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1.
Vet Res Commun ; 29(7): 575-93, 2005 Oct.
Article in English | MEDLINE | ID: mdl-16142606

ABSTRACT

Polyphenolic compounds are widely distributed in the plant kingdom and display a variety of biological activities, including chemoprevention and growth inhibition of tumours. Propolis contains a conglomerate of polyphenolic compounds. We investigated the effect of propolis and polyphenolic compounds, components of propolis, on the growth and metastatic potential of a transplantable mammary carcinoma (MCa) of the mouse. Metastases in the lung were generated by 2 x 10(5) tumour cells injected intravenously (i.v.). A water-soluble derivative of propolis (WSDP) and the polyphenolic compounds (caffeic acid (CA) and caffeic acid phenethyl ester (CAPE)) were given to mice perorally before or after tumour cell inoculation. WSDP, CA and CAPE reduced the number of metastases in the lung. This implies that the antitumour activities of the compounds used in these studies are mostly related to the immunomodulatory properties of the compounds, their cytotoxicity to tumour cells, and their ability to induce apoptosis and/or necrosis.


Subject(s)
Antineoplastic Agents/administration & dosage , Antineoplastic Agents/pharmacology , Flavonoids/administration & dosage , Flavonoids/pharmacology , Mammary Neoplasms, Experimental/drug therapy , Phenols/administration & dosage , Phenols/pharmacology , Propolis/analogs & derivatives , Animals , Blood Proteins/metabolism , Female , Femur/cytology , Femur/drug effects , Flavonoids/chemistry , HeLa Cells , Humans , Leukocyte Count , Lung Neoplasms/secondary , Macrophages/drug effects , Macrophages/immunology , Macrophages/metabolism , Male , Mammary Neoplasms, Experimental/pathology , Mice , Mice, Inbred CBA , Mitogens/pharmacology , Nitric Oxide/biosynthesis , Nitric Oxide/metabolism , Phenols/chemistry , Polyphenols , Propolis/chemistry , Spleen/cytology , Spleen/drug effects
2.
Article in English | MEDLINE | ID: mdl-12916689

ABSTRACT

The influence of an attenuated classical swine fever virus C strain vaccine and a subunit E2 vaccine against classical swine fever on the peripheral blood leucocyte proportion and phenotypic expression in 12-week-old pigs was studied. The C strain was amplified in minipig kidney cell culture and final product contained 10(4 +/- 0.15) TCID50/ml, while the subunit vaccine contained 32 microg per dose of gp E2. Haematological findings showed that the vaccines did not cause leucopenia or lymphocytopenia and the number of neutrophils and eosinophils during the observation period was within physiological range. The results of the proportion of CD4a+, CD5a+, CD8a+, wCD21+, CD45RA+, CD45RC+ , non-T non-B, SWC3a+ and CD11b+ cells were gained by single-colour flow cytometry. At the end of the trial a significantly increase of percentage of CD4+, CD5a+, CD8+, wCD21+ cells has been found in pigs that received the subunit vaccine and the percentage of CD4+, CD5a+, CD8+, CD45RA+ and CD45RC+ cells was higher in pigs that received the attenuated vaccine. Twenty-eight days after vaccination the percentage of CD4+, CD45RA+ and CD45RC+ was significantly higher in pigs vaccinated with the C strain than in pigs vaccinated with the subunit vaccine. In contrary, the percentage of the wCD21- cells was higher in pigs that received the subunit vaccine. Statistically higher values of SWC3a+ and lower values of CD11b+ cells was observed in pigs that received the attenuated vaccine than in pigs vaccinated with the subunit vaccine. Taken altogether, our results showed that the subunit vaccine produced a better stimulation of B cells and CD11b+ monocytes/macrophages /granulocytes/NK cells, whereas the attenuated vaccine induced a higher response of Th cells, naive/memory cells and macrophages/neutrophils. Thus, both vaccines were able to influence the porcine immune system, by activating different subsets of the immune effector/accessory cells.


Subject(s)
Antigens, CD/analysis , Classical Swine Fever Virus/immunology , Classical Swine Fever/immunology , Classical Swine Fever/prevention & control , Leukocytes/classification , Vaccines, Attenuated , Viral Vaccines , Animals , Antibodies, Viral/blood , Immunophenotyping , Injections, Intramuscular , Leukocyte Count/veterinary , Leukocytes/cytology , Leukocytes/immunology , Swine , Vaccination/veterinary , Viral Envelope Proteins
3.
Vet Res Commun ; 27(4): 329-39, 2003 May.
Article in English | MEDLINE | ID: mdl-12872833

ABSTRACT

Ten pigs, aged 85 days, were vaccinated with a subunit vaccine containing 32 microg of classical swine fever virus glycoprotein E2 (gp E2) (group 1), and a further 10 pigs were vaccinated with a C strain vaccine (10(4+/-0.15) TCID50/ml), produced by amplification in minipig kidney (MPK) cell culture (group 2). Nine non-vaccinated pigs served as a control group (group 3). Serum samples were collected before (day 0) and at 4, 10, 21 and 28 days after vaccination and were analysed by two commercially available enzyme immunoassays and by a neutralizing peroxidase-linked assay (NPLA). At the same times, peripheral blood was taken for determining the total leukocyte count and the body temperature was taken daily. Antibodies were not detected in serum samples collected before vaccination (day 0), and no side-effects that could be connected with vaccination were observed during the trial. Ten days after vaccination 6/10 pigs vaccinated with the subunit vaccine were seropositive. On days 21 and 28, the ratios of serologically positive to vaccinated pigs were 9/10 and 10/10, respectively. Four of the ten pigs that were vaccinated with the C strain vaccine were positive on day 21 and 9/10 on day 28. However, the results of the NPLA showed that only 4/10 pigs had an antibody titre > 1:32 at the end of the trial in both the vaccinated groups, even though the subunit vaccine initiated an earlier and higher level of neutralizing antibodies than the vaccine produced from the C strain. Challenge was performed 28 days after vaccination on four randomly selected pigs from both vaccinated groups. The pigs survived the challenge without showing any clinical signs of classical swine fever (CSF), while two nonvaccinated control pigs died on the 10th and 12th days after infection.


Subject(s)
Antibodies, Viral/blood , Classical Swine Fever Virus/immunology , Classical Swine Fever/immunology , Swine/immunology , Vaccines, Attenuated/immunology , Vaccines, Subunit/immunology , Viral Vaccines/immunology , Animals
4.
Vet Comp Oncol ; 1(4): 216-26, 2003 Dec.
Article in English | MEDLINE | ID: mdl-19379183

ABSTRACT

The effect of propolis [it is a water-soluble derivative (WSDP)] and related polyphenolic compounds of propolis (caffeic acid, caffeic acid phenethyl ester and quercetin), honey, royal jelly and bee venom on tumour growth, metastasizing ability and induction of apoptosis and necrosis in murine tumour models (mammary carcinoma and colon carcinoma) was investigated. WSDP and related polyphenolic compounds showed significant anti-metastatic effect (P < 0.01 and P < 0.001) given either before or after tumour-cell inoculation. Oral or systemic application of WSDP or caffeic acid significantly reduced subcutaneous tumour growth and prolonged the survival of mice. Honey also exerted pronounced anti-metastatic effect (P < 0.05) when applied before tumour-cell inoculation (peroral 2 g kg(-1) for mice or 1 g kg(-1) for rats, once a day for 10 consecutive days). Royal jelly did not affect metastasis formation when given intraperitoneally or subcutaneously. However, intravenous administration of royal jelly before tumour-cell inoculation significantly (P < 0.05) inhibited metastasis formation. When mice were given 10(5) tumour cells intravenously immediately after bee venom injection, the number of tumour nodules in the lung was significantly lower (P < 0.001) than in untreated mice or mice treated with bee venom subcutaneously. Local presence of bee venom in the tissue caused significant delay in subcutaneous tumour formation. These findings clearly demonstrate that anti-tumour and anti-metastatic effects of bee venom are highly dependent on the route of injection and on close contact between components of the bee venom and tumour cells. These data show that honey bee products given orally or systemically may have an important role in the control of tumour growth and tumour metastasizing ability.

5.
Vet Res Commun ; 26(4): 273-83, 2002 Jun.
Article in English | MEDLINE | ID: mdl-12184498

ABSTRACT

The quantitative and distribution patterns of porcine peripheral blood and tonsillar lymphoid/myeloid cell subsets were assessed in order to establish the immune status of farm pigs prior to their transfer to fattening units. Peripheral blood and tonsillar samples were taken from clinically healthy, nonvaccinated, 12-week-old pigs, either ex vivo or following euthanasia. Single-colour flow cytometry, using monoclonal antibodies (mAbs) reactive with the swine leukocyte cluster of differentiation (CD) antigens, gave the proportions of lymphoid (9.7% CD4+, 8.0% CD8+, 36.9% CD5a+, 20.3% CD16+, 6.9% CD21+, 86.3% CD45+, 41.8% CD45RA+, 48.3% CD45RC+), null cells (6.9%) and myeloid cells (23.7% CD11b+ and 5.4% SWC3a+) in peripheral blood. In situ identification and distribution of lymphoid cells in the tonsils (CD3a+, CD21+, CD45RA+, CD45RC+) was performed with anti-CD mAbs using the avidin-biotin complex method. Most CD3a+ cells were in the parafollicular areas, with many cells in the follicles. CD21+ cells were scattered throughout the parafollicular area, with only a few cells inside lymphoid follicles. CD45RA+ cells were mostly concentrated in the follicles but many positive cells were present in the parafollicular area. Many CD45RC+ cells were visible in the parafollicular area, a few positive cells were in the crypt epithelium, and single cells were inside the follicles.


Subject(s)
Antigens, CD/analysis , Immunophenotyping/veterinary , Leukocytes/classification , Palatine Tonsil/cytology , Palatine Tonsil/immunology , Swine/immunology , Aging , Animals , Female , Flow Cytometry , Food Industry , Leukocyte Count , Leukocytes/cytology , Leukocytes/immunology , Male , Meat , Swine/blood , Swine/growth & development
6.
Vet Immunol Immunopathol ; 80(1-2): 5-23, 2001 Jul 20.
Article in English | MEDLINE | ID: mdl-11445215

ABSTRACT

The aim of the Third International Workshop on Swine Leukocyte Differentiation Antigens (CD workshop), supported by the Veterinary Immunology Committee (VIC) of the International Union of Immunological Societies (IUIS), was to standardize the assignment of monoclonal antibodies (mAb) reactive with porcine leukocyte differentiation antigens and to define new antibody clusters, using nomenclature in accordance with human and ruminant CD nomenclature, as agreed at the summary meeting of the Second International Swine CD Workshop in Davis, 1995: only mAb with proven reactivity for the orthologous porcine gene product or cross-reactivity for the human gene products, were given the full CD nomenclature, all other allocations were prefixed with "w". As in previous workshops, the overall organization was entrusted to the chair and first author, with support by the chair of the previous workshop and second author. In addition to the existing 26 pig leukocyte CD/SWC determinants established in previous workshops, this workshop established/confirmed another 11 CDs for pig leukocytes, identified by a total of 21 mAb: CD11R1 (2 mAb), CD11R2 (1 mAb), CD11R3 (4 mAb), wCD40 (1 mAb), wCD46 (4 mAb), wCD47 (3 mAb), wCD49d (1 mAb), CD61 (1 mAb), wCD92 (1 mAb), wCD93 (1 mAb) and CD163 (2 mAb).


Subject(s)
Antigens, CD , Leukocytes/immunology , Swine/immunology , Animals
7.
Vet Immunol Immunopathol ; 80(1-2): 25-34, 2001 Jul 20.
Article in English | MEDLINE | ID: mdl-11445216

ABSTRACT

The reactivity of 155 monoclonal antibodies submitted to the Third International Workshop on Swine Leukocyte Differentiation Antigens, together with 41 internal standards, was analysed by flow cytometry on 29 different pig cell targets as well as two human cell targets as a means of establishing suitable panels of monoclonal antibodies for more detailed clustering analyses by the various subsections of the workshop. Results were collected either without further gating, with gating based on FS/SS characteristics or with gating based on the co-expression of a reference antibody in two-colour flow cytometry. The CD or SWC reactivity of the internal standards had been established in previous workshops. Data sets were subsequently analysed by statistical clustering using the Leucocyte Typing Database IV software. The resulting 18 cluster groups were allocated to the appropriate second round sections of the workshop, after reviewing the overall cellular reactivity of each cluster as well as the specificity of known standards which clustered in a group.


Subject(s)
Antigens, CD , Leukocytes/immunology , Swine/immunology , Animals , Antibodies, Monoclonal , Humans
8.
Vet Immunol Immunopathol ; 60(3-4): 251-60, 1998 Jan 30.
Article in English | MEDLINE | ID: mdl-9589563

ABSTRACT

After initial evaluation of the 176 new and 19 control monoclonal antibodies (mAb) submitted to the Second International Swine CD Workshop, 57 were assigned to the T-cell/activation marker subgroup. These 57 mAb were further analyzed using flow cytometry on whole blood lymphocytes, splenocytes, Peyer's patch lymphocytes, in vitro cell lines, broncho-alveolar lavage cells, Con A and PHA blasts, fetal cell populations, and by 2-color flow cytometry against mAb to porcine CD2, CD4, and CD8. Finally, the molecular weights of the target antigens were characterized when possible. As a result of these analyses, 23 mAb were distributed into 7 CD clusters. Newly confirmed mAb assignments included: two CD2; one CD4; two CD5; one wCD6; and one wCD25. Three new mAb were found that reacted with wCD8, one of which defined a new epitope, wCD8c. For the first time, mAb against porcine CD3 were identified, including 6 mAb that reacted with three different epitopes. Several new mAb reacted with antigens whose expression varied depending on the activation state of the test cell. These will require further characterization in order to assign a CD number.


Subject(s)
Antibodies, Monoclonal/metabolism , Antigens, CD/immunology , Lymphocyte Activation , Swine/immunology , T-Lymphocytes/immunology , Animals , Antigen-Antibody Reactions , Antigens, Differentiation, T-Lymphocyte/immunology , CD2 Antigens/immunology , CD3 Complex/immunology , CD4 Antigens/immunology , CD5 Antigens/immunology , CD8 Antigens/immunology , Receptors, Interleukin-2/immunology
9.
Comp Immunol Microbiol Infect Dis ; 19(1): 31-8, 1996 Jan.
Article in English | MEDLINE | ID: mdl-8654043

ABSTRACT

In order to study a possible immunomodulatory effect of the royal jelly (RJ) secreted by mandibular and hypopharingeal glands of the worker honeybee (Apis mellifera Linné.) we have used a well established rodent model. The CBA mice were given s.c. 0.1 ml of RJ, 7 days before, or immediately after, the immunization with sheep red blood cells (SRBC). The Y59 rats received i.m. 0.4 ml or i.v. 0.025 ml of RJ once or twice at 7 day intervals. Serum levels of total proteins and immunoglobulins in the rats that received RJ once or twice within a 2-week-period were significantly lower (P < or = 0.05) as compared with the nontreated animals. In mice which were immunized with 4 x 10(8) of SRBC 7 days after the application of RJ the number of plaque forming splenocytes was significantly higher (P < or = 0.05) than that in the controls. Both the weight of inguinal lymph node and the number of peripheral blood lymphocytes were increased (P < or = 0.05) in RJ-treated mice 3 or 5 days after the immunization, respectively. Neutrophils were decreased (P < or = 0.05) in the mice that were killed 5 or 10 days after the RJ treatment. Overall these results indicate that RJ exhibited immunomodulatory properties by stimulating antibody production and immunocompetent cell proliferation in mice or depressing humoral immune functions in rats. Both phenomena, though species-related in this model, could probably be reversed by changing the dose or the route of RJ application.


Subject(s)
Adjuvants, Immunologic , Fatty Acids/immunology , Animals , Antibody Formation , B-Lymphocytes/immunology , B-Lymphocytes/metabolism , Blood Proteins/analysis , Erythrocytes/immunology , Fatty Acids/administration & dosage , Hemolytic Plaque Technique , Immunity, Cellular , Immunization , Lymph Nodes/cytology , Mice , Mice, Inbred CBA , Rats , Species Specificity , Spleen/cytology
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