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Expression of MEL-14 antigen is not an absolute requirement for dissemination to lymph nodes after adoptive transfer of murine T lymphocyte clones.

The inability of established antigen-specific murine T lymphocyte clones to recirculate well in vivo has been attributed to loss of the surface glycoprotein gp90MEL-14, which is important for specific adherence to post-capillary high endothelial venules in peripheral lymph nodes (LN). Defective recirculation of clones may contribute to inefficient adoptive immunotherapy when compared with fresh immune spleen or LN populations. To optimize models of adoptive immunotherapy, we sought to improve recirculation of Thy-1.2+, L3T4+ clones by inducing reexpression of MEL-14 antigen (gp90MEL-14). Clones were analyzed after treatment with differentiating agents, incubation in the presence or absence of recombinant interleukin 2 (rIL 2), coincubation in vitro with nonirradiated Thy-1.1 LN or thymus cells, or adoptive transfer into Thy-1.1 hosts. We were unable to demonstrate induction of gp90MEL-14 in any case. However, although clones remained MEL-14 negative, they were able to disseminate widely after subcutaneous adoptive transfer in the presence of clone-specific antigen and rIL 2 into Thy-1.1 mice pretreated with cyclophosphamide. Withdrawal of exogenous rIL 2 was associated with rapid disappearance of clones from all sites. We conclude that murine T cell clones undergo a step in terminal differentiation that precludes surface expression of gp90MEL-14 and that these clones would be unlikely to provide a source of long-lived recirculating memory T lymphocytes. However, under appropriate circumstances it is possible for antigen-specific clones to disseminate widely among host LN and mediate short-term immune responses.

Animals↗

Adoptive transfer of experimental allergic encephalomyelitis: conditions influencing memory and effector cell development.

The cellular transfer of clinical experimental allergic encephalomyelitis (EAE) with immune spleen cells is only accomplished following lymphoid cell stimulation during an intervening in vitro culture activation period. Recipients of these cells recover from the ensuing adoptively transferred paralytic episode and subsequently respond to active challenge with myelin basic protein (BP)-CFA in an accelerated time frame consistent with the presence of memory cells in the initial cell transfer inoculum. We have found that the addition of anti-CD4 antibody or dexamethasone during the activation period inhibits the development of the transfer active EAE effector cell subpopulation, but does not alter the in vitro development and subsequent expression of the BP-specific memory cell subpopulation. Additional experiments also suggest the development of memory cells in the absence of effector cell activity. PMA + ionomycin when used as a stimulus during the culture activation period leads to effector and memory cell development. The stimulation response is dose dependent, in that a reduced concentration of PMA + ionomycin does not lead to EAE effector cell development; however, at these reduced levels of PMA + ionomycin, memory cell development still occurred. Additional evidence which supports the concept of independent development of memory cells and effector cells was obtained with a BP-specific cell line. Following recovery from cell line-mediated clinical EAE, as well as following adoptive transfer of the cell lines in the precursor stage, cell recipients did not develop an early onset of active EAE when subsequently immunized with BP-CFA. Thus the BP-specific T-cell line appears to contain the precursors of the effector cell subpopulation but does not appear to contain the BP memory cell subpopulation. Collectively these observations suggest the existence of distinct T-cell subsets or pathways of development that are followed during the response to BP as measured by the development of clinical EAE.

Animals↗

Adoptive transfer of murine chronic-relapsing autoimmune encephalomyelitis. Analysis of basic protein-reactive cells in lymphoid organs and nervous system of donor and recipient animals.

Frequency analysis of myelin basic protein (MBP)-reactive lymphocytes was performed in the chronic relapsing murine experimental allergic encephalomyelitis (EAE) model induced by the adoptive transfer of myelin basic protein (MBP)-primed lymphocytes to naive recipients. During the first attack, MBP-reactive cell frequencies were: 1/41,700 in spleen, 1/328,000 in lymph nodes, 1/64,500 in the peripheral blood. After recovery from a second attack, the frequencies were: 1/11,000 in spleen, 1/46,000 in lymph node, and 1/195,000 in the blood. In addition, lymph node cells obtained from animals following a second attack had increased encephalitogenic properties. CNS-derived lymphocytes analyzed during the first attack were 50% Lyt 1.2+ and 16% Lyt 2.2+. After recovery from the second attack, phenotypes were 20% Lyt 1.2+ and 49% Lyt 2.2+. There were only minimal responses to MBP in CNS-derived lymphocytes. Susceptibility to adoptively transferred EAE was in general predicted by whether a proliferative response to MBP occurred following immunization and was not solely H-2 linked. These studies demonstrate an accumulation of autoreactive cells in the spleen and lymph nodes and a shift of the phenotype of cells in the target organ as EAE becomes chronic and suggest there are dynamic immunologic processes, both in the peripheral immune system and target organ associated with relapsing EAE.

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Adoptive transfer of CD8+ T cells from immune animals does not transfer immunity to blood stage Plasmodium yoelii malaria.

The malaria parasite, Plasmodium yoelii 17X, causes a self-limited, nonlethal infection characterized, in the blood stage, by preferential invasion of reticulocytes. Previous studies have suggested that immunity to the blood stage infection may be related to enhanced levels of class I MHC Ag on the parasitized reticulocyte surface and can be adoptively transferred to immunodeficient mice by immune CD8+ T cells in the absence of CD4+ T cells. To further examine the mechanisms of CD8+ T cell involvement in immunity to blood stage P. yoelii infection, we performed in vivo CD8 depletion and adoptive transfer experiments. Depletion of CD8+ T cells during primary blood stage infection in BALB/c mice did not diminish the ability of the mice to resolve their infections. Spleen cells from immune BALB/c and C57BL/10 mice were transferred to BALB/c-nu/nu and C57BL/10-nu/nu mice, respectively. The recipient mice were CD4 depleted in vivo to kill any transferred CD4+ T cells. The mice failed to control the infection. Populations of CD4-, CD8+ T cells were transferred from immune CBA/CaJ donors to in vivo CD4-depleted CBA/CaJ recipients. The mice were unable to control the infection. Although immune unfractionated spleen cells transferred rapid protection in all three mouse strains and immune CD4+ T cells transferred immunity in the two mouse strains studied, CD8+ T cells by themselves were neither protective nor did they enhance immunity.

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The effect of immunosuppressants and adoptive transfer in monocrotaline pyrrole pneumotoxicity.

Monocrotaline pyrrole (MCTP) is a pyrrolizidine alkaloid that causes pulmonary vascular injury and pulmonary hypertension in rats. The lesions in lungs of MCTP-treated rats are similar to those occurring in humans with primary pulmonary hypertension. Thus, the MCTP-treated rat is a good animal model for this disease. The mechanisms by which MCTP causes lung injury are unknown. The character of the pulmonary lesions and the delay in onset of the injury after a single low dose of MCTP suggest that immune mechanisms may be important in the pathogenesis. Accordingly, rats were treated with MCTP and the immunosuppressants antilymphocyte serum (ALS) or cyclosporin A (CyA). Neither ALS nor CyA completely protected rats from the injury due to MCTP. Several series of experiments also were undertaken to assess the effect of lymphocytes adoptively transferred from MCTP-treated donor rats into MCTP-treated recipient rats. Adoptive transfer of lymphocytes did not decrease the onset time of the injury or increase the severity of lesions due to MCTP in the recipients. These results indicate that immune mechanisms are probably not involved in MCTP-induced pulmonary injury.

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TH1 cells trigger tumor necrosis factor alpha-mediated hypersensitivity to Pseudomonas aeruginosa after adoptive transfer into SCID mice.

Recent experiments have shown that gamma interferon (IFN-gamma), either administered or induced in vivo, e.g., by certain bacteria, is a key mediator in inducing hypersensitivity to bacterial lipopolysaccharides. The source of endogenous IFN-gamma in this context (natural killer versus TH1 cells) has not been investigated yet. In order to investigate the role of antigen-specific, IFN-gamma-producing TH1 cells in murine Pseudomonas aeruginosa infection, a murine TH1 cell line was propagated in vitro by using recombinant P. aeruginosa outer membrane protein I. Adoptive transfer experiments were performed by intravenous injection of various amounts of TH1 cells into P. aeruginosa-challenged SCID mice. Adoptive transfer of 5 x 10(6) T cells into SCID mice followed by an intraperitoneal challenge with 1.4 x 10(6) CFU of live P. aeruginosa resulted in the rapid death of the animals within 12 h postchallenge, whereas transfer of lower T-cell doses and saline as a control did not cause any detrimental effects. After challenge with 2.8 x 10(6) CFU of P. aeruginosa, similar results were obtained 18 h postchallenge; however, at the end of the 72-h observation period, no significant differences in survival rates were obtained between the groups treated with different amounts of T cells. The rapid death of mice treated with 5 x 10(6) T cells was reflected by 860-fold-elevated levels of tumor necrosis factor alpha (TNF-alpha) present in serum 2 h postchallenge, whereas no significant differences in TNF-alpha serum levels were detectable in mice treated with lower doses of T cells or with saline. Pretreatment of T-cell-reconstituted SCID mice with neutralizing anti-IFN-gamma monoclonal antibodies completely protected mice from bacterial challenge and reduced TNF-alpha levels in serum. We conclude that under the experimental conditions described here, IFN-gamma- and interleukin-2-producing TH1 cells represent an important trigger mechanism inducing TNF-alpha-mediated hypersensitivity to bacterial endotoxin.

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The immune response and the eye. III. Anterior chamber-associated immune deviation can be adoptively transferred by serum.

After the anterior chamber (AC) injection of trinitrophenol-coupled (TNP) spleen cells, it is observed that systemic delayed-type hypersensitivity responses to TNP are inhibited by Ag-specific suppressor T cells. We recently reported that suppression is initiated by viable TNP-coupled T cells within the inoculum and upon further analysis we found that these cells have the surface phenotype of CD4+ Ts inducer cells. We report here that treatment of these TNP-T cells with cycloheximide or cytochalasin-B before to AC injection abolishes suppression, whereas treatment with 2000 rad radiation does not. This indicates that protein synthesis and secretion are required to initiate suppression but proliferation is not. Further, we demonstrate the adoptive transfer of suppression by serum of AC inoculated animals. Detection of the component in serum in adoptive transfer assays, however, requires removal of the spleen before AC injection. We establish that the material in serum is a Ts cell product (T suppressor-inducer factor) based on three criteria: it is Ag specific, genetically restricted, and reactive with a mAb that specifically identifies these molecules. These results suggest that the signal leaving the eye to induce suppression of delayed-type hypersensitivity is T cell derived and that molecules mediating immune regulation for this organ are made within the eye and transported via the serum to the spleen.

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Killing of rat adenocarcinoma 13762 in situ by adoptive transfer of CD4+ anti-tumor T cells requires tumor expression of cell surface MHC class II molecules.

CD4+ anti-tumor T cells reactive with rat adenocarcinoma 13762 kill tumor in vitro and cause regression of tumor in vivo. The role of various host immune cells in CD4+ T-cell-mediated tumor elimination in vivo was investigated by adoptive transfer of anti-tumor T cell clones to recipients that were selectively depleted of individual immune cell types. By these means, macrophages and NK cells were found to be required for tumor killing. Depletion of host CD4+ T cells, CD8+ T cells, or neutrophils was without effect on tumor elimination by anti-tumor T cells. An essential role for antigen receptor-negative NK cells is likely dependent upon secretion of IFN-gamma from NK cells since treatment of tumor recipients with anti-IFN-gamma antibody prior to adoptive transfer and tumor challenge abrogated T cell killing, resulting in progressive tumor growth. Viability of adenocarcinoma 13762 or anti-tumor T cells was unaffected by treatment with either IFN-gamma or anti-IFN-gamma antibody in vitro, but cell surface MHC class II expression was induced in tumor cells by exposure to IFN-gamma. In addition, tumor cells were isolated from tumor-bearing animals by absorption using anti-MHC class II antibody, demonstrating that 13762 tumor expresses cell surface MHC class II antigens in situ. However, if hosts were depleted of NK cells before tumor challenge, MHC class II+ tumor was not recovered. Collectively these results suggest that adenocarcinoma 13762 is eliminated by MHC class II-restricted CD4+ T cells by direct tumor killing.

Adenocarcinoma↗

Adoptively transferred reactivity to M. leprae in nude mice infected with M. leprae.

Reversal reactions are manifestations of delayed hypersensitivity to M. leprae and are thought to be usually accompanied by manifestations of effective cell-mediated immunity (CMI) as measured by bacterial clearing. These experiments were designed to study the induction of reversal reactions in M. leprae-infected, congenitally athymic nude mice using adoptive transfer of CMI. Splenic cell suspensions derived from unimmunized heterozygous nu/+ mice, and those vaccinated with heat-killed M. leprae, viable BCG and a mixture of the two antigens were diluted to contain 10(4), 10(5), 10(6), 10(7) lymphocytes/0.1 ml and infused intravenously into multibacillary nude mice. The production of reversal reactions in leprous nude mice in response to adoptively transferred CMI was studied in a quantitative fashion. Dose responsive induction of reversal reactions, apparent by footpad inflammation and swelling, decreased morphological indices (MI) of the bacteria and mononuclear cell infiltrations, histopathologically, were observed. For nude mice receiving cells primed with 3.9 X 10(5) living BCG alone, the effective dose 50% (ED50) was 1.0 x 10(6) lymphocytes to induce reversal reactions. For those receiving cells primed with 10(7) M. leprae the ED50 was 3.7 x 10(5) lymphocytes. For nude mice receiving cells primed with a mixture consisting of 1/2 the above dose of BCG + 1/2 the above dose of M. leprae, the ED50 was 6.8 x 10(4) lymphocytes.

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The analgesic defect of C57BL/6J-bgJ/bgJ (beige-J: Chediak-Higashi syndrome) mice transmitted by adoptive transfer of spleen cells to normal littermates.

We recently discovered and reported that C57BL/6J-bgJ/bgJ (beige-J) mice have a deficiency in their analgesic response to intracerebroventricularly-administered morphine in the tail-flick test. Postulating a link between these findings and the known immunological defect of beige-J mice (Chediak-Higashi syndrome), we examined the effect of splenectomy on beige-J mice and the adoptive transfer of their mononuclear spleen cells to normal littermate controls (2 x 10(7) cells via tail vein). Eight days after these interventions, the splenectomized beige-J mice responded nearly as well as normal mice to centrally administered morphine in the tail-flick test. The adoptive transfer recipients, in contrast, nearly completely lost their response to the analgesic action of morphine in this test. From the combined results, the spleen appears to be a significant factor in the analgesic defect of beige-J mice and, furthermore, mononuclear splenocytes appear to be the source of a substance that can transfer this defect to otherwise normal animals.

Analgesia↗

Pancreatic lymph nodes are early targets of T cells during adoptive transfer of diabetes in NOD mice.

The circulation pathway of diabetogenic T lymphocytes prior to insulitis was investigated using adoptive transfer of diabetes in the non-obese diabetic (NOD) mouse model. Transferred T cells were distinguished from recipient T cells using two strains of mice congenic at the Thy1 locus. They were monitored in the pancreas and in several lymphoid organs including thymus, spleen, and lymph nodes from pancreatic, mesenteric, axillary, inguinal and lomboaortic areas, from Day 0 to Day 15 after the adoptive lymphocytic transfer. Immunohistochemical studies showed that at Day 2 post-transfer the pancreatic lymph nodes (PLN) and to a lesser extent the spleen, are the first two organs to be infiltrated. The amount of T cells of donor origin using quantitative flow cytometric analysis was 4% and 2.6% respectively. This percentage increased to 19% in the PLN at Day 15 and did not exceed 7% in the spleen. Analysis of the expression of IL-2 receptor present at the surface of activated T lymphocytes showed that 73% of donor T cells were activated in the PLN within 3 days post-transfer in contrast to 0% in the spleen. The accumulation and activation of T cells in the PLN may imply a role of these lymphoid organs in harbouring the diabetogenic T cells during the early steps of the disease.

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Analysis of neonatally induced tolerance of H-2 alloantigens. I. Adoptive transfer indicates that tolerance of class I and class II antigens is maintained by distinct mechanisms.

Neonatal inoculation of mice with semi-allogeneic lymphohematopoietic cells produces a state of highly specific allograft tolerance. Phenotypically, by both in vivo and in vitro criteria, antigen-reactive cells specific for the tolerated antigens appear to be clonally deleted from intact, tolerant mice. However, a series of adoptive transfer experiments using mice rendered tolerant of various H-2 alloantigens revealed that tolerance of Ia (class II) antigens is maintained by a different mechanism than tolerance of K/D (class I) antigens. Long-term acceptance of Ia-disparate grafts by recipients of Ia-tolerant lymphoid cells suggested that an active process (rather than passive clonal deletion) mediates and maintains this type of tolerance. No comparable success was achieved when tolerance of isolated class I or entire H-2 haplotype disparity was examined, suggesting that clonal deletion might be operative in these combinations. Modest prolongation of skin-graft survival was observed in adoptive transfer recipients of lymphoid cells from donors tolerant of I-JECSD disparity. These data are compatible with the hypothesis that the central I region (JE) promotes tolerance induction to associated strong IA- and D-region alloantigens by activating a suppression mechanism.

Animals↗

Effect of adoptive transfer of CD4, CD8 and B cells on recovery from MHV3-induced immunodeficiencies.

A chronic viral infection can occur when the host fails to mount an effective immune response to clear the virus. Mouse hepatitis virus type 3 (MHV3) appears to be an excellent model for the study of the relationship between viral-induced immunodeficiency and chronic disease development. (C57BL/6 x A/J)F1 mice surviving acute hepatitis develop a chronic disease characterized by T- and B-cell immunodeficiencies, viral persistence in various organs including the brain, spleen and thymus, and death within 3 months postinfection (p.i.). We have reported that T- or B-cell deficiencies, observed in MHV3 chronically infected (C57BL/6 x A/J)F1 mice, can be partially or totally thwarted by adoptive transfer of CD4+, CD8+ and/or B cells, at 15 days p.i. in mice surviving the acute phase of the disease. Adoptive transfer of syngeneic CD4+ and/or CD8+ allowed a partial restoration of the T-cell deficiencies, as characterized by thymic atrophy, decrease in splenic T cells, and in all thymocyte subpopulations. B-cell immunodeficiency, as defined by a decrease in splenic B cells, as well as in the bone marrow pre-B- and B-cell compartments, and the occurrence of abnormally larger forms of bone marrow pre-B and B cells, were partially thwarted by B-cell treatment only. Splenic B cells and the bone marrow B-cell compartment, respectively, returned partially or totally to normal values, whereas the pre-B-cell compartment remained depleted in infected mice treated with B cells. Levels of all immunoglobulin classes returned to normal values in MHV3 chronically infected mice when treated with CD4+ in combination with CD8+ cells. All T- and/or B-cell treatments, however, were sufficient to thwart the process of the chronic disease, and favoured the survival of mice for up to 6 months p.i.

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Intracerebral infection with murine cytomegalovirus induces CXCL10 and is restricted by adoptive transfer of splenocytes.

The brain's intrinsic immune system consists of glial cells that produce cytokines and chemokines in response to stimulation with cytomegalovirus (CMV). The present experiments were undertaken to determine whether this intrinsic glial cell response alone is sufficient to control CMV infection of the central nervous system (CNS) or whether effector cells from the somatic immune system are also required. Following stereotactic, intracerebroventricular (icv), injection of murine cytomegalovirus (MCMV) into immunocompetent (C.B-17) mice, viral spread in the brain was limited to the cells of the ventricular walls and the infection was resolved by 10 days post infection (p.i.). In contrast, icv infection of immunodeficient (C.B-17 SCID/bg) mice resulted in viral spread from the ventricles throughout the brain parenchyma and these mice succumbed to lethal disease. Adoptive transfer of total splenocytes from major histocompatibility complex (MHC)-matched, MCMV-primed animals restricted intracerebral viral infection to the periventricular cells and reduced levels of reporter gene expression from the viral genome. Peripheral immune cell transfer also protected immunodeficient animals from lethal disease. Depletion of Thy 1.2(+) cells from MCMV-primed splenocytes abolished the protective effect of adoptive transfer. Viral expression was found to be fourfold greater in the brains of animals given Thy 1.2-depleted splenocytes than from those receiving total undepleted cells. As MCMV infection proceeded in the brains of immunodeficient mice, levels of the T-cell chemoattractants CXCL10 and CCL2 remained elevated, whereas CXCL10 levels waned in the brains of animals receiving transferred splenocytes. Taken together, these results demonstrate the ability of T lymphocytes to restrict intracerebral viral spread and indicate that intrinsic glial cell responses alone are insufficient to control MCMV brain infection.

Animals↗

Prevention of adoptive transfer of murine Sjögren's syndrome into severe combined immunodeficient (SCID) mice by antibodies against intercellular adhesion molecule-1 (ICAM-1) and lymphocyte function-associated antigen-1 (LFA-1).

We have analysed the role of ICAM-1 and LFA-1 during development of autoimmune sialadenitis in MRL/lpr mice by direct analysis of RNA obtained from the salivary gland tissues, and the therapeutic effects with antibody administration on adoptive transfer system into SCID mice. The expression of cell adhesion molecules was assessed by using reverse transcriptase polymerase chain reaction (RT-PCR) and Southern blot analysis, and immunohistochemical analysis. Up-regulated expression of ICAM-1 mRNA was observed before the onset of inflammatory lesions in the salivary glands at 1 month and 2 months old, and thereafter LFA-1 mRNA was expressed within the typical inflammatory lesions, resembling human Sjögren's syndrome in MRL/lpr mice. Immunohistochemically, ICAM-1 was localized exclusively in the endothelial cells of varying sized blood vessels before the onset of disease, and LFA-1 expressing inflammatory cells were found within these lesions. When the therapeutic effects in vivo were examined, antibodies to ICAM-1 in combination with anti-LFA-1 prevented adoptive transfer of Sjögren's syndrome in MRL/lpr mice into SCID mice, while no significant effect was found when treated with either antibody. These findings indicate that in Sjögren's syndrome-like autoimmune lesions in MRL/lpr mice the ICAM-1/LFA-1 pathway may play a crucial role in the initiation and subsequent progression of T cell-mediated autoimmunity in the salivary and lacrimal glands of MRL/lpr mice.

Animals↗

Active specific immunotherapy with extracted tumor-specific transplantation antigen, cyclophosphamide, and adoptive transfer of tumor-specific cytotoxic T-cell clones.

An L3T4-, Lyt2+ tumor-specific, cloned T-lymphocyte cell line (RTT-2) was isolated from a spleen cell population harvested from C3H/HeJ mice, following in vivo immunization against a syngeneic MCA-induced fibrosarcoma (MCA-F) and in vitro restimulation with 1-butanol-extracted, isoelectrophoretically purified MCA-F tumor-specific transplantation antigen (TSTA). RTT-2 required exposure to homotypic-extracted MCA-F TSTA in combination with low-dose IL-2 to maintain its specific cytotoxic activity in vitro. In vivo local adoptive transfer of RTT-2 caused specific neutralization of homotypic MCA-F, but not heterotypic MCA-D, tumor cells. Systemic in vivo transfer of RTT-2 alone augmented host resistance. In combination with a triple regimen of weekly doses of purified TSTA (1 microgram SC) and a single ip injection of CY (20 mg/kg), adoptive transfer of RTT-2 cells (1 X 10(7)) retarded the neoplastic outgrowth in and prolonged the survival of primary hosts bearing 3-, 7-, and 14-day established MCA-F tumors. In a spontaneous pulmonary metastasis model following amputation of a tumor-bearing limb, the triple regimen of TSTA/CY/RTT-2 markedly reduced the number of lung colonies. Thus RTT-2, which displays specific tumoricidal activity in vitro and in vivo, may afford a suitable tool to dissect T-cell receptors recognizing tumor markers on 1-butanol-extracted, MCA-F TSTA.

Animals↗

Adoptive transfer of type 1 CTL mediates effective anti-central nervous system tumor response: critical roles of IFN-inducible protein-10.

The development of effective immunotherapeutic strategies for central nervous system (CNS) tumors requires a firm understanding of factors regulating the trafficking of tumor antigen-specific CTLs into CNS tumor lesions. Using C57BL/6 mice bearing intracranial (i.c.) ovalbumin-transfected melanoma (M05), we evaluated the efficacy and tumor homing of i.v. transferred type 1 or 2 CTLs (Tc1 or Tc2, respectively) prepared from ovalbumin-specific T-cell receptor-transgenic OT-1 mice. We also tested our hypothesis that intratumoral (i.t.) delivery of dendritic cells that had been transduced with IFN-alpha cDNA (DC-IFN-alpha) would enhance the tumor-homing and antitumor effectiveness of adoptively transferred Tc1 via induction of an IFN-gamma-inducible protein 10 (IP-10). In vitro, DC-IFN-alpha induced IP-10 production by M05 and enhanced the cytolytic activity of Tc1. In vivo, i.v. transferred Tc1 trafficked efficiently into i.c. M05 and mediated antitumor responses more effectively than Tc2, and their effect was IP-10 dependent. I.t. injections of DC-IFN-alpha remarkably enhanced the tumor homing, therapeutic efficacy, and in situ IFN-gamma production of i.v. delivered Tc1, resulting in the long-term survival and persistence of systemic ovalbumin-specific immunity. These data suggest that Tc1-based adoptive transfer therapy may represent an effective modality for CNS tumors, particularly when combined with strategies that promote a type 1 polarized tumor microenvironment.

Animals↗

Accumulation of adoptively transferred adherent, lymphokine-activated killer cells in murine metastases.

While close contact between lymphokine-activated killer (LAK)/adherent, lymphokine-activated killer (A-LAK) cells and tumor cells is believed to be a prerequisite for initiating the events leading to tumor cell lysis, clear evidence for the ability of these effector cells to infiltrate tumors or tumor metastases in vivo still has to be obtained. In the present study, we report that a significant fraction of adoptively transferred A-LAK cells, labeled with fluorochromes for identification, accumulates in lung and liver metastases of the B16 melanoma, the MCA 102 sarcoma and the Lewis lung carcinoma lines. Thus, 5- to 10-fold higher numbers of A-LAK cells were found in the malignant lesions compared to the surrounding normal tissue. The infiltration seemed very heterogeneous after intravenous injection of moderate numbers of A-LAK cells (15 x 10(6)). However, after adoptive transfer of 45 million A-LAK cells, an A-LAK cell/tumor cell ratio higher than 1:1 in most metastases was observed. Surprisingly, approximately 5% of the lung metastases seemed totally resistant to infiltration even though neighboring metastases were highly infiltrated. While substantial infiltration of lung metastases was seen after i.v. injection, significant infiltration of liver metastases was seen only after intraportal injection of the A-LAK cells indicating impaired traffic of intravenous injected A-LAK cells through the lung capillaries. These results present direct evidence that A-LAK cells, upon a proper route of administration, have the potential to migrate to and heavily infiltrate metastases from murine tumors of different origin.

Animals↗