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T Blankenstein

Publications and source records attributed to T Blankenstein.

At least 73 records · Page 4Linked to original sources

Macrophage colony-stimulating factor gene transfer into tumor cells induces macrophage infiltration but not tumor suppression.

In order to analyze the effect of a high local concentration of macrophage colony-stimulating factor (M-CSF; CSF-1) on tumor growth, the plasmacytoma cell line J558L was transfected with the human M-CSF gene and injected into syngeneic BALB/c mice. In contrast to the parental tumors, M-CSF transfectants were heavily infiltrated by macrophages as evidenced by immunohistochemistry with antibodies to Mac-1 and Mac-3 and by isolation of the macrophages from the tumor. Nevertheless, tumor growth was only slightly affected by M-CSF and M-CSF-producing cells grew as tumor in all cases. The growth retardation of M-CSF-producing cells varied depending on the experiment and seemed to be due to an indirect effect because the growth rate of the cells in vitro had not changed upon gene transfer. Attempts to activate the tumor-infiltrating macrophages for tumor suppression by systemic application of interferon-gamma and/or lipopolysaccharide were not successful. Altogether, our results suggest that M-CSF is a potent chemoattractant for macrophages in vivo but alone is not sufficient to activate these macrophages for tumoricidal activity.

Animals↗

Eosinophils infiltrating interleukin-5 gene-transfected tumors do not suppress tumor growth.

Tumor-associated eosinophils have been observed in human tumors and in experimental tumor models, but their function is poorly understood. To study the role of eosinophils during tumor growth, the plasmacytoma J558L and the mammary adenocarcinoma TS/A were transfected with an expression vector encoding the murine gene for interleukin-5 (IL-5), a cytokine inducing proliferation and activation of eosinophils. Injection of parental cells, mock-transfectants and IL-5-producing cells into syngeneic mice showed that local IL-5 secretion induced rapid tumor infiltration by eosinophils, as evidenced by immunohistochemical staining, but nevertheless did not alter the tumor growth kinetics of IL-5 transfectants. Therefore, the mere presence of IL-5 and eosinophils was not sufficient to induce a protective host immune response.

Animals↗

Lymphotoxin, tumour necrosis factor and interleukin-6 gene transcripts are present in Hodgkin and Reed-Sternberg cells of most Hodgkin's disease cases.

Tissue specimens from 26 cases of Hodgkin's disease (HD) and six HD-derived cell lines were analysed for tumour necrosis factor (TNF), lymphotoxin (LT), and interleukin (IL)-6 RNA transcripts by in situ hybridization, in some cases subsequent to immunohistology for CD30 antigen. LT and TNF transcripts were found in tumour cells of all cases; IL-6 gene transcripts were detectable in 19/23 cases. Presence of RNA specific for these cytokines was not correlated with any of the following parameters: sex, symptoms and histotype, as well as immunophenotype and association of the tumour cells with Epstein-Barr virus. Rather, the presence of LT, TNF and IL-6 transcripts appeared to characterize Hodgkin and Reed-Sternberg cells in general, supporting concepts which suggest that HD represents a malignancy of cytokine secreting activated cells, and that many of the features distinguishing HD from other malignant lymphomas may ultimately be due to expression of cytokines. LT and TNF RNA transcripts were also found in five HD-derived cell lines, whereas supernatants of these cell lines contained high levels of LT, but low or undetectable levels of TNF activity. This suggests that, although not detectable at the level of RNA transcripts, differences between HD cases may exist on the level of cytokine gene transcript processing, translation and polypeptide secretion.

Adolescent↗

Kinetic analysis of cytokine gene expression in the livers of naive and immune mice infected with Listeria monocytogenes. The immediate early phase in innate resistance and acquired immunity.

The anamnestic response to infection with Listeria monocytogenes is characterized by the rapid elimination of normally lethal doses of bacteria and accelerated granuloma formation. These phenomena are mediated by listeria-specific memory T cells within the first 24 h after reinfection. In order to elucidate the mechanisms operative during this decisive phase of infection, we conducted a comprehensive kinetic and quantitative analysis of cytokine gene expression in the livers of naive and immune mice. Organs were removed at 30 min, and 1, 2, 6, and 24 h after primary and secondary infections, and PCR3-assisted messenger RNA (mRNA) amplification was performed on matched samples using primers specific for IL-1 beta, IL-6, M-CSF, GM-CSF, TNF-alpha, IFN-gamma, IL-10, IL-4, IL-2, IL-3 and I1-2Rp55. The cytokine pattern characteristic of secondarily infected animals differed qualitatively by the expression of mRNA for IL-2, IL-2Rp55, IL-3, and IL-4, demonstrating the accumulation and activation of specific T cells in the livers as early as 1 to 2 h after reinfection. Combined in vivo depletion of both CD4+ and CD8+ T cells before reinfection almost completely abrogated the differentiated cytokine profile typical of the anamnestic response. Using competitive PCR for semiquantitative determination of mRNA levels, the amount of IL-1 beta and IL-6 mRNA was found to be very similar during primary and secondary infection, whereas TNF-alpha mRNA was found to be increased by approximately 10-fold 2 h and IFN-gamma mRNA by approximately 50 to 100-fold 6 h after reinfection when compared with a primary challenge. Combined in vivo depletion of both CD4+ and CD8+ T cells before reinfection resulted in a substantial (approximately 10-fold) decrease in IFN-gamma mRNA expression. To correlate these findings with cytokine secretion, spleen cells from naive and immune as well as normal and CD4+ and CD8+ cell depleted mice infected 6 h previously were cultured for 48 h, and supernatants were analyzed for the amount of the above mentioned cytokines. Semiquantitative PCR-assisted mRNA amplification is demonstrated to be a superior tool in dissociating the mediators of innate resistance from those operative in protective immunity and granuloma formation.

Animals↗

Analysis of cytokine mRNA levels in interleukin-4-transgenic mice by quantitative polymerase chain reaction.

Interleukin (IL)-4-transgenic mice were used as a model system to study the consequences of low levels of IL-4 expression for the expression of other cytokines examined by quantitative polymerase chain reaction (PCR). For this purpose, a plasmid was constructed which contains, in tandem array, 5' and 3' primer sequences specific for the cytokine genes IL-1 to IL-6, tumor necrosis factor (TNF), lymphotoxin (LT), interferon (IFN)-gamma and beta-actin. During co-amplification, target and control DNA compete for the primers and the amount of PCR product is proportional to the amount of input DNA. Competitive PCR was performed first to adjust the cDNA to be compared to identical concentrations of beta-actin cDNA and subsequently to determine cytokine mRNA levels from spleen cells of normal and IL-4-transgenic animals. The sensitivity of this approach was demonstrated by the capability to detect a twofold difference in IL-4 mRNA levels between IL-4-transgenic heterozygous and homozygous animals. Upon lipopolysaccharide activation, the IL-4 transgene which is expressed essentially in B lymphocytes was induced approximately 50-fold. Several cytokine mRNA such as those coding for IL-5, IL-6, IFN-gamma and also the IL-4 receptor were found to be up-regulated in IL-4-transgenic mice, whereas IL-1, IL-2, IL-3, TNF and LT mRNA levels did not seemed to be influenced by IL-4. A possible functional significance of the elevated IFN-gamma mRNA was demonstrated by showing that (a) CD23 expression was not increased, and (b) Mac-1+ cells were markedly increased in the spleen of transgenic mice.

Animals↗

Interleukin-4-mediated tumor suppression in nude mice involves interferon-gamma.

The molecular events during the anti-tumor response induced by interleukin (IL)-4 were investigated by quantitative polymerase chain reaction. The growth of Chinese hamster ovary cells transfected to produce IL-4 (CHO.T1) was strongly suppressed when cells were injected intraperitoneally into nude mice and this suppression was accompanied by the rapid accumulation of activated macrophages. Peritoneal cells from such mice were analyzed for mRNA induced by IL-4. Correlating with a high local IL-4 concentration, several transcripts were found to be up-regulated during the early phase of the anti-tumor response [IL-4 receptor, IL-5, tumor necrosis factor (TNF) and interferon (IFN)-gamma]. The functional relevance of the elevated mRNA levels was analyzed by injection of CHO.T1 cells together with anti-cytokine monoclonal antibodies (mAb). In contrast to anti-IL-5 and anti-TNF mAb, an anti-IFN-gamma mAb interfered with the anti-tumor response demonstrating the involvement of IFN-gamma during the IL-4-induced tumor suppression. Tumor growth in anti-IFN-gamma mAb-treated animals was significantly delayed in comparison to anti-IL-4 mAb-treated mice, suggesting that IFN-gamma-independent effector cells may also be involved.

Animals↗

Abnormal TNF production in prediabetic BB rats is linked to defective CD45R expression.

The genetic basis and diabetes association of aberrant tumour necrosis factor-alpha (TNF-alpha) production by activated peritoneal macrophages in diabetes-prone (dp) biobreeding (BB) rats was analysed. Southern blot analysis could not detect a restriction fragment length polymorphism for the TNF gene distinguishing dp BB rats from Wistar (Wi) rats and diabetes resistant (dr) BB rats. The contiguous genetic arrangement of lymphotoxin (LT) and TNF genes described in mouse and man was also found in the rat by cloning a chromosomal region covering both genes. In search of a polymorphic marker we amplified a (CA)n:(GT)n microsatellite in the TNF promoter region by polymerase chain reaction (PCR). We detected two alleles, (CA)26 and (CA)33, but no correlation with diabetes risk was seen. Crosses between dp BB rats and Wi or Lewis. 1A (Lew. 1A) rats, respectively, indicated that aberrant TNF-alpha production of activated macrophages is inherited dominantly with only weak penetrance. Analysis of the F2 generation and backcrosses with the two parental strains showed that aberrant TNF production co-segregates with lymphopaenia and defective CD45R expression, markers known to reflect a diabetes predisposing gene(s) outside the RT1 complex. We conclude that a single linkage group is responsible for both aberrant TNF production and defective T-cell maturation in dp BB rats.

Animals↗

Interleukin 7 induces CD4+ T cell-dependent tumor rejection.

The potential of interleukin 7 (IL-7) to induce an antitumor response in vivo was analyzed. Therefore, the IL-7 gene was expressed in the plasmacytoma cell line J558L. Although the growth of IL-7-producing cells was not retarded in vitro, the IL-7-producing cells were completely rejected upon injection into mice. Tumor rejection was observed only in syngeneic but not in nude mice. The tumor-suppressive effect could be abolished by the parallel injection of an anti-IL-7 monoclonal antibody. Immunohistochemical analysis revealed IL-7-dependent infiltration of the tumor tissue by CD4+ and CD8+ T lymphocytes, and also type 3 complement receptor-positive (CR3+) cells, predominantly macrophages. Depletion of T cell subsets in tumor-bearing mice showed the absolute dependence of the antitumor response on CD4+ cells, whereas tumor rejection was unaffected by depletion of CD8+ cells. In addition to CD4+ cells, CR3+ cells were also needed for tumor rejection. The antitumor effect of IL-7 was confirmed by expression of the IL-7 gene in a second tumor cell line of different cellular origin. Together, our results demonstrate that a high local IL-7 concentration at the tumor site obtained by tumor cell-targeted gene transfer leads to tumor rejection involving a cellular mechanism that seems to be different from the ones observed in analogous experiments with other cytokines.

Animals↗

Tumor suppression after tumor cell-targeted tumor necrosis factor alpha gene transfer.

The tumor necrosis factor alpha (TNF-alpha) gene was introduced by retroviral gene transfer into the TNF-alpha-insensitive tumor cell line J558L. Production of 40 pg/ml TNF-alpha by clone J2T12 consistently did not change the growth rate in vitro, but drastically suppressed tumor growth when injected into syngeneic BALB/c mice. Within 2 wk, 90% of the mice inoculated with J558L cells developed a tumor, but none of the mice injected with J2T12 did so. Within the observation period (greater than 3 mo), 60% of the mice inoculated with J2T12 did not develop a tumor. In the other 40% of the mice, tumor manifestation was significantly delayed. Mice injected simultaneously with J2T12 cells and an anti-TNF-alpha monoclonal antibody developed tumors similar to parental J558L cells. Similarly, the tumor-suppressive effects of TNF-alpha were abolished, e.g., by injection of an anti-type 3 complement receptor (CR3) monoclonal antibody that is known to prevent migration of inflammatory cells. These results and the observation of tumor-infiltrating macrophages suggest that lack of tumorigenicity of J2T12 cells is due to the TNF-alpha secretion by the tumor cells and that TNF-alpha acts indirectly by a mechanism that involves chemotactic recruitment and activation of cells, predominantly of macrophages. In contrast, the tumor growth was not affected when, instead of TNF-alpha, interleukin 6 was expressed by J558L cells. Together, our results support the concept of tumor cell-targeted cytokine gene transfer as a tool for cancer treatment, and particularly demonstrate that extremely low doses of TNF-alpha produced by tumor cells are sufficient to inhibit tumor growth without detectable side effects.

Alkaline Phosphatase↗

The interleukin-6 gene locus seems to be a preferred target site for retrotransposon integration.

Recently, we have observed the insertion of a retrotransposon into the interleukin-6 (Il-6) locus of a mouse somatic cell line. Here we report the characterization of Il-6 genomic regions from both mouse and rat. Restriction site analysis, DNA sequence analysis, and computer-assisted search revealed eight retrotransposon-like elements distributed over a 25 kilobase (kb) mouse Il-6 region. In the rat, five different retrotransposons have been identified within a 17 kb Il-6 region. The retrotransposons belong to the LINE-, Alu I or Alu II families, or to a rat specific class of retrotransposons. Some of the retrotransposons exhibit characteristic features such as target site duplication and a poly A-tract. Remarkably, several retrotransposons map to different chromosomal locations in the mouse and rat. A genealogical tree of mouse, rat, and human Il-6 loci demonstrates a series of retrotranspositions that recently occurred in evolution. These results suggest that the Il-6 locus serves as a preferred target site for retrotransposon integration during evolution.

Animals↗

Cytokines and cancer: experimental systems.

The transfer of certain cytokine genes into cancer cells can provide very powerful suppression of tumor growth in the absence of any toxic side effects. Some of these cytokines, such as interleukin-4, granulocyte colony-stimulating factor and tumor necrosis factor, can mediate powerful immune suppression even in T-cell-deficient animals and appear to be effective for poorly or non-antigenic tumors. However, approaches must be found to induce or deliver cytokines locally at the tumor site.

Animals↗

The rat interleukin-5 gene: characterization and expression by retroviral gene transfer and polymerase chain reaction.

The rat interleukin-5 (IL-5) gene was isolated from a genomic lambda phage library and a fragment containing all four exons was inserted into the retroviral vector pXT1, resulting in pXTRIL5. Upon retroviral gene transfer into two IL-5-dependent mouse cell lines, B13 and T88M, autonomously growing cells were established and B-cell growth factor activity was detected in the supernatants of the infected cells. "cDNA" versions of the rat IL-5 gene were rescued by the polymerase chain reaction (PCR) with primers specific for the flanking regions of the cloning site in pXT1. Restriction or DNA sequence analysis of five different clones revealed precise splicing in two cases, while three of the clones had retained the first intron. In addition, in two of these about 400 bp of rat IL-5 5' flanking regions were deleted. The sequence comparison of rat, mouse, and human IL-5 genes revealed a high degree of conservation (e.g., mouse and rat were 92% homologous at the amino acid level). The combination of retroviral gene transfer and PCR may offer an alternative, efficient method for the cloning of cDNAs.

Amino Acid Sequence↗

Generation of competitor DNA fragments for quantitative PCR.

A convenient and generally applicable method for the generation of competitor DNA fragments for quantitative PCR is described. Using mouse-specific primers, fragments are amplified from DNA of an evolutionarily distantly related species under low-stringency annealing conditions. Because these artificially created fragments contain the mouse primer specific ends, they can be used for the quantification of the mouse DNA amplified by these primers. Competitor DNA fragments that differ in size from the corresponding mouse DNA are selected to distinguish both fragments visually by gel electrophoresis. Competitor DNA fragments were generated for mouse beta-actin, interleukin-1, and tumor necrosis factor (TNF). Co-amplification of beta-actin cDNA for adjustment of equal amounts of input cDNA and subsequently TNF cDNA from lipopolysaccharide (LPS)-activated and nonactivated spleen cells with serial dilutions of the respective competitor DNA fragments allowed a semiquantitative comparison of the ratio of TNF mRNA present in both cDNA samples. Under certain conditions, the competitor DNA fragments can be used to determine the approximate molar concentration of a mRNA.

Animals↗

A polymorphic microsatellite in the tumor necrosis factor alpha promoter identifies an allele unique to the NZW mouse strain.

We have amplified a (CA)n:(GT)n microsatellite from the TNF promoters of a panel of mouse strains using the polymerase chain reaction. The length of the microsatellites was polymorphic, with eight alleles observed among 15 inbred strains bearing seven distinct H-2 haplotypes, and four outbred strains. In B10 congenic strains, the TNF allele detected by microsatellite polymorphism segregated with the MHC, and in recombinant haplotypes (NOD, NZW), it segregated with H-2D. The TNF allele found in the NZW strain (H-2z) was distinct from those of all other haplotypes, consistent with the hypothesis that this strain may carry a genetic defect in TNF production.

Alleles↗

DNA rearrangement and constitutive expression of the interleukin 6 gene in a mouse plasmacytoma.

To study the potential involvement of IL-6 in the development of plasmacytomas, a number of plasmacytoma lines were analyzed for alterations in the IL-6 locus. A DNA rearrangement due to the insertion of an intracisternal A particle retrotransposon 18 bp 5' of the transcriptional start site was detected in the cell line MPC11. The IL-6 gene is constitutively expressed in MPC11, suggesting the involvement of IL-6 in the development of certain myeloma/plasmacytomas according to the "autocrine growth hypothesis".

Animals↗

Retroviral interleukin 4 gene transfer into an interleukin 4-dependent cell line results in autocrine growth but not in tumorigenicity.

A retroviral vector has been constructed containing the mouse interleukin 4 (IL 4) gene under the transcriptional control of the thymidine kinase promoter. Infection of the IL 4-dependent T cell line CT4S by the thymidine kinase IL 4 construct resulted in factor-independent growth. The infected cells grow as a consequence of continuous consumption of the endogenously produced IL 4. Clones were established secreting different amounts of IL 4 but none of them was capable of growing in vivo. The lack of correlation between factor-independent growth and tumorigenicity distinguishes IL 4 from other growth factors and could reflect the recently reported activity of IL 4 to suppress tumor growth in vivo.

Animals↗

Retroviral interleukin 5 gene transfer into interleukin 5-dependent growing cell lines results in autocrine growth and tumorigenicity.

Two interleukin 5 (IL5)-specific retroviral expression vectors have been constructed containing the neomycin gene as selectable marker and either the mouse IL5 cDNA region or the rat genomic IL5 gene under the control of the thymidine kinase promoter. High viral titer supernatants derived from the transfected or infected packaging cell line psi 2 were used to infect the two cell lines B13 and T88M whose growth is dependent on exogenous IL 5. Infection resulted in G418 resistance and IL 5-independent growth with a high frequency. Clones were established which secrete between 2 and greater than 1000 U IL5. The proliferation of the IL5 autocrine growing cells could be inhibited by an antibody directed against the IL5 receptor indicating that they grow as a result of the endogenously produced IL5. Regardless of the amount of IL5 they produced, all of the clones were highly tumorigenic in nucle mice. The phenotype of the tumors was indistinguishable from that of the injected cells. T88M or B13 cells infected with a control virus neither produced IL5, nor became factor independent, nor produced tumors. Together, the IL5 gene transfer and expression into IL5-dependent growing cells are in accordance with the "autocrine growth" hypothesis and contrast analogous experiments with IL4.

Animals↗

Lack of tumorigenicity of interleukin 4 autocrine growing cells seems related to the anti-tumor function of interleukin 4.

Recently, the failure of interleukin 4 (IL4) autocrine growing CT4S cells to grow in vivo has been demonstrated. Because it could not be excluded that the cells produce insufficient amounts of IL4 to support their growth in vivo, subclones were established which are unresponsive to exogenous IL4 and therefore have acquired full growth autonomy. From the fact that the subclones likewise did not give rise to tumors when injected into nude mice, one may conclude that the IL4 production of autocrine growing CT4S prevents their growth in vivo. To test this hypothesis, a retroviral vector containing the IL4 gene under the control of the immunoglobulin heavy chain (Igh) enhancer/promoter was constructed and used to infect the myeloma cell line J558L. An IL4 producing clone was established (J558L-XEPIL4) and the tumor progression in comparison to the parental clone J558L was monitored in nude mice. The IL4 production significantly delayed the growth of J558L-XEPIL4 in vivo. Tumor suppression was much more evident when J558L-XEPIL4 cells were injected into syngeneic BALB/c mice. These results may explain why autocrine growing CT4S do not grow in vivo and suggest the involvement of functional T lymphocytes in the effectiveness of the host dependent anti-tumor action of IL4.

Animals↗