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1.
Summary Adult rats were given 105 or 106 Yoshida ascites sarcoma (YAS) cells IP and were treated with cyclophosphamide (CY) given IP in single doses of 20 mg/kg or 100 mg/kg, 2 or 5 days after YAS inoculation. Both the curative effect of CY and subsequent resistance to tumor challenge in rats that survived depended on the dose of injected tumor cells and on the dose and time of administration of CY. These three factors determined whether the host's immune response to tumor antigens would develop and contribute to the overall anti-tumor effects of the chemotherapy. The curative effects of CY were significantly less pronounced in T-cell-deficient than in normal rats. Anti-tumor and immunosuppressive activities of CY exerted opposite influences on the ultimate result of the chemotherapy. Adverse immunosuppressive effects prevailed when the drug was administered early (2 days) after YAS inoculation. In this case the chemotherapy was less efficient and the surviving rats were susceptible to a subsequent tumor challenge. Further analysis showed that the injection of CY 2 days after inoculation of YAS antigens induced strong and specific immunologic tolerance to the tumor. In contrast, when a sufficient amount of tumor antigens (higher dose of tumor cells injected and CY injection delayed) elicited an anti-YAS immune response that was not suppressed by early injection of CY (CY administered 5 days after the tumor) effective eradication of tumor cells and anti-YAS resistance in cured animals were observed.Abbreviations YAS Yoshida ascites sarcoma - CY cyclophosphamide - MRBC mouse red blood cells  相似文献   

2.
The role of interleukin-2 (IL-2) on tumor growth of B16F10 melanoma cells was assessed in two sets of mice with different immune status: normal (immunocompetent) mice and immunodeficient mice. The two sets of animals were treated with cyclophosphamide (CY) or IL-2 alone or with a combined therapy of CY+IL-2. On days 6 and 10 after tumor cell injection, we evaluated the incidence of hepatic B16 melanoma metastases and the percentage of hepatic volume occupied by metastatic tissue. We observed that the CY alone (300 mg/kg, days 3 and 8 post-tumoral inoculation) significantly reduced tumor growth in all treated mice; however, CY proved more effective in normal recipients than in immunodeficient hosts. On the other hand, whereas administration of IL-2 alone (105 IU daily, from day 3 to day 7) in immunocompetent mice significantly reduced tumor growth on days 6 and 10, in immunodeficient mice, no significant differences were observed in tumor growth either on the 6th or on the 10th day, in comparison to control groups. Finally, when the combined CY+IL-2 therapy was administered, an antisynergistic effect between these therapeutic agents was achieved both in normal and in immunodeficient mice. Thus, the addition of low-dose IL-2 (25×103 IU daily, from day 4 to day 7) to high-dose CY (300 mg/kg, days 3 and 8) significantly increased tumor growth in both the early and later periods, compared to the effect of CY alone. It is concluded that exogenous IL-2 can facilitate tumor growth of B16 melanoma cells in vivo.  相似文献   

3.
We used mice from which the primary 410.4 mammary carcinoma had been surgically excised to assess the anti-metastatic activity of low-dose cyclophosphamide (CY) followed by vaccination with dinitrophenyl (DNP)-modified, irradiated, autologous tumor cells (ATC) admixed with bacille Calmette-Guérin (BCG). Our studies revealed that CY treatment of mice followed by vaccination with DNP-modified. irradiated, ATC admixed with BCG improved the relapse-free survival compared to the survival of mice receiving either CY followed by vaccination with unmodified, irradiated, ATC admixed with BCG, or saline (control group). In addition, our studies demonstrated the importance of CY administration in eliciting the therapeutic effect of DNP-modified ATC vaccine against metastatic disease. The therapeutic effect of CY followed by DNP-modified ATC vaccine was abrogated by depletion of CD4(+) or CD8(+) T-cells, illustrating the importance of both T-cell subsets for the anti-metastatic effect of this therapeutic protocol. In addition, neutralizing anti-IFN-gamma monoclonal antibody (mAb), or neutralizing anti-tumor necrosis factor (TNF) mAb reduced the relapse-free survival of mice treated with CY followed by DNP-modified ATC vaccine, indicating the importance of both cytokines for the realization of the anti-metastatic effect of this therapeutic protocol. Since the therapeutic protocol used in our studies was similar to that employed by Berd et al. as postsurgical adjuvant therapy in cancer patients and yielded a comparable anti-metastatic effect, the information obtained from the current studies with our clinically relevant experimental tumor model is expected to shed light on the mechanism(s) by which the anti-metastatic effect of this post-surgical adjuvant therapy is realized in cancer patients.  相似文献   

4.
Investigations were performed to study: 1) the antitumor effect of BCG pretreatment on the development of Ehrlich ascites tumor in mice; 2) the effect of BCG administration in relation to the period of time before tumor inoculation and the dose levels used, and 3) the antitumor effect of an associated pretreatment of BCG and Polidin on the development of Ehrlich ascites tumor. BCG administered prior to Ehrlich ascites tumor inoculation have a protective effect evidenced by a delay in tumor development, a prolonged survival of the tumor host and, in some cases, even inhibition of tumor growth. The effect of BCG was highly dependent on 1) the dose and the time of administration of BCG and) 2 the combined pretreatment of BCG and Polidin.  相似文献   

5.
Here we show that low-dose cyclophosphamide (CY), that depends for its therapeutic effectiveness on the immunopotentiating activity of the drug for T cell-mediated tumor-eradicating immunity, is curative for ~80% of wild-type (WT) mice bearing a large s.c. MOPC-315 tumor, but only for ~10% of IFN-α/βR−/− mice bearing a large s.c. MOPC-315 tumor. Histopathological examination of the s.c. tumors of such mice on day 4 after the chemotherapy revealed that the low dose of CY led to accumulation of T lymphocytes in both the WT and the IFN-α/βR−/− mice. However, in the CY treated tumor bearing WT mice the T lymphocytes were present throughout the tumor mass and in direct contact with tumor cells, but in the CY treated tumor bearing IFN-α/βR−/− mice most of the T lymphocytes remained in blood vessels. In addition to being important for CY-induced transendothelial migration of T lymphocytes into the tumor mass, we show here that signaling via the IFN-α/βR is also important for CY-induced control of metastatic tumor progression in the spleen and liver of the tumor bearing mice. Finally, CY cured tumor bearing WT mice were resistant to a subsequent challenge with MOPC-315 tumor cells, but the few CY cured tumor bearing IFN-α/βR−/− mice were not. Thus, signaling via the IFN-α/βR on host cells in MOPC-315 tumor bearers is important for CY-induced: (a) transendothelial migration of T lymphocytes into the tumor mass and the eradication of the primary tumor, (b) control of metastatic tumor progression, and (c) resistance to a subsequent tumor challenge. This work was supported by Research Grant 03-19 from the American Cancer Society-Illinois Division.  相似文献   

6.
Summary A vaccine of Bacillus Calmette-Guérin (BCG) admixed with tumor cells induced systemic immunity and had a therapeutic effect on subclinical, disseminated micrometastasis. Inbred strain-2 guinea-pigs given IV injections of 5×103 to 106 syngeneic L10 hepatocarcinoma cells were vaccinated after metastatic foci were established in the lung parenchyma. The purpose of this study was to establish the variables that can be manipulated to assure optimal immunotherapy while minimizing deleterious side effects of the BCG. In the present study we examined the variables of source, dose, and ratio of BCG to tumor cells. Four BCG sources (lyophilized Tice and Connaught; fresh-frozen Phipps and Tice) were compared. No significant differences among these BCG preparations could be detected with respect to adjuvant potential when they were admixed with attenuated tumor cells in a vaccine. The dose study clearly demonstrated that a BCG dose dependency exists with relation to induction of effective cell-mediated immunity or survival from disseminated micrometastatic disease. Furthermore, evaluations of dose versus ratio of BCG to tumor cells also supported a BCG dose dependency, with the lowest effective BCG dose being directly influenced by tumor burden of the host. Cutaneous reactivity and hypersensitivity of the primary and secondary immunization sites of tumor-bearing animals treated with effective and ineffective vaccines supported the direct association of reaction to BCG and specific tumor immunity. However, when an in vitro leukocyte migration inhibition assay was used, the degree of reactivity to BCG could not be exploited as a quantitative, diagnostic monitor of effective systemic tumor immunity.  相似文献   

7.
Summary When the tumor-bearing leg of C57BL/6J mice was amputated 16 days after SC inoculation of 106B16 melanoma cells, all the amputated mice died of pulmonary metastases. Transfer of lungs from the amputated to normal syngeneic mice revealed tumor cells in the lungs just after amputation. Repeated weekly injections of BCG and irradiated tumor cells, beginning 24 h after amputation of the tumor-bearing limb, prolonged the survival only of mice presensitized to BCG. Injections of BCG or irradiated melanoma cells alone, of neuraminidase- and mitomycin C-treated tumor cells or of Levamisole had no effect, but injections of ConA-coated tumor cells slightly prolonged the survival of the amputated mice. Both BCG and B16 cells induced humoral and cell-mediated immunity but there was no cross-reactivity between BCG and B16 cells. Abbreviations used: ConA, concanavalin A; SC, subcutaneous; IP, intraperitoneal; IV, intravenous; ID, intradermal; IT, intratumoral; PBS, phosphate-buffered saline (0.01 M sodium phosphate, pH 7.1); VCN, Vibrio cholerae neuraminidase; HBSS, Hank's balanced salt solution; RPMIM, Roswell Park Memorial Institute medium  相似文献   

8.
Summary We investigated the combined effects of human recombinant interleukin 2 (IL-2) and cyclophosphamide (CY) on s.c. transplanted 3LL lung carcinoma in C57BL/6 mice. A total of 95% of the tumors were competely cured when CY (150 mg/kg, i.v.) was given on day 5 (5 days after tumor implantation) and IL-2 (5×104 Jurkat Units/day, i.p.) was then combined with it between day 6 and day 15. CY alone brought about the complete regression of tumors, although 60% of the mice died of local recurrence and pulmonary metastasis; IL-2 alone had no therapeutic effect. Satisfactory effects from the combination of CY and IL-2 were also obtained by 5 days administration of IL-2 between days 11 and 15, initiated 6 days after CY treatment, but not by that given before CY (days 1–5) or 1 day after CY (days 6–10). No therapeutic effects from IL-2 were observed when it was combined with other types of chemotherapy that showed not therapeutic effects by themselves. Nor were we able to observe any transplantation resistance to the rechallenge of 3LL tumor in cured mice. We particularly examined the lymphokine-activated killer (LAK) cells as we suspected that these were responsible for the development of active effector cells in the treated mice. LAK cell activity in fresh spleen cells was detected in mice treated with IL-2 alone but not in untreated mice nor in those treated with CY alone or CY plus IL-2. The number of LAK precursor cells in the spleen had increased on day 8 and on day 13 in untreated mice with 3LL, as compared with the incidence in normal mice, while the number of cells had decreased by day 18. On the other hand LAK precursor cells were suppressed on day 8 and tended to recover thereafter in CY-treated mice. Adoptively transferred LAK cells were found to accumulate in CY-treated tumors 2.5 times more densely than in untreated tumors. The preferential accumulation of LAK cells that had been activated systemically by the appropriately timed administration of IL-2 in tumor tissue was followed by the improved effects obtained by combined treatment with CY and IL-2.Supported in part by Grants-in-Aid for Cancer Research from the Japanese Ministry of Education, Science and Culture and from the Japanese Ministry of Health and Welfare  相似文献   

9.
Summary Two BCG vaccine preparations were prepared following different production methods. Immuno-BCG Pasteur F was produced by surface culture on Sauton medium; BCG-RIV was a homogenous stirred deep culture.The antitumor effects of the two BCG vaccines were investigated on the Lewis lung carcinoma (3LL) in C57Bl/6 mice. A direct relationship exists in this tumor model between the log10 dose of single-cell suspension inoculated subcutaneously in the hind footpad of mice and the onset and the degree of local tumor growth and the time of death, which is directly related to the lung metastases. No significant difference from control mice was observed in the two groups of BCG-immunized mice when 3LL tumor cells were injected 2 weeks after BCG immunization. When varying numbers of viable units of the two BCG vaccines were injected together with 105 tumor cells in separate groups of normal mice, a dose-dependent local reaction was observed with Immuno-BCG Pasteur F, which was associated with a delay in the onset and development of tumor growth and an increase in the mean survival time. The local inflammatory reaction produced with BCG-RIV was of lower magnitude, and only the highest concentration (1.8×106 viable units) led to some delay in tumor occurrence and mortality. The antitumor effect of a specific local delayed-type hypersensitivity (DTH) elicited by varying amounts of the two BCG preparations injected together with 105 tumor cells in separate groups of normal or BCG-immunized mice showed that the challenge injection of Immuno-BCG Pasteur F was in all cases more effective than the BCG-RIV, but these two vaccines were more effective in BCG-RIV-immunized mice than in Immuno-BCG F Pasteur-immunized mice.When the same number of viable units within each BCG vaccine was used as a criterion of comparison, Immuno-BCG Pasteur F produced a higher specific and nonspecific local inflammatory reaction (which was associated with a local antitumor effect) than BCG-RIV. But within 2 weeks, the latter was much better able to sensitize the mice to mycobacterial antigens. This was confirmed by the evaluation of local granuloma formation and tuberculin hypersensitivity. BCG vaccines prepared as surface-grown pellets and mechanically dispersed always sensitized mice to a lesser degree and after a much longer period of time than did the well-dispersed deep-cultured vaccine.  相似文献   

10.
Summary Some T cell-dependent immune parameters were examined in mice bearing a large MOPC-315 plasmacytoma before and after treatment with a low dose (15 mg/kg) of CY. Prior to CY therapy, spleen cells from mice bearing a large MOPC-315 tumor were depressed in their ability to generate an in vitro cytotoxic response to the MOPC-315 tumor, to a different syngeneic plasmacytoma, MOPC-104E, and to an allogeneic thymoma, EL4. The spleen cells of these mice were also depressed in their ability to proliferate in response to the T cell mitogen PHA. Following CY therapy, the spleen cells generated an enhanced anti-MOPC-315 cytotoxic response by day 2, and the level of this response continued to increase so that by day 7, it was greatly enhanced and was much greater than the response of normal spleen cells. The recovery of the cytotoxic responsiveness to the antigenically related MOPC-104E tumor after CY therapy followed a similar pattern. In contrast, the spleen cells of these animals remained depressed in their cytotoxic response to the antigenically unrelated EL4 thymoma for at least 11 days after CY therapy. Although the anti-EL4 response recovered by day 14, the level of antitumor cytotoxicity generated did not exceed that generated by normal spleen cells. The PHA response remained greatly depressed in CY-treated MOPC-315 tumor bearers, even 14 days after the chemotherapy. Thus, at a time following low-dose CY therapy, when potent T cell-dependent antiplasmacytoma immunity had completed the eradication of a large MOPC-315 tumor burden not eliminated through the direct effect of the drug, the T cell-dependent response to an unrelated tumor and to PHA remained depressed.Supported by United Public Health Service Research Grant #CA-30088 and by Training Grant #CA-09318 from the National Cancer InstitutePresented in part at the 77th annual meeting of the American Association of Cancer Research, May 7–10, 1986In partial fulfillment of the requirements of the Graduate College for the Doctor of Philosophy degree Abbreviations used: CY, cyclophosphamide; FBS, fetal bovine serum; FITC, fluorescein isothiocyanate; PHA, phytohemagglutinin  相似文献   

11.
Summary Immunostimulators such as Corynebacterium parvum (C. parvum), Bacillus Calmette-Guerin (BCG), pyran copolymer, and glucan were examined in the guinea pig L 2 C lymphoblastic leukemia model to determine their capacity for therapeutic modulation of the immune response of the host toward controlling leukemic cell proliferation. The dose, route, and frequency of administration of the stimulators were also evaluated as a function of time in order to obtain an optimal antileukemic effect. Results indicated that only C. parvum and BCG were capable of significantly increasing host survival when given 1 day after an inoculation of 1.5×10 4 viable leukemic cells. Administration of BCG or C. parvum, alone or in combination with irradiated blast cells on either days 4 or 7, was totally ineffective in prolonging survival. In the majority of cases, enhanced leukemic growth was observed on these days. The combination of BCG and/or C. parvum with irradiated syngeneic blast cells given 24 h after leukemia inoculation promoted a synergistic response with a significant increase in median survival time and a number of long-term survivors.This work was supported by contract N01-CP-53566 within the Virus Cancer Program of the National Cancer Institute  相似文献   

12.

Background

Bacillus Calmette-Guerin (BCG) is the most effective treatment for non-muscle invasive bladder cancer. However, a failure in the initial response or relapse within the first five years of treatment has been observed in 20% of patients. We have previously observed that in vivo administration of an inhibitor of nitric oxide improved the response to BCG of bladder tumor bearing mice. It was described that this effect was due to a replacement of tumor tissue by collagen depots. The aim of the present work was to clarify the mechanism involved in this process.

Methodology/Principal Findings

We demonstrated that BCG induces NIH-3T3 fibroblast proliferation by activating the MAPK and PI3K signaling pathways and also differentiation determined by alpha-smooth muscle actin (alpha-SMA) expression. In vivo, intratumoral inoculation of BCG also increased alpha-SMA and collagen expression. Oral administration of L-NAME enhanced the pro-fibrotic effect of BCG. Peritoneal macrophages obtained from MB49 tumor-bearing mice treated in vivo with combined treatment of BCG with L-NAME also enhanced fibroblast proliferation. We observed that FGF-2 is one of the factors released by BCG-activated macrophages that is able to induce fibroblast proliferation. The involvement of FGF-2 was evidenced using an anti-FGF2 antibody. At the same time, this macrophage population improved wound healing rate in normal mice and FGF-2 expression was also increased in these wounds.

Conclusions/Significance

Our findings suggest that fibroblasts are targeted by BCG both directly and through activated macrophages in an immunotherapy context of a bladder murine model. We also described, for the first time, that FGF-2 is involved in a dialog between fibroblasts and macrophages induced after BCG treatment. The fact that L-NAME administration improves the BCG effect on fibroblasts, NO inhibition, might represent a new approach to add to the conventional BCG therapy.  相似文献   

13.
The influence of whole body X-irradiation (200–800 R) and subcutaneous cyclophosphamide (CY) treatment (150–500 mg/kg) was studied on the ability of adjuvants to induce cytotoxic macrophages in vivo. Surprisingly, radiation or CY therapy alone produced growth inhibitory macrophages whose function peaked within 2 days after treatment. When adjuvants such as Bacillus Calmette Guérin (BCG), pyran copolymer, or glucan were administered ip within 2 hr after sublethal (600 R) X-irradiation, adjuvant-induced cytotoxic function was depressed but not ablated. In addition, when noninduced peritoneal macrophages were obtained 6 days after lethal (800 R) X-irradiation, their ability to be activated in vitro by lymphokine or fibroblast-derived interferon preparations was only slightly depressed at all concentrations of inducer tested. When BCG, pyran, or glucan was administered ip concurrently with sc CY treatment, only the ability of BCG to activate macrophages was markedly reduced, indicating separate mechanisms for the induction of tumoricidal macrophages. A better understanding of the interaction of chemotherapeutic and/or radiation regimens with adjuvants which affect macrophage function may be instrumental to rationalized immunotherapy protocols.  相似文献   

14.
Summary We have tried to find out if the combination of a xenogenized tumor cell vaccine and antitumor drugs is able to induce a synergistic increase in the antitumor therapeutic effect. The degree of increase in the LTD50 (50% lethal tumor dose) is expressed numerically, as a quantitative index designed to compare degrees of transplantation resistance to tumor cell challenge. A LTD50 was achieved by an intradermal (i. d.) immunization with xenogenized tumor cells when challenged with tumor cells implanted intraperitoneally 2 weeks after the immunization: this LTD50 value was 527 000 times higher than that of the non-immunized group. When we combined this type of immunization with appropriate doses of bleomycin (BLM) or cyclophosphamide (CY), which are able to augment antitumor immunity, the LTD50 was 723 000–1190 000 times higher than that of the non-immunized group. This increase in the LTD50 is definitely higher than that achieved by a single immunization with irradiated tumor cells (× 33 000) and combined with either BLM (× 93 000) or CY (×140 000). We also studied the therapeutic effect of a tumor cell vaccine combined with antitumor drugs BLM or CY in tumor-bearing rats. We observed a synergistic effect caused by BLM or CY after i. d. immunization with xenogenized tumor cells: this showed a significant increase when compared with the therapeutic effects obtained by chemotherapy alone (P <0.01). Nevertheless, there was no evidence that the above antitumor effects is superior to the effect achieved by irradiated tumor cells.  相似文献   

15.
Summary The purpose of this study was to evaluate cell-mediated tumor immunity in strain-2 guinea pigs cured of line-10 hepatocarcinoma by oil-in-water emulsions containing phenol-water extracts from either BCG or the Re mutant of Salmonella typhimurium (Re ET) admixed with mycobacteria glycolipid (P3). Treatment with these emulsions produced complete regression of established tumor nodules and prevented the growth of lymph node metastases in 25 of the 28 animals inoculated intradermally (ID) with 106 line-10 cells and given intralesional immunotherapy 6 days later. No tumor regression was observed in animals given phenol-water extracts alone. Spleen cells, taken from guinea pigs cured of line-10 by BCG extract + P3 or Re ET + P3, were tested for their influence on tumor growth by means of an in vivo adoptive neutralization test (Winn test). Cell transfer was accomplished by the subcutanous injection of various concentrations of spleen cells admixed with 105 viable line-10 cells. The results showed that as few as 107 immune spleen cells completely inhibited the growth of 105 tumor cells in 46–54% of the animals. The best tumor growth inhibition (77–85%) was observed in animals given 5 × 107 immune cells admixed with 105 tumor cells. The onset of transferrable tumor immunity was earlier in animals treated with the BCG extract + P3 than in those given the Re ET + P3. However, the duration of detectable tumor immunity was longer in the latter group. In contrast, no inhibition of tumor growth was observed in animals given spleen cells from normal or tumor-bearing guinea pigs. Moreover, spleen cells obtained from guinea pigs immunized with BCG extract + P3 or Re ET + P3 emulsions only and admixed with line-10 cells failed to transfer tumor immunity to normal animals. Thus, results from this study clearly demonstrated that cell-mediated tumor immunity was elicited in animals cured of line-10 tumor with combinations of P3 and phenol-water extracts of either BCG or Re mutant of S. typhimurium and that sensitized spleen cells effectively transferred systemic tumor immunity to normal recipients.  相似文献   

16.
Endophytic Bacillus sp. CY22 was previously isolated from the root interior of the balloon flower (Platycodon grandiflorum) (Cho et al., Biosci. Biotechnol. Biochem., 66, 1270-1275 (2002)). Three-month-old balloon flower seedlings were inoculated with 107 cfu/ml of strain CY22R3, a rifampicin-resistant strain of CY22, and external and internal root colonization was assessed 2 and 4 weeks later. After inoculation, large numbers of bacteria were observed on the root surface by scanning electron microscopy. More detailed studies using optical and transmission electron microscopy confirmed that Bacillus sp. CY22 was endophytically established within intercellular spaces, cortical cells, and aerenchymas of root. Also, Bacillus sp. CY22 showed antibiotic activities against several phytopathogens by producing the antibiotic iturin A. In the pot test, root rot of balloon flower seedlings caused by Rhizoctonia solani was suppressed when the Bacillus sp. CY22R3 was inoculated into the soil.  相似文献   

17.
Summary The immunogenicity of KMT-17 fibrosarcoma cells which had been xenogenized by infection with FV was compared to that of KMT-17 cells which had been admixed with BCG. We report here that 105 and 106 KMT-17 cells also grew progressively to kill rats, but when 105 KMT-17 cells were administered with BCG the tumor cells did not grow in the majority of rats. The strength of immunogenicity (ETD50), as measured by the number of immunizing cells required for a suppression of growth of 107 KMT-17 cells in 50% of the rats, was 2.1×103 for FV-KMT-17 and 36.3×103 for BCG+KMT-17. The tumor cell dose (LTD50) which was required to kill 50% of the rats immunized with 105 FV-KMT-17 was more than 10,000 times higher than that found in normal rats, whereas the number of tumor cells required to kill 50% of the rats immunized with the same number of BCG+KMT-17 was only 3,680 times higher than the amount found in normal rats. Thus the immunogenicity of FV-KMT-17 is much stronger than that of BCG+KMT-17.The difference in immunogenicity between the two vaccines was also observed in the tumor-neutralizing activities of spleen cells obtained from rats which had been immunized with both vaccines, as measured by a Winn assay. Moreover, the antitumor activity of spleen cells from rats immunized with FV-KMT-17 was concentrated in the carrageenan-resistant and plastic nonadherent cells, while that of spleen cells from rats immunized with BCG+KMT-17 was observed in carrageenan-sensitive and plastic adherent cells as well as in nonadherent cells. The involvement of different effector cells indicates that different mechanisms operate in the antitumor resistance in rats immunized with either FV-KMT-17 or BCG+KMT-17. Abbreviations used: FV, Friend leukemia virus; FV-KMT-17, Friend leukemia virus infected KMT-17 cells; EDT50, a 50% effective tumor dose; LTD50, a 50% lethal tumor dose  相似文献   

18.
The transport of antigen from the periphery to the draining lymph node (DLN) is critical for T-cell priming but remains poorly studied during infection with Mycobacterium bovis Bacille Calmette-Guérin (BCG). To address this we employed a mouse model to track the traffic of Dendritic cells (DCs) and mycobacteria from the BCG inoculation site in the skin to the DLN. Detection of BCG in the DLN was concomitant with the priming of antigen-specific CD4+ T cells at that site. We found EpCAMlow CD11bhigh migratory skin DCs to be mobilized during the transport of BCG to the DLN. Migratory skin DCs distributed to the T-cell area of the LN, co-localized with BCG and were found in close apposition to antigen-specific CD4+ T cells. Consequently, blockade of skin DC traffic into DLN dramatically reduced mycobacterial entry into DLN and muted T-cell priming. Interestingly, DC and mycobacterial entry into the DLN was dependent on IL-1R-I, MyD88, TNFR-I and IL-12p40. In addition, we found using DC adoptive transfers that the requirement for MyD88 in BCG-triggered migration was not restricted to the migrating DC itself and that hematopoietic expression of MyD88 was needed in part for full-fledged migration. Our observations thus identify a population of DCs that contribute towards the priming of CD4+ T cells to BCG infection by transporting bacilli into the DLN in an IL-1R-MyD88-dependent manner and reveal both DC-intrinsic and -extrinsic requirements for MyD88 in DC migration.  相似文献   

19.
Summary Sera from mice treated i.v. with 1 mg BCG, followed 14 days later by 0.1 ml (108 killed organisms) of Pseudomonas aeruginosa have shown the capacity to induce tumor necrosis when injected into mice bearing subcutaneous transplants either of a methyl-cholanthrene-induced sarcoma or of the P815 mastocytoma. Furthermore, immunotherapeutic trials were performed in mice bearing a subcutaneous transplanted sarcoma by combining BCG and low doses (0.01 to 0.05 ml) of Pseudomonas. Tumor necrosis was detectable 24 hours later only in the group treated by both BCG and Pseudomonas. In this group, we have also observed a significant decrease of tumor size in comparison with the groups of mice receiving BCG or Pseudomonas alone or no treatment.  相似文献   

20.
Summary It has been previously demonstrated that transplanted syngeneic line-10 hepatocarcinoma established in the skin of inbred guinea pigs (strain 2) regressed and regional lymph node metastases were eliminated after intratumoral injection of viable Mycobacterium bovis strain BCG. During the course of this reaction there is the development of systemic tumor immunity. The purpose of this study was to determine the relative efficacy of the induced tumor immunity to eliminate regional as well as systemic tumor burden. The approach to evaluate the efficacy of BCG-induced systemic tumor immunity in vivo, for regional as well as systemic tumor, was to develop a competition assay using increasing doses of intravascular disseminated line-10 tumor cells in animals with established regional tumors. The results clearly show that the efficacy of intratumoral BCG injection in producing regression of regional tumor is abrogated by initial intravascular doses of 103–106 line-10 cells. That the vascular systemic tumor burden diminished the effective systemic tumor immunity was demonstrated by the inability of animals with systemic tumor burdens to reject contralateral challenge of line-10 tumor cells. The capability of BCG-treated animals to reject contralateral line-10 challenge was inversely proportional to the initial intravascular tumor dose. Survival studies clearly demonstrate that a significant therapeutic effect could be achieved in guinea pigs with regional skin tumors and limited vascular metastases when the modality of therapy included BCG-intratumoral injection, followed 6 weeks later by surgery of the established skin tumor and regional lymph node. These results suggest that the development of tumor immunity after BCG-intratumoral injection is not impaired by the systemic tumor burden, but rather that it is preempted at distant sites. Abbreviations used in this paper: BCG, Bacillus Calmette-Guérin; i.a., intraarterially; i.d., intradermally; i.v., intravenously; SDA, superficial distal axillary.  相似文献   

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