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P Tuohimaa

Publications and source records attributed to P Tuohimaa.

At least 19 recordsLinked to original sources

Arguments against the prostatic origin of the R-3327 Dunning H tumor.

The Dunning tumor, originally described as a carcinoma of the rat dorsal prostate, has for long been used as an experimental model of prostatic cancer. We have recently presented a number of morphological findings that are incompatible with the prostatic origin of the H-subline of the Dunning tumor. In this paper, biochemical and immunohistochemical markers of rat prostate and mammary gland are studied in the R-3327 Dunning H tumor. Pieces of the H tumor were inoculated in male or lactating female rats. The electrophoretic protein pattern of Dunning tumor extracts was more similar to that of the mammary gland than the dorsolateral prostate. Proteins selectively appearing after metabolic labeling in Dunning tumors grown in lactating rats corresponded to labeled proteins in mammary glands from the same animals. Secretory proteins typical of the lateral prostate (SVS II) and dorsal prostate (transglutaminase) could not be detected immunohistochemically in the Dunning tumor. Western blot studies of tumor extracts and slot blot analysis of RNA preparations from the tumor confirmed the absence of SVS II and prostate specific transglutaminase from the Dunning tumor. On the other hand, the presence of mammary gland proteins such as milk fat globule membrane proteins, lactoperoxidase and lactalbumin were detected in the Dunning tumor by immunohistochemistry and Western blotting, but were absent from the dorsolateral prostate. Transferrin-mRNA, expressed in the male urogenital tract and also in the liver and other tissues, was detected in the mammary gland and Dunning tumor, but not in the dorsolateral prostate. The absence of mammary gland secretory beta-casein in the Dunning tumor was related to the elevated Ha-ras oncogene expression in the tumor, previously reported to suppress casein expression. The findings clearly demonstrate that the prostate cannot be the origin of the Dunning tumor, presently being used in prostatic cancer research. The designation prostatic adenocarcinoma for this tumor is therefore invalid. Furthermore, the data support our view that mammary gland might be the origin of the Dunning tumor, although the derivation from the bulbourethral or the parotid glands cannot strictly be excluded.

Adenocarcinoma

Immunohistochemical detection of androgen receptors in human oral mucosa.

Oral mucosal biopsies from 11 healthy volunteers, 7 women and 4 men, were analysed for the localization of androgen, oestrogen and progesterone receptors. The samples were dissected as quickly as possible and immediately frozen in liquid nitrogen to be stored at -70 degrees C. Only androgen receptors could be detected by the methods used. These were mainly located in the nuclei of basal epithelial cells, and to some extent in the nuclei of fibroblasts and endothelial cells. Failure in the localization of oestrogen and progesterone receptors might have been due either to low numbers of receptors or to the insensitivity of antibodies used. The method is thus suitable only for detecting androgen receptors.

Adult

Inducibility of the avidin gene by progesterone is suppressed during estrogen-induced cytodifferentiation.

We have studied epithelial differentiation of the chick oviduct as induced by diethylstilbestrol (DES) and 17 beta-estradiol (E2). The proportion of goblet cells in the oviduct was slightly higher after E2 than after DES treatment. Also avidin induction by progesterone was stronger following DES than E2 priming. In the estrogen pretreated oviduct epithelium, avidin expression was induced by progesterone in the surface epithelial cells, protodifferentiated gland cells and tubular gland cells, but not in goblet cells. During prolonged estrogen treatment, however, the inducibility of avidin by progesterone ceased in tubular gland cells but not in surface epithelial cells. The estrogen action on the expression of avidin could be explained by estrogen-induced terminal differentiation of the epithelial gland cells or by a direct effect of estrogen on the progesterone action, for instance interaction of estrogen receptor and progesterone receptor in the regulation of transcription.

Animals

Characterization of human 1,25-dihydroxyvitamin D3 receptor anti-peptide antibodies.

Rabbit and chicken antibodies were raised against two peptides synthesized according to the structure of human 1,25-dihydroxyvitamin D3 receptor (hVDR): rabbit alpha hVDR-103 against the N-terminal amino acids 5-18 and alpha hVDR-104 against the amino acids 172-186 in the hinge region and chicken alpha hVDR-cab11 against the amino acids 172-186, respectively. The specificity of the antibodies was tested by peptide saturation, SDS-PAGE immunoblotting, gel shift assay and sucrose gradient centrifugation. Immunoblotting of a soluble extract (cytosol) from osteosarcoma cell line MG-63 showed a single band with an M(r) of about 48,000 and human intestine cytosol a broad band (50-63,000) for both antibodies. The antibodies recognized activated (3.2S) hVDR by shifting the centrifugation sedimentation profile to 5-6S. The antibodies showed nuclear immunostaining of unoccupied VDR in human osteosarcoma cells MG-63, U2-Os and SaOs-2. The immunoreaction could be saturated with the corresponding synthetic peptide. In immunoblot alpha hVDR-103 reacted with human and rat VDR, whereas alpha hVDR-104 recognized human VDR only. Similarly in immunohistochemistry, alpha hVDR-103 showed staining with hVDR and rVDR, whereas alpha hVDR-104 reacted only with hVDR. All antibodies recognized the native hVDR as verified with sucrose gradient centrifugation or immunoprecipitation but only alpha hVDR-103 and alpha hVDR-cab11 in gel shift assay of hVDR associated with the vitamin D-responsive element of human osteocalcin gene promoter.

Amino Acid Sequence

In situ hybridization of ovalbumin mRNA in the chick oviduct reveals target cell specificity for estrogen and progesterone.

An in situ hybridization method using paraffin-embedded sections was used to characterize the chicken oviduct cells synthesizing ovalbumin mRNA due to the action of estrogen and progesterone. The cytodifferentiation of the oviduct cells was induced by 17 beta-estradiol administration to newly hatched female chicks. To avoid possible effect of estrogen on the action of progesterone the chicks were withdrawn from the estrogen by six days withdrawal period without hormone treatment. Ovalbumin mRNA was not synthesized after a period of estrogen withdrawal. Administration of estrogen induced ovalbumin mRNA in the tubular gland cells. Administration of progesterone induced the expression of ovalbumin mRNA in the surface epithelial cells. It was also found that progesterone induced mucus producing goblet cells in the surface epithelium. Estrogen did not have an effect on the mucus production, which suggests that progesterone could induce the terminal differentiation of the goblet cells. We conclude that the expression of ovalbumin in the surface epithelial cells and in the tubular gland cells is specific for progesterone and estrogen, respectively.

Animals

Subcellular location of androgen receptor in rat prostate, seminal vesicle and human osteosarcoma MG-63 cells.

Location of the androgen receptor (AR) before and after dihydrotestosterone (DHT) administration was studied in 6 castrated and 2 normal male rats, as well as in MG-63 human osteosarcoma cell culture. Two days after castration, rats were injected with DHT and sacrificed 0, 6 and 24 h later. Cryosections of ventral prostate and seminal vesicle were stained with a polyclonal anti-AR antibody. Cultured MG-63 cells were also stained similarly. The intensity of immunoreaction was measured semiquantitatively by computer-assisted image analysis. In both normal and castrated rats, a positive reaction was seen mainly in the nuclei of epithelial cells and stromal cells of the prostate and seminal vesicle, as well as in those of smooth muscle cells of the seminal vesicle. AR immunoreactivity was up-regulated by DHT, it decreased clearly in both organs after castration. Nuclear AR and its up-regulation by androgen were also seen in MG-63 cells. At the immunoelectron microscopy, silver enhanced gold particles were predominantly found in the heterochromatin of cell nuclei. Treatment with DHT caused a decondensation of the heterochromatin and AR was more dispersed. Thus, AR appears to be nuclear independently of the ligand.

Animals

Induction of avidin messenger ribonucleic acid in the chick oviduct by progesterone and other steroids.

Avidin gene expression was analyzed using an avidin immunoassay and RNA hybridization analysis. To ascertain whether the induction of the avidin gene by progesterone remains specific also during secondary restimulation with diethylstilbestrol, chicks were given different steroid hormones or hormone combinations. Progesterone-specific induction of avidin protein and messenger RNA (mRNA) was 15- to 30-fold over the control even after secondary restimulation with diethylstilbestrol. A functional difference between the progesterone response element and glucocorticoid response element was suggested, since dexamethasone alone did not induce avidin in vivo. In spite of progesterone specificity, a combination of progesterone with other steroids nevertheless generated a synergistic increase in the amount of avidin mRNA. This may indicate that binding of progesterone receptor to the progesterone response element may be important to alter the functional activity of other hormone response elements present on the avidin gene. The time response curve of the avidin mRNA induction by progesterone was also determined. Avidin mRNA was detectable 8 h after progesterone induction, and its amount was maximal after 16-24 h. This would indicate that the avidin gene belongs in the so-called late responder genes, which also include chicken ovalbumin, ovomucoid, and lysozyme genes.

Animals

Inhibin alpha- and beta A-subunit immunoreactivity in the chicken embryo during morphogenesis.

Antibodies against synthetic peptides selected from the amino acid sequences of human inhibin alpha- and beta A-subunits were used to examine the distribution of inhibin subunit immunoreactivity in chicken embryos during the first week of development. Inhibin alpha-subunit immunoreactivity was localized in skeletal and smooth muscle myoblasts as well as developing cardiac muscle cells. In somites, immunostaining was seen exclusively in myotomes. The appearance of alpha-subunit immunoreactivity was correlated with myogenic differentiation; immunoreactivity was not seen in non-differentiated mesenchymal cells or in terminally differentiated adult muscle cells. In cardiac muscle, some immunopositive myocytes were seen also in the adult. In the adult heart, the Purkinje fibers were strongly immunoreactive, suggesting a possible role of the immunoreactive protein in the impulse-conducting function of these specialized cells. Inhibin alpha-subunit immunoreactivity was also seen in the visceral and parietal cells of the Bowman's capsule in both mesonephric and metanephric kidneys. In addition to mesodermal derivatives, alpha-subunit immunoreactivity was localized in neuroepithelial cells and axons in the developing central nervous system. Immunoblotting with anti-alpha(1-32) revealed two protein bands with M(r) values of 50,000 and 32,000 in cytosol samples of whole embryos under nonreducing conditions. In reduced samples an approximately 14,000 M(r) protein species was detected. Inhibin beta A-subunit immunoreactivity was detected only in chondrocytes, suggesting that the immunoreactive protein might represent a chicken homologue of the various cartilage and bone morphogenetic proteins expressed in mammals.

Animals

Sensitive immunometric assays for secretory peroxidase and myeloperoxidase in human saliva.

We have developed specific immunoassays for secretory peroxidase (SP) and for myeloperoxidase (MP) (polymorphonuclear leukocyte-derived peroxidase) in human saliva. Antibodies against SP and MP were produced using bovine milk lactoperoxidase (LP) and human MP as the immunogens, respectively. The methods developed are non-isotopic immunometric assays using biotinylated antibodies and avidin-enzyme conjugate. The detection limit was 0.1 ng/ml and the performance time less than 3 h for both assays. The determination ranges were 0.5-100 ng LP (SP)/ml and 0.5-200 ng MP/ml with intra- and interassay CVs of 4.3% and 15.6% for SP and 3.7% and 10.8% for MP, respectively. The mean analytical recoveries were 108.9% (SP) and 91.5% (MP). These assays correlated well (r = 0.849-0.871) with the colorimetric assays based on the oxidation of thiocyanate or chloride by peroxidases. However, compared to the colorimetric methods the new immunometric assays are much more sensitive and specific for salivary SP and MP. The assays are also more rapid since extensive dialysis to remove endogenous thiocyanate is not required.

Adult

Location of androgen receptor in human skin.

The distribution of androgen receptor (AR) in human skin was studied by an immunohistochemical method using a polyclonal antibody against the human AR. Skin samples of preputial skin and male and female nongenital skin were examined. The possible correlation of AR location to acne was studied in skin biopsies from skin areas affected or unaffected by acne. In preputial skin, AR was expressed in epidermal cells as well as in fibroblasts, smooth muscle cells, and endothelial cells of blood vessels in the dermal area. AR was found located also in the flat fibroblast-like cells of Pacinian corpuscles. In nongenital skin, AR was also expressed in the basal cells and glandular cells of sebaceous glands, in the outer root sheath of hair follicles, and in eccrine sweat glands. The presence of AR in different cell types in the skin reflects the numerous direct effects androgens may have on this target tissue. The distribution of AR was similar in male and female skin.

Acne Vulgaris

Avidin and ovalbumin induction by progesterone in chicken oviduct detected by sensitive immunoenzymometric assays.

This study describes sensitive immunoenzymometric assays (IEMAs) for chicken avidin and ovalbumin, markers of cytodifferentiation and action of progesterone and oestrogen in the oviduct magnum mucosa. The determination range was 0.5-100 ng/ml and the detection limit 0.1 ng/ml in both IEMAs. The intra- and interassay coefficients of variation, measured from chicken tissue supernatants, averaged below 6 and 10% respectively. IEMAs correlated well with the radioimmunoassays for avidin and ovalbumin previously developed in our laboratory, and with the widely used [14C]biotin-binding method for avidin. Using an IEMA, we found avidin induction with low concentrations of progesterone in the differentiated oviduct of oestrogen-pretreated chicks. The induction has not been detected previously by less sensitive methods. Avidin was induced by all given doses of progesterone (0.2-200 mg/kg in vivo for 24 h after a short oestrogen treatment), the response being dose-dependent at doses of 0.2-20 mg progesterone/kg body weight, the maximum avidin production being about 70 micrograms/g tissue. Ovalbumin was induced at doses of 2-200 mg progesterone/kg body weight without variations in the responses, being about 35 mg/g. The mean content of avidin in the oviduct of laying hens was 58.1 micrograms/g, and of ovalbumin 74.9 mg/g. Minimal traces of avidin and ovalbumin were found in the oviduct after hatching (0.3 and 5 micrograms/g respectively); however, progesterone did not have an effect on this expression. Sensitivity, rapidity and practicability, together with non-radioactivity, are the main advantages of the present IEMAs for chicken avidin and ovalbumin.

Animals

Norplant implants: the mechanism of contraceptive action.

OBJECTIVE: To determine if fertilization occurs unnoticed among Norplant users who are ovulatory. DESIGN: Serial blood samples were obtained during 1 month from sexually active Norplant users experiencing regular menstrual bleeding patterns and a control group of noncontracepting women trying to conceive. The sequential blood samples were assayed for the presence of human chorionic gonadotropin (hCG). SETTING: All samples were obtained from women receiving contraceptive service and health care at the Center for Research and Services in Human Reproduction and Contraception, Santo Domingo, The Dominican Republic. Assays for hCG were performed at the Department of Biomedical Sciences, University of Tampere, Finland. PATIENTS, PARTICIPANTS: A total of 32 women using Norplant implants were enrolled in the treatment group, and 20 women of proven fertility who were attempting to conceive served as a control group. INTERVENTIONS: Duration of Norplant use was as follows: 4 in the 2nd year of use, 13 in the 3rd year, 11 in the 4th year, 3 in the 5th year, and 1 in the 7th year. MAIN OUTCOME MEASURE: The determination of pregnancy was based on the presence of hCG in the luteal phase, using a sensitive and specific immunoenzymatic assay that can detect dimeric hCG as early as 7 days after ovulation. RESULTS: Nine pregnancies were detected. All were in the control group trying to conceive. Six of these advanced to clinical pregnancies, and three did not proceed beyond the next expected menses. None of the Norplant users had evidence of hCG production, whether the observed cycles were anovulatory or ovulatory. The probability of finding no pregnancies in the ovulatory months at risk among Norplant users is between 1 in 50 and 1 in 150,000. The null hypothesis that Norplant users conceive at a natural rate can be rejected at the 0.05 level. CONCLUSION: Interruption of early pregnancy (menstrual abortion) does not play a role in the mechanism of action of Norplant contraceptive implants.

Chorionic Gonadotropin

Progesterone receptor is constitutively expressed in chicken intestinal mesothelium and smooth muscle.

We have previously shown that progesterone receptor (PR) is expressed in the mesothelium of the chick oviduct and ovary and in the smooth muscle cells of the oviduct and the bursa of Fabricius. Here, we investigated the presence of PR in different parts of the peritoneum and abdominal organs using an immunohistochemical staining based on monoclonal antibodies against chicken PR. In 4-week-old sexually immature chicks, PR expression was located in the mesothelial cells of different parts of the peritoneum, in a thin layer of muscle cells of the ileum and throughout the muscle tissue of the colon and cloaca. In chicks of the same age treated with estrogen, PR was demonstrated similarly in the peritoneum and in the smooth muscle cells of the ileum, colon and cloaca. Using 25-week-old mature chickens, PR was also detected in identical tissues. Immunoblotting of the cloacal cytosol revealed the B form, but no A form of PR, both of which were found in the oviduct samples. Muscle cells of the duodenum and jejunum were not found to contain PR. Estrogen treatment was not needed to stimulate the production of PR in any of the tissues examined. We therefore conclude that the B form of PR is constitutively expressed in the mesothelial cells in different parts of the peritoneum and also in the smooth muscle cells of the ileum, colon and cloaca.

Aging

Progesterone receptor concentration differences in the chick oviduct cells and apparent down-regulation by ligand. A semiquantitative immunohistochemical study.

A semiquantitative immunohistochemical technique was developed for identification of chick progesterone receptor (PR). The mouse monoclonal antibody PR6 was used. The nuclear PR concentration was analyzed with Leitz Orthoplan MPV-3 light microscope. The target tissue was chick oviduct, with epithelial, glandular, mesenchymal, smooth muscle and peritoneal cells analyzed separately. PR concentration varied between different cell types and also from cell to cell within a single cell type. A significant decrease of PR concentration, as noted by decrease in staining, was also observed in all studied cell types, 6 h after a single injection of progesterone. This technique allows for histological identification of biochemical events that should help lead to the understanding of the role of PR changes in a variety of experimental situations.

Animals

Lactoferrin in human amniotic fluid.

The concentration of human lactoferrin (LF) was measured by radioimmunoassay or non-competitive avidin--biotin assay in amniotic fluid, cord blood and in the decidua, trophoblast, fetal membranes and umbilical cord. Amniotic fluid was obtained by amniocentesis, and cord blood and tissue samples were taken after delivery or elective Caesarean section. No detectable concentration of LF was found in amniotic fluid before week 20 of pregnancy. A significant increase in the LF concentration was observed around week 30 and it remained high until term. In cord blood, an undetectable or low concentration of LF was measured. In tissue specimens the amount of LF was highest in the decidua (9-95 micrograms/g), a moderate concentration was assayed in the amniotic (2-37 micrograms/) and chorion (2-26 micrograms/g) membrane and in the trophoblast (5-35 micrograms/g). In the umbilical cord, the concentration was less than 1 microgram/g. These results suggest a decidual origin of LF. The role of LF during pregnancy is discussed.

Amnion

Localization of lactoferrin in the male reproductive tract.

The immunohistochemical localization of lactoferrin in the normal human prostate, seminal vesicle, vas deferens, epididymis and testis was studied using the peroxidase-antiperoxidase method at the light and electron microscopical level. Lactoferrin immunoreactivity was localized in the glandular epithelial cells and granulocytes in the prostate and seminal vesicle. In the prostate, lactoferrin showed an uneven distribution; some of the glands contained exclusively positive cells and others were completely lactoferrin negative, while the rest contained scattered positive cells. The seminal vesicles were divided into three segments, and their lactoferrin content varied significantly although it was always epithelial. The ductus deferens, epididymis and testis contained no lactoferrin. In conclusion, lactoferrin was found in the prostate and seminal vesicles, but not in the testis.

Aged

New freeze-dry and vapor fixation method for immunohistochemistry of soluble proteins: subcellular location of the progesterone receptor.

We describe a new application of freeze-drying and vapor fixation for immunohistochemical location of soluble proteins. The method avoids the liquid phase, which eliminates the possible diffusion of soluble proteins. Two vapor fixatives, paraformaldehyde and p-benzoquinone, were tested and p-benzoquinone was found to preserve antigenicity of progesterone receptor (PR) and ovalbumin better than paraformaldehyde. The method proved to be highly sensitive, since higher concentrations of antigen were found in some tissues and some tissues found to be antigen negative by earlier liquid fixation methods proved to contain antigen. The location of PR as a highly soluble protein was studied. With the present method, both unoccupied and occupied PR were located in the nuclei, a similar finding as with the earlier liquid fixation method. The results further support the concept that PR is an intranuclear protein independent of its ligand occupation. PR was detected in a few cells inside the follicles of the bursa of Fabricius and in the smooth muscle cell nuclei of the small intestine, observations not previously made owing to the insensitivity of the earlier methods.

Animals

Development of progestin-specific response in the chicken oviduct.

Avidin is a host acute defense protein induced by progestins and by inflammation caused by injurious factors such as microbes, viruses, toxic factors or tissue trauma. In the reproductive tract of egg-laying vertebrates avidin has evolved into a progestin-dependent secretory protein involved in anti-microbial action through its biotin avidity. For "progestin-dependent avidin" production, cellular differentiation by estrogen is necessary. In contrast, the expression of "progestin-independent or inflammation-induced avidin" does not require differentiation. Many cell types such as macrophages, heterophils and fibroblasts can produce avidin after non-specific cellular injuries. The wide distribution of avidin in avian, reptilian and amphibian species could be explained on the basis of its vital functions such as antimicrobial or antifungal, metabolic and immunomodulatory actions. The ontogeny of the progestin-dependent avidin synthesis is a complex event involving oviductal differentiation by steroid hormones leading to a specific gene expression. The first phase in oviductal differentiation by estrogens is characterized by a new chromatin organization and by an infiltration of progesterone receptor (PR)-containing mesenchymal cells into the subepithelial mucosa leading to epithelial cell differentiation ("mesenchymal and epithelial cell interaction"). The second phase in the differentiation of progestin-induced response is dependent on the presence of PR in the secretory cells. Two kinds of PR expression occur in the oviduct. The first is a "constitutive PR" and is found in the epithelial, submucosal and peritoneal cells of the immature chick oviduct without steroid treatment, and the second is an "inducible PR" found especially in the mucosal mesenchymal and smooth muscle cells. Avidin production requires PR in the target cells, but not all PR-containing cells can produce avidin. Therefore, in addition to PR, other transcription factors are needed to define the target cell specificity of the response to progestins. Earlier biochemical studies suggested that cytosolic and/or nuclear unoccupied PR was complexed as an 8 S form with the heat shock protein 90 (hsp90). Our immunohistochemical results, however, indicate that PR in vivo is not bound to hsp90, which is located entirely in the cytoplasm, whereas PR is an entirely nuclear protein in both ligand-occupied and unoccupied forms. Therefore, we assume that PR is a monomeric (4S) or homodimeric (5S) (chromatin?) protein associated to DNA. Ligand binding to PR appears to lead to a conformational change, dimer formation, tighter binding to PRE (progesterone responsive element) and to transcription factors, phosphorylation and proteolysis of PR as well as a chromatin change.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals