen cells from PDT-treated mice to stimulate a mixed lymphocyte response (MLR) was dramatically impaired. Finally, chromatographic separation of T cells, B cells and macrophages showed that the cell type which mediates adoptively transferable suppression of CHS responsiveness is in the macrophage lineage.

Animals↗

Gamma delta T cells assist alpha beta T cells in adoptive transfer of contact sensitivity.

Cutaneous immune responses to contact sensitizers such as picryl chloride or oxazolone, are classical manifestations of T cell-mediated immunity in vivo. In fact, the first documentation of T cell-mediated immunity was the ability to adoptively transfer contact sensitivity (CS) responses. Although it is now clear that Ag/MHC-restricted alpha beta TCR positive effector T cells are responsible for 24 to 48 h CS responses, other subsets of Thy-1+ cells in mice also participate in the elicitation of CS. Thus, Thy-1+, CD5+, CD3-, B220+, hapten-specific, non-MHC-restricted early-acting cells are required to initiate CS responses by leading to local serotonin release, which allows for extravascular recruitment of the late-acting, alpha beta TCR+, CS effector T cells. This study describes another T cell population that is needed for the adoptive transfer of CS by alpha beta T cells. In vitro treatment of a mixture of CS effector cells with hamster mAb to gamma delta TCR, together with rabbit complement, or by panning on anti-hamster Ig-coated dishes, diminished substantially the subsequent transfer of CS reactivity without affecting either CS-initiating cells, or the later-acting, alpha beta TCR+ CS effector T cells. Immune cells treated with anti-alpha beta TCR mAb, or recovered as adherent cells from petri dishes after anti-gamma delta TCR panning (i.e., gamma delta TCR-enriched cells), reconstituted the ability of anti-gamma delta TCR-treated immune cells (i.e., alpha beta TCR-enriched cells) to transfer 24-h CS responsiveness. The phenotype of the gamma delta T cells that assisted CS effector alpha beta T cells was: CD3+, CD4-, and CD8+. The gamma delta T cells that assisted alpha beta T cells were not Ag-specific since anti-alpha beta-TCR-treated cells (gamma delta T-enriched) from picryl chloride immunized donors aided alpha beta T cells (anti-gamma delta TCR-treated) from oxazolone-immunized donors, and conversely gamma delta T cells from oxazolone-immunized donors aided alpha beta T cells from picryl chloride immunized donors. Furthermore, the CS-regulating gamma delta T cells were not MHC-restricted because gamma delta T cells from H2d or H2b donors could assist alpha beta T cells from H2k donors. It was concluded that a regulatory population of non-Ag specific, non-MHC-restricted gamma delta T cells was needed to assist immune effector, Ag/MHC-specific alpha beta T cells in the adoptive transfer of CS.

Animals↗

The effect of adoptive transfer of mononuclear leukocytes from an adult donor on spontaneous cell-mediated cytotoxicity and resistance to transmissible gastroenteritis in neonatal piglets.

The purpose of this study was to attempt to establish spontaneous cell-mediated cytotoxicity effector activity in the intraepithelial lymphocytes of neonatal piglets by adoptive transfer of mononuclear leukocytes from an adult donor and to determine the effect of transfer on the resistance of piglets to transmissible gastroenteritis. Cytotoxicity was determined by a chromium release assay using PK-15 cells persistently infected with transmissible gastroenteritis virus as targets. The experimental animals were inbred miniature pigs, in which a high degree of uniformity in lymphocyte defined histocompatibility complex antigens was demonstrated by the mixed lymphocyte reaction. Adoptive transfer of 8 X 10(7)-4 X 10(8) adult pig leukocytes established effector activity in eight recipient piglets, and leukocytes labelled with fluorescein isothiocyanate homed to the epithelium of the small intestine. When four recipients of 5 X 10(8) adult leukocytes were challenged with transmissible gastroenteritis virus, the onset of diarrhea was delayed for 24 h and the diarrhea was usually milder than in four untreated control piglets. It was concluded that the adoptive transfer of leukocytes with spontaneous cell-mediated cytotoxicity effector activity, which homed to the small intestinal epithelium, may have contributed to an increased resistance to transmissible gastroenteritis.

Animals↗

The effect of cyclosporin A on the adoptive transfer of experimental allergic encephalomyelitis in the Lewis rat.

Experimental allergic encephalomyelitis (EAE) can be adoptively transferred in Lewis rats with spleen cells from immunized animals, after culture with concanavalin A or myelin basic protein (MBP). The effect of the immunosuppressive drug cyclosporin A (CsA) on the in vitro and in vivo steps of the cell transfer has been investigated. Clinical signs of EAE were completely suppressed by CsA in rats immunized with MBP in Freund's complete adjuvant and spleen cells from these animals, cultured with the antigen, did not transfer the disease. The incidence of transferred disease was also reduced, if recipients were treated with CsA, although a higher dose of drug than that needed to suppress active EAE was required. In both instances complete suppression of EAE was only accomplished for the period of dosing, although the clinical signs of disease which appeared after withdrawal of the drug were significantly reduced in severity. These results imply that an immune response in the host animal is a prerequisite for adoptive transfer of EAE or suggest that CsA can regulate the action of lymphocytes already primed.

Animals↗

Prevention of lymph node metastases by adoptive transfer of CD4+ T lymphocytes admixed with irradiated tumor cells.

CD4+8- T lymphocytes with potent antitumor activity in vivo were obtained in peritoneal exudate cells by immunizing mice with irradiated MM48 tumor cells admixed with OK-432. These immune CD4+ T cells were used in adoptive immunotherapy for prevention of lymph node metastases after removal of the primary tumor. Complete cure of metastases was obtained by adoptive transfer of CD4+ T cells admixed with irradiated MM48 tumor cells, but not by CD4+ T cells alone. To analyze the curative effect of admixing tumor cells on the prevention of metastases, a model of 1-day tumor inoculated with macrophages was used. Administration of immune CD4+ T cells alone resulted in the regression of local tumor in more than half of the mice, although all of them eventually died of lymph node metastases. On the other hand, adoptive transfer of immune CD4+ T cells plus irradiated tumor cells resulted in the complete regression of local tumors in all the mice, which survived without any sign of metastasis. The curative effect of the immune CD4+ T cells obtained by admixing irradiated tumor cells was tumor-specific. Macrophages induced by OK-432 (tumoricidal), implanted together with tumor, assisted tumor regression more than did macrophages elicited by proteose peptone (non-tumoricidal) in the same adoptive transfer system. Administration of recombinant interleukin-2 instead of stimulant tumor cells did not enhance, but rather eliminated the constitutive antitumor activity of CD4+ T cells. On the other hand, exogenous recombinant interleukin-1 was more effective in the enhancement of antitumor activity of the CD4+ T cells as compared with stimulant tumor cell administration. In this case, the activating states of macrophages at the implanted tumor site had no influence on the therapeutic efficacy. A possible role of macrophages for induction of tumor-specific cytotoxic T cells that were mediated by tumor-specific CD4+ T cells is discussed.

Animals↗

Antigen-presenting cells in adoptively transferred and spontaneous autoimmune diabetes.

Histological techniques were used to identify antigen-presenting cells (APC) in adoptively transferred diabetes in NOD mice and Ins-HA transgenic mice, and in spontaneously diabetic NOD mice. In adoptively transferred disease, CD4+ T cells and F4/80+ macrophages dominated early infiltrates. By contrast, in spontaneously developing diabetes in NOD mice, lymphocytic infiltrates appeared to be well organized around a network of VCAM-1+ NLDC-145+ ICAM-1+ dendritic cells. Thus, the primary APC spontaneous autoimmune disease appears to be the strongly stimulatory dendritic cell rather than the normally resident macrophage. Next, we used chimeric animals to demonstrate that insulitis and diabetes could occur even when responding T cells were unable to recognize islet-specific antigen directly on beta cells. Altogether, the results demonstrate that immune-mediated damage does not require direct contact between CD4+ T cells and beta cells. Moreover, despite the induction of ICAM-1, VCAM-1, and class II on vascular endothelium near islet infiltrates, these experiments show that recruitment of lymphocytes occurs even when antigen presentation is not possible on vascular endothelium.

Amino Acid Sequence↗

Adoptive transfer of natural antibodies to non-immunized chickens affects subsequent antigen-specific humoral and cellular immune responses.

To determine a regulatory function of natural antibodies in the immune response of chickens, pooled plasma obtained from non-immunized (naïve) 15 months old hens was subjected to keyhole limpet hemocyanin (KLH) antigen-affinity chromatography. Purified KLH-binding antibodies were adoptively transferred intravenously to 5 weeks-old cocks that were subsequently immunized subcutaneously 24 h later with KLH. Control groups consisted of birds that were either adoptively transferred with KLH-binding antibodies purified from plasma of KLH-immunized chickens, or PBS, or a salt precipitated total immunoglobulin fraction obtained from the corresponding pooled nai;ve chicken plasma, respectively.Total, IgM and IgY antibody titers to KLH in the plasma of recipients adoptively transferred with KLH-NAb, but not in the plasma of the groups transferred with salt precipitate or KLH-binding specific antibodies, were significantly enhanced as compared to the non-treated, KLH immunized group. Titers of IgA antibodies binding KLH were decreased in the plasma of the group that received specific KLH-binding antibodies, but not in the plasma of the other groups. Proliferation from peripheral blood leucocytes in whole blood from the KLH-NAb treated group, the group treated with KLH-binding specific antibodies and the group treated with salt precipitate, respectively, to both concanavalin A and KLH were significantly decreased as compared to the group receiving PBS. Our data show that antigen-specific antibodies can be isolated from plasma obtained from non-immunized chickens. Such antibodies that resemble natural antibodies as described in mammals may perform an important role in the enhancement of subsequent antigen-specific antibody responses or the maturation of the immune system, which may differ from the role of specific antibodies.

Animals↗

Dendritic cells strongly boost the antitumor activity of adoptively transferred T cells in vivo.

Dendritic cells (DCs) have been well characterized for their ability to initiate cell-mediated immune responses by stimulating naive T cells. However, the use of DCs to stimulate antigen-activated T cells in vivo has not been investigated. In this study, we determined whether DC vaccination could improve the efficacy of activated, adoptively transferred T cells to induce an enhanced antitumor immune response. Mice bearing B16 melanoma tumors expressing the gp100 tumor antigen were treated with cultured, activated T cells transgenic for a T-cell receptor specifically recognizing gp100, with or without concurrent peptide-pulsed DC vaccination. In this model, antigen-specific DC vaccination induced cytokine production, enhanced proliferation, and increased tumor infiltration of adoptively transferred T cells. Furthermore, the combination of DC vaccination and adoptive T-cell transfer led to a more robust antitumor response than the use of each treatment individually. Collectively, these findings illuminate a new potential application for DCs in the in vivo stimulation of adoptively transferred T cells and may be a useful approach for the immunotherapy of cancer.

Animals↗

Th1 cells that adoptively transfer experimental hypersensitivity pneumonitis are activated memory cells.

Cultured murine CD4+ T cell lines from Saccharopolyspora rectivirgula-sensitized donors with cytokine secretion characteristics of Th1 cells can adoptively transfer murine experimental hypersensitivity pneumonitis (EHP), whereas Th2 CD4+ cell lines cannot (Cell Immunol 177:169-175, 1997). To assess the differences between these cell lines that may be related to the ability to transfer EHP, we determined cell surface markers that distinguish naive from activated/memory cells that indicate activation and that mediate endothelial adhesion. Both Th1 and Th2 T cell lines are CD4+, CD11a+, ICAM-1+, and L-selectin negative. Th1 cells are CD49d (alpha 4) and LPAM (alpha 4 beta 7) positive, with 32% and 42% of the apparent membrane site density quantitated as the mean molecules of equivalent soluble fluorochromes (MESF) values of unstimulated spleen cells, respectively. Th2 cells are weakly alpha 4 and alpha 4 beta 7 positive, with 15% and 11% of the MESF of unstimulated spleen cells. Th1 cell lines are CD45Rb negative and CD44+, whereas Th2 cell lines are CD45Rb intermediate and CD44-/low. Th1 cells are CD25 (IL-2 receptor) low and Th2 cells CD25 high. We conclude that Th1 cells capable of transfer are activated/memory T cells, and Th2 cells incapable of transfer lack some characteristics of memory/activated T cells (i.e., increase of CD44 and decrease of CD45Rb). Both Th1 and Th2 cell lines express alpha 4 beta 7 and alpha 4 (Th1 > Th2), suggesting that alpha(4) integrin may be important in conferring ability to cells to adoptively transfer EHP.

Adoptive Transfer↗

Neonatal ingestion of IgG-containing milk increases the survival of adoptively transferred B-lineage cells in B cell-deficient mice.

This study shows that neonatal ingestion of immunoglobulin-containing milk increases the survival of adoptively transferred B-lineage cells in non-irradiated B cell-deficient (mu-/-) mice. Neonatal mu-/- mice were either transferred to lactating mu+/+ foster dams, allowing them to suckle IgG-containing milk, or were kept with their mu-) dams, without IgG in the milk. After adoptive transfer of spleen cells as adults, serum-IgG levels, numbers of plasma cells, T and B cells in spleen and bone marrow were determined. The results showed that the mice which had received milk-IgG had significantly higher levels of serum-IgG and splenic B cells, as well as a higher number of Ig-secreting cells in spleen and bone marrow. This indicates that the mice might have been tolerised against IgG as neonates, if allowed to ingest Ig-containing milk. There is, however, a possibility that B cells in the milk may also contribute to the observed tolerising effect. In summary, the results suggest that 'cross-fostering' could be a suitable method to facilitate the long-term reconstitution of B- and plasma cell numbers in non-irradiated B cell-deficient mice.

Adoptive Transfer↗

Adoptive-transfer therapy of tumors with the tumor-specific primary cytotoxic T cells induced in vitro with the B7.1-transduced MCA205 cell line.

We show that the tumor-specific primary cytotoxic T lymphocytes (CTL) induced in vitro with the MCA205 fibrosarcoma cells transduced with the B7.1 (CD80) gene are highly effective in adoptive-transfer therapy of the parental tumors. The MCA205 fibrosarcoma cell line was transduced with the retroviral vectors encoding the B7.1 gene and tested for their efficiency as stimulators in short-term (5 days) mixed lymphocyte/tumor cell cultures with highly purified syngenic, unprimed T cells as responders. The induction of the CTL required the presence of a low dose of interleukin-2 (25 U/ml). The injection of the CTL prevented colony formation by the intravenously injected tumor cells in a lung colonization assay in which the CTL were injected after inoculation of tumor cells. We also showed that the adoptive transfer of the same T cells was effective in delaying the growth of the subcutaneously injected tumor cells. These results imply that the short-term mixed lymphocyte/tumor cell culture with the tumor cells transduced with the gene for the B7.1 costimulatory molecule is potentially a good source of CTL for adoptive-transfer therapy of tumors.

Animals↗

Adoptive transfer of experimental allergic encephalomyelitis using serum-free, chemically defined in vitro culture conditions.

Enhanced adoptive transfer of experimental allergic encephalomyelitis (EAE) in rats requires in vitro culture of encephalitogen-sensitized donor spleen cells with either myelin basic protein or T-cell mitogen for 18-72 h prior to transfer to unimmunized recipients. The required in vitro culture period offers an opportunity to address in detail cellular and molecular immunoregulatory processes involved in the development of EAE. Conventional culture conditions using fetal bovine serum may impose analytical limitations due to the chemical complexity of the media. To permit better definition of the chemical events associated with the development of EAE, we report the successful adoptive transfer of EAE in Lewis rats using completely chemically defined, serum-free culture conditions.

Animals↗

Immunogenicity and crossreactivity of specificity-associated markers on alloreactive T cells. Confirmation based on the model of tolerance abolition by adoptive transfer.

Syngeneic or parental strain T cells adoptively transferred into hybrid rats tolerant of third party alloantigens (L/DA tolerant of BN), in numbers insufficient to abolish tolerance, induce instead an active resistance to tolerance abolition with larger, usually effective dosages of donor cells. Of particular interest is the finding that immunization with T cells from one parental strain donor (e.g., DA) inhibited the tolerance-abolishing alloreactivity (anti-BN) of subsequently transferred T cells from the same (DA) and the other (L) parental strain donor. We conclude that anti-MHC receptors on T cells from different genetic backgrounds reactive to the same third party alloantigens share the same conserved immunogenic specificity-associated markers (SAM). The nonpolymorphism of anti-MHC receptors shown here in the transplantation tolerance model is a confirmation of the same conclusion drawn from earlier studies with the GVHD-resistance model, and it therefore suggests that these two models of T cell MHC interactions involve very similar mechanisms of T cell idiotypic regulation.

Animals↗