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H Ben-Hur

Publications and source records attributed to H Ben-Hur.

99 records · Page 6Linked to original sources

Response of the spleen of Balb/c and p53-transgenic mice to low doses of carcinogen and to polyclonal antibodies generated against the soluble 53 kDa protein.

BACKGROUND: We have previously reported that p53-transgenic mice are highly sensitive to low doses of a carcinogen and to vaccination with soluble 53 kDa antibodies, compared to normal mice. The splenic manifestation of this strain dependent hypersensitivity was investigated immunohistochemically and morphometrically. METHODS: The spleen was obtained from Balb/c and human p53 promoter-CAT transgenic mice. Mice had either been treated with the carcinogen dimethylhydrazine (DMH), vaccinated before DMH treatment with polyclonal IgG generated against the soluble 53 kDa protein, or left untreated. RESULTS: Significant differences in the splenic structures were found between the strains compared, including the area occupied by the white and red pulps, the periarterial lymphoid sheath (PALS) and the marginal zone, and in the number of lymphoblasts and lymphocytes. Exposure to DMH stimulated the immune response, but in transgenic mice the number of B and T lymphocytes and especially helper T lymphocytes was significantly lower than in Balb/c mice. Vaccination followed by DMH injections did not improve the insufficiency of the immune response in transgenic mice. In transgenic mice, the number of B lymphocytes in follicles was almost half and the total number of cells in PALS and the number of T lymphocytes were only 71% and 60% respectively in BALB/c mice. In the marginal zone, macrophages proliferated as lymphocytes decreased. CONCLUSIONS: Insufficiency of the immune system after exposure to a carcinogen is more pronounced in transgenic mice, and is mainly related to the B-cell system. It may stem from defects in B lymphocytes or from inherent differences in their maturation and regulation. The increase in the number of macrophages, dendritic cells and neutrophils illustrates the compensatory processes that can remedy this developing immune insufficiency.

1,2-Dimethylhydrazine↗

Vaccination with soluble low-molecular weight tumor-associated proteins suppresses chemically-induced mammary tumorigenesis in rats.

This study attempted to elucidate whether the soluble tumour-associated proteins (TAA) of 66 kDa and 51 kDa molecular weight could suppress chemically induced mammary tumorigenesis. An intragastric dose of dimethylbenzanthracene (DMBA) was administered to rats and some were simultaneously immunised with the TAA. A single dose of DMBA resulted in 38% of the rats developing mammary tumours. However, simultaneous vaccination with the TAA preparation was significantly tumour-suppressive: mortality declined from 50% to 0% (p < 0.05); survival was extended from 9.4 weeks to 13.0 (p < 0.05), and 83% of the animals remained tumour free, compared to 13% of the control animals (p < 0.05). In 33% of the immunised animals the malignant tumours regressed completely. Such vaccination was also effective, although to a lesser extent, when the carcinogen dose was doubled. Then, 33% of the immunised and 22% of the control animals remained tumour-free, the latent period of malignant transformation was extended from 10.0 to 11.7 weeks, the initial tumour-free period lasted 9.3 weeks instead of 8.3 weeks and 10% survived compared to 50% of the controls. Vaccination with the soluble low molecular-weight TAA had distinct tumour-suppressive effects on mammary gland tumorigenesis.

9,10-Dimethyl-1,2-benzanthracene↗

Expression of apoptosis and apoptosis-related proteins in microvessels of human ovarian epithelial tumors.

We performed an immunohistochemical analysis of apoptosis and the expression of apoptosis-related proteins (ARP) such as Fas and Fas ligand (FasL), bcl-2 and p53 in human ovarian epithelial tumors. Fas and FasL were abundant in endothelial cells of microvessels, and were observed, at times, in the myocytes of small arteries and veins, in parietal or in obstructive thrombi and fibroblasts. Apoptosis was also noticed in the endothelial cells of capillaries and sinuses. The expression of bcl-2 or p53 was rare. We found that the progression of tumor development was accompanied by considerable changes in the microvessels of ovarian tumors. These changes are probably related to the effect of ARP that are expressed by tumor epithelial cells, lymphocytes and macrophages. We suggest that the ARP are released as a result of necrosis of these cells and are taken up by cells of microvessels and by the cellular remnants of blood clots. The effect of tumors on the microvasculature can be regarded as an angiopathy that results in necrosis and hemorrhage within the tumoral tissue and enhances the progression of the malignancy.

Adult↗

The secretory immune system as part of the placental barrier in the second trimester of pregnancy in humans.

The objective of this study was to describe the development of the secretory immune system (SIS) in the placenta of 32 human fetuses who had died from different causes during the second trimester of pregnancy. The distribution of SIS protein elements, including the secretory component (SC), J-chain, IgA, IgM, IgG, as well subsets of lymphocytes and macrophages, were studied by immunohistochemical methods. Both the fetal and maternal parts of the placenta were found to contain these elements. In the fetal part, the immunoglobulins, SC and J chain were located in the syncytio- and cytotrophoblast of the chorion and in the epithelium of the amnion. The villous stroma contained a small amount of different subsets of lymphocytes. Macrophages accounted for up to 45% of the stromal cells of the villi and contained IgG and J-chain. In the maternal part of the placenta, the SIS proteins were in the decidual cells. Relatively few lymphocytes and macrophages were observed in the decidual stroma. Our data suggest that the placenta has two different SIS, one in the fetal part and the other in the maternal part. They differ in their structure and orientation: the maternal SIS protects the mother against paternal antigens from the fetus, while the fetal SIS protects the fetus against macromolecules and infectious agents penetrating from the mother. The placenta represents the largest extracorporal immune system that is functionally active during the whole second trimester of gestation. We suggest that the concept of placental barrier should be expanded to include both fetal and maternal parts of the SIS, fetal membranes and the decidual tissue.

Chorionic Villi↗

Soluble low-molecular-mass heat shock proteins and tumor-associated antigens in prevention and therapy of chemically-induced cancers.

There is increasing evidence that tumors express putative target molecules in a therapeutic immune reaction. Identification of immunogenic tumor-associated antigens (TAA) may enable the development of new modes of vaccination with the addition of immunotherapy as a potentially powerful weapon in the fight against cancer. In the present review, the authors' observations on the role of the soluble low-molecular-mass heat shock proteins and tumor-associated antigens, named as a complex of STAA, in the prevention and therapy of chemically-induced tumorigenesis are analyzed and compared with data from the literature. It has been shown that STAA have both tumor-preventive and tumor-suppressive effects on chemically-induced cancers of the colon, skin and mammary glands in rats and mice. These effects were shown to be connected with activation of the host's immune system, especially that which is responsible for the activity of T and B lymphocytes. These findings have led to a wave of new trials involving cancer immunotherapy. Understanding the mechanisms of antitumor immunity and identifying relevant tumor-specific antigens is expected to improve vaccine strategies and provide for a successful cancer therapy in the future.

Animals↗

Role of apoptosis, proliferating cell nuclear antigen and p53 protein in the immune response of rat colon cells to cancer and vaccination with anti-p53 polyclonal antibodies.

BACKGROUND: Previously it was shown that rabbit anti-p53 antibodies can exert tumor-suppressive effects on chemically induced rat colon cancer (Cancer J, 10:116-120, 1997). This work examines the role of some components of the immune system in the response of the rat colon cells to treatment with a carcinogen and anti-p53 antibodies. METHODS: The following groups of rats were studied: a) control non treated rats; b) tumor-free non vaccinated rats treated with a carcinogen; c) tumor-bearing non vaccinated rats; d) tumor-free vaccinated rats exposed to a carcinogen; e) tumor-bearing vaccinated rats. The manifestation of apoptosis, proliferating cell nuclear antigen (PCNA), mitotic index, T lymphocytes and p53 protein was compared between the different groups of rats. RESULTS: The apoptotic index and the number of p53-positive cells and T lymphocytes were significantly higher in colon adenocarcinomas obtained from vaccinated rats than in unvaccinated rats. PCNA was lower in tumors from the vaccinated rats, whereas the proliferating cell index was not different between the both groups of rats. An inverse relationship was seen between apoptosis and most other parameters studied. The inverse correlation found between apoptosis and p53 protein in this study demonstrated that apoptosis acts as a p53-independent parameter in chemically induced rat colon cancer. CONCLUSIONS: Our findings demonstrated that vaccination significantly activated apoptosis in both types of colon tissue, and induced synthesis of p53 protein in tumor tissue. Vaccination with anti-p53 polyclonal antibodies seemed to activate the immune system and to stimulate some of its cellular components responsible for tumor suppression.

Adenocarcinoma↗

Immune response of rat spleen cells to a carcinogen and to vaccination with anti-p53 polyclonal antibodies.

BACKGROUND: The tumor-suppressive effects of rabbit anti-p53 antibodies on chemically induced rat colon cancer were demonstrated previously (Cancer J, 10:116-120, 1997). METHODS: In this communication, the spleen's role in the immune response of rats to cancer and vaccination was evaluated histologically and immunohistochemically. The following groups of rats were studied: a) control non treated rats; b) tumor-free non vaccinated rats treated with a carcinogen; c) tumor-bearing non vaccinated rats; d) tumor-free vaccinated rats exposed to a carcinogen; e) tumor-bearing vaccinated rats. RESULTS: Exposure to a carcinogen (group 2) caused the appearance of the proliferative and apoptotic changes associated with immune response. They included abundant blast transformation of CD20-positive B lymphocytes, expansion of germinal centers and of periarterial sheaths (CD3-positive T cells), an increase in the number of plasma cells, mitotic and apoptotic cells in the follicles, and in CD25 IL2-depending T cells. The presence of colon tumors (group 3) caused insufficiency of the splenic lymphoid system: blast transformation was weaker, the white pulp area decreased and its devastation was reflected in fewer lymphoid cells. There were less plasma cells in the red pulp, while the number of dendritic cells, CD25+ T cells, macrophages and neutrophils increased sharply, suggesting a compensatory reaction to the severe antigenic effects. Similar, but stronger changes, occurred in tumor-free vaccinated rats (group 4). In tumor-bearing vaccinated rats (group 5), the rate of proliferation change was higher than in group 3, probably as a result of a weaker splenic insufficiency. A strong correlation was found between the number of mitotic, apoptotic or dendritic cells, tumorigenesis and vaccination. CONCLUSIONS: A sharp increase in the number of dendritic cells in vaccinated tumor-bearing rats suggests that these cells participate in the host's reaction to tumorigenesis. We conclude that vaccination with anti-p53 polyclonal antibodies activates lymph components of the spleen.

Animals↗

Effects of dietary fiber on the rat intestinal mucosa exposed to low doses of a carcinogen.

BACKGROUND: Changes in morphological and immunohistochemical parameters were studied in the rat intestinal mucosa exposed to low doses of a carcinogen and administered with dietary fibers. METHODS: Tumors were induced by five subcutaneous injections of 1,2-dimethylhydrazine, 10 mg/kg rat, once a week. Rats were fed a semi-synthetic fiber-free diet (control) or a high-fiber diets (15%) derived from cellulose, tomato peels or white grape. The rats were sacrificed 24 weeks after the first carcinogen's injection. The ileum, colon and tumors were removed for the study. Areas of the mucosal stroma and of lymph infiltrations, and mitotic index were studied along with morphological parameters. Immunohistochemical parameters included determination of Ki-67 proliferating protein and apoptotic index. RESULTS: Areas of the stroma in colon tumors increased in rats fed tomato peels. Changes in areas of lymphoid infiltrates were related to the type of diet and tumor presence. Lymphoid infiltrations were found to be highly developed in the colon area close to tumors, especially in rats fed the white-grape diet. Mitotic index and Ki-67 protein increased significantly in the colon area close to a tumor and in tumors themselves without any relation to the fiber varieties consumed. Changes in the rate of apoptosis were not related to the preventive effect of diets: apoptotic index was high in tumors obtained from rats fed the high-cellulose diet with high tumor-preventive effects and also from rats fed the high-tomato-peel diet with low tumor-preventive effects. CONCLUSIONS: No morphological changes were found in the ileum of rats exposed to a carcinogen and fed different dietary fibers. In the colon, a carcinogen even in low concentrations inhibited the lymphoid system in the mucosa located far from the tumor or close to the tumor. An increase in the proliferation rate in the colon close to the tumor may reflect the development of precanceromatous processes or may be related to the effect of growth factors expressed by tumor cells. Finding adenoma-like dysplasia near tumors may be possible in early stages of the development of new tumors. In addition, activation of the lymphoid system of the colon following consumption to specific dietary fiber may be a mechanism by which fiber protect against cancer.

1,2-Dimethylhydrazine↗

Tumor-preventive effects of the soluble p53 antigen on chemically-induced skin cancer in mice.

BACKGROUND: The tumor-suppressive effects of the rat soluble p53 antigen on chemically induced skin cancer in mice and the role of the spleen in the immune response to a carcinogen and vaccination were studied. METHODS: Skin cancer was induced by 9,10-dimethyl-1,2-benzanthracene (DMBA). Vaccination was initiated by injection of liposomes with the soluble p53 antigen (10-12 micrograms/mouse) while boosters were with the p53 mixed with Freund's incomplete adjuvant (two injections). Four months later, the spleen and tumors were removed and examined morphometrically (determination of areas of different spleen's zones) and immunohistochemically (determination of number of B lymphocytes and macrophages, apoptotic index). The following groups of mice were studied: A) control non treated mice; Bl) tumor-free mice treated with a carcinogen; B2) tumor-bearing mice; Cl) tumor-free vaccinated mice exposed to a carcinogen; C2) tumor-bearing vaccinated mice. RESULTS: Mice exposed to a carcinogen, which were tumor-free, displayed high proliferative activity of the spleenic lymphoid constitutes such as B lymphocytes and macrophages. This was reflected in the remarkable transformation of B lymphocytes in lymphoblasts (blast transformation) and an increase in the area of germinal centers, compared to untreated controls. In tumor-bearing non vaccinated mice, significantly more spleenic apoptotic cells were found than in their tumor-free counterparts. Shrinkage of the mantle layer and a decrease in cellular density of follicles were seen in all carcinogen-treated mice, reflecting the reduced total production of lymphoid cells, and thus the insufficiency of the immune reaction of animals to a carcinogen. A sharp decrease in the apoptotic index in the spleen of tumor-free mice may reflect an inhibition of apoptotic activity of the spleen by a carcinogen. Vaccination with the soluble p53 protein decreased the incidence of tumors and their size, significantly increased the apoptotic index within tumors, and reversed the splenic parameters of immune insufficiency. CONCLUSIONS: The immune system is active during tumorigenesis. Vaccination with the soluble p53 antigen had positive tumor-suppressive effects. The findings may facilitate the development of vaccines for the prevention of recurrent cancers in humans.

9,10-Dimethyl-1,2-benzanthracene↗