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R Vihko

Publications and source records attributed to R Vihko.

At least 55 records · Page 3Linked to original sources

Evaluation of PAP and PSA gene expression in prostatic hyperplasia and prostatic carcinoma using northern-blot analyses, in situ hybridization and immunohistochemical stainings with monoclonal and bispecific antibodies.

In this report we have investigated levels of prostatic acid phosphatase (PAP) and prostate-specific antigen (PSA) gene expression in prostatic carcinoma (Ca) and benign prostatic hyperplasia (BPH) specimens. Northern-blot analyses of total prostatic mRNA indicated that there was a tendency towards lower amounts of PAP mRNA and PSA mRNA in the Ca specimens than in the BPH specimens, although, because of the great variation in the expression levels of both mRNAs, these differences were not statistically significant. In situ hybridization analyses clearly showed that both PAP and PSA mRNAs were confined to the columnar epithelial cells and that stromal cells were devoid of these mRNAs. In addition, PAP and PSA mRNAs were more abundant in BPH tissue than in adjacent Ca tissue within the same specimen. The levels of PAP and PSA enzymes were analyzed immunohistochemically using a bispecific antibody having high affinity for both PAP and PSA, and the results were compared with those obtained using monoclonal anti-PAP and anti-PSA antibodies. All 3 antibodies stained only epithelial cells and BPH tissue consistently gave more intense staining than Ca tissue. Furthermore, the anti-PSA and the bispecific anti-PAP-PSA antibodies stained well or moderately differentiated Ca tissues more strongly than poorly differentiated Ca tissues. No PSA staining was detected in 3 and no PAP staining in 5 of the moderately or poorly differentiated carcinomas (grades II or III). Our results show that, in comparison with BPH tissue, prostatic Ca tissue is associated with significantly lower levels of mRNAs coding for the prostatic marker enzymes PAP and PSA, as well as with lower concentrations of these enzymes. Furthermore, dedifferentiation of prostate Ca is associated with a decrease in the level of intraprostatic PSA.

Acid Phosphatase↗

Differential estrogen substrate specificities for transiently expressed human placental 17 beta-hydroxysteroid dehydrogenase and an endogenous enzyme expressed in cultured COS-m6 cells.

The metabolism of estrogens catalyzed by human placental 17 beta-hydroxysteroid dehydrogenase (17HSD) transiently expressed in COS-m6 cells was studied, and the properties of the enzyme were compared with those of an endogenous hydroxysteroid dehydrogenase (HSD) expressed in the cells. In cultured cells, the endogenous HSD had almost exclusively oxidative activity, converting estradiol to estrone (oxidative and reductive activity, 0.84 +/- 0.164 and 0.034 +/- 0.01 nmol/mg protein.h, respectively). This was, nevertheless, opposed to the activity of the transiently expressed human placental 17HSD, as a high reductive activity (0.86 +/- 0.30 nmol/mg protein.h) appeared in the cells after transfection, whereas oxidative activity was not significantly induced. In the different transfections, the reductive activity was induced 13- to 34-fold, and the oxidative activity in the 17HSD-transfected cells was 65-162% of that in the mock-transfected cells. Thus, in cultured cells, these two enzymes preferentially catalyze opposite reactions. When the metabolism of the estrogens was followed up to 20 h, the two enzymes were found to regulate the proportion of estrone to estradiol in the culture medium. The different properties found for the enzymes show that the endogenous HSD expressed in the COS-m6 cells is an additional member of the family of 17HSD enzymes. It is suggested that different 17HSD enzymes exist, with differential estrogen substrate specificities in cultured cells. Thus, in addition to cofactor and substrate availability, the biological activity of estrogens in different cell types may be regulated by the expression of different forms of 17HSD enzymes, resulting in the dominance of either estradiol or estrone production.

17-Hydroxysteroid Dehydrogenases↗

The effects of an antiprogestin, mifepristone, and an antiestrogen, tamoxifen, on endometrial 17 beta-hydroxysteroid dehydrogenase and progestin and estrogen receptors during the luteal phase of the menstrual cycle: an immunohistochemical study.

The effects of a progesterone antagonist, mifepristone (RU486), and an estrogen antagonist, tamoxifen, given during the early luteal phase on endometrial 17 beta-hydroxysteroid dehydrogenase (17HSD) and estrogen (ER) and progesterone (PR) receptors were studied. Eleven regularly menstruating women were studied during control and treatment cycles. In the treatment cycle on day LH + 2 (2 days after the peak serum LH concentration), 10 subjects received a single dose of 200 mg mifepristone, and 9 received 2 doses of 40 mg tamoxifen on days LH + 2 and LH + 3. In addition, 4 subjects received 400 mg mifepristone in a separate treatment cycle. 17HSD, ER, and PR were measured immunohistochemically in endometrial tissue specimens taken on days LH + 6 to LH + 8. Blood samples were conducted during control and treatment cycles, and serum estradiol, progesterone, and LH concentrations were quantified by RIA. Administration of mifepristone blocked the induction of 17HSD by progesterone and prevented the expression of 17HSD in gland and surface epithelial cells in 8 patients. In 2 patients, staining of 17HSD was seen during both the control and mifepristone treatment cycles. The higher dose of mifepristone additionally given to four subjects did not block the expression of 17HSD in 2 cases where blocking was observed with the lower dose of mifepristone, and in 1 of these patients, very strong staining of 17HSD was observed in basal cells beneath the epithelial cells. ER and PR showed intense staining in the nuclei of both gland and stromal cells in mifepristone treatment cycles, whereas receptor staining was faint or absent in the respective control cycles. Tamoxifen did not have any significant effect on staining of 17HSD or the abundance of receptors. Serum concentrations of estradiol, progesterone, and LH were not significantly affected by the administration of mifepristone or tamoxifen. This study reveals that mifepristone, administered in the early luteal phase, usually blocks the expression of 17HSD and the down-regulation of PR and ER. However, the expression of 17HSD in some patients may reflect the ineffectiveness of the mifepristone treatment used to prevent implantation in certain subjects.

17-Hydroxysteroid Dehydrogenases↗

Genomic organization and DNA sequences of human 17 beta-hydroxysteroid dehydrogenase genes and flanking regions. Localization of multiple Alu sequences and putative cis-acting elements.

Genomic 17 beta-hydroxysteroid-dehydrogenase (17-HSD) clones were isolated from a human leucocyte genomic library using cDNA encoding human placental 17-HSD as a probe. The overlapping fragments spanned more than 21 kbp containing the duplications, 6.2 kbp of each, as well as 7 kbp upstream and 1.6 kbp downstream from the duplicated sequences. 17 complete and eight partial Alu elements were clustered in this area, covering about 30% of the region, including the borders of the duplications. Each duplication contained a 17-HSD gene and a conserved region of 1.56 kbp with 98% intercopy similarity. The exon structure of the 17-HSD gene II corresponded to the known cDNA species, but both genes contained a possible promoter region with TATA, GC and inverse CAAT boxes. The 5' flanking regions contained sequences similar to the consensus sequences of cis-acting elements, defined as regulators of 17-HSD gene expression. These putative sequences included estrogen and progesterone/glucocorticoid-response elements and a cyclic-AMP regulatory element.

17-Hydroxysteroid Dehydrogenases↗

Immunohistochemical study of the human 17 beta-hydroxysteroid dehydrogenase and steroid receptors in endometrial adenocarcinoma.

17 beta-Hydroxysteroid dehydrogenase (17HSD) and estrogen (ER) and progestin (PR) receptors were analyzed immunohistochemically in tissue specimens of 66 patients with endometrial adenocarcinoma. Plasma steroid concentrations were correlated to immunohistochemical data. 17HSD was detected in 48% of the specimens and was stained in the cytoplasm of epithelial cells. The tissues were characterized by a heterogeneous staining pattern for 17HSD. In some patients, intensively stained epithelial cell clusters were seen, indicating that local factors were responsible for the expression of the protein. Poorly differentiated adenocarcinoma specimens tended to have no 17HSD more frequently than did well or moderately differentiated tissues. ER and PR were detectable in 24% and 28% of patients, respectively, and were localized in the nuclei of epithelial and stromal cells. There was a significant correlation between 17HSD and PR staining and an inverse correlation between plasma progesterone concentrations and 17HSD staining. This is contrary to the data obtained with normal endometrium. The main reason for this inverse relation between endometrial 17HSD staining and plasma progesterone concentrations was that, in some postmenopausal patients with low plasma progesterone concentrations, intense staining for 17HSD was detectable in the endometrial carcinoma specimens. This indicates a major difference in the regulation of 17HSD expression in endometrial adenocarcinomas, compared with normal tissues of premenopausal women.

17-Hydroxysteroid Dehydrogenases↗

Immunological analysis of 17 beta-hydroxysteroid dehydrogenase in benign and malignant human breast tissue.

The expression of 17 beta-hydroxysteroid dehydrogenase (17-HSD) enzyme protein was studied in benign and malignant human breast tissue using the time-resolved immunofluorometric assay (IFMA), immunoblotting and immunohistochemistry. The presence and distribution of estrogen and progestin receptors was also analyzed immunohistochemically. Cytosolic 17-HSD concentrations in malignant breast specimens were highly variable (less than or equal to 0.2-311 ng/mg protein). As was previously found for the placental enzyme, the molecular weight of the 17-HSD expressed in malignant breast tissue was 35 kDa, estimated following polyacrylamide gel electrophoresis and immunoblotting. The cellular distribution of 17-HSD was further studied by immunohistochemistry. Immunostaining for 17-HSD was observed in 71% of the benign breast lesions (fibroadenomas and cases of mastopathia chronica) and in 47% of the cancer specimens (intra-ductal carcinomas, invasive ductal carcinomas). In benign lesions, the staining was exclusively localized in the cytoplasm of epithelial cells, with no immunoreactivity in the stromal cells. The staining in the cancer specimens was also detected only in the cytoplasm of malignant epithelial cells. A strong or moderate expression of 17-HSD was related to the presence of PR in the specimen (chi 2 = 4.657, p = 0.031). However, the expression of PR was not a prerequisite for expression of 17-HSD in all the cancer specimens. Our data suggest that, in addition to the reported regulation of 17-HSD by progestins, other factors are also involved in this process in breast tissue.

17-Hydroxysteroid Dehydrogenases↗

17 beta-hydroxysteroid dehydrogenase gene expression in human breast cancer cells: regulation of expression by a progestin.

The expression of the 17 beta-hydroxysteroid dehydrogenase (17-HSD) gene in a series of human breast cancer cell lines was studied by Northern blot hybridization with a cDNA probe and by a time-resolved immunofluorometric assay using polyclonal antibodies against the enzyme protein. The 17-HSD enzyme protein concentration was measured in the 800 x g cell extract. A high concentration was measured in the BT-20 cell line, corresponding to one-fourth of the average concentration in placental tissue. Western blot analysis indicated that the antigen corresponded to a single Mr 35,000 band. In 2 other cell lines (MDA-MB-361 and T-47D), the 17-HSD protein concentration was much lower, but still measurable, whereas in the remaining 5 cell lines (HBL-100, MCF-7, MDA-MB-231, MDA-MB-468, and ZR-75-1) it was below the detection limit of the assay. Treatment of the cells for 5 days with the synthetic progestin, ORG2058, resulted in an increase of the 17-HSD protein concentration only in the T-47D cell line. By Northern blot analysis, a low level of 2.3-kilobase mRNA transcripts was detected in all 8 cell lines. In addition, a 1.3-kilobase 17-HSD mRNA was present in the samples from the 3 cell lines containing measurable amounts of 17-HSD protein in the cell extract, and the band intensities were proportional to the amount of protein measured with the immunofluorometric assay. Only in the T-47D cell line did progestin treatment correspond to an increased amount of the 17-HSD 1.3-kilobase mRNA. These results suggest that the 1.3-kilobase mRNA for 17-HSD is the form most closely associated with protein expression and is also the only form responding to the progestin induction of the 17-HSD gene.

17-Hydroxysteroid Dehydrogenases↗

Distribution of estradiol-17 beta hydroxysteroid oxidoreductase in the urogenital tract of control and neonatally estrogenized male mice: immunohistochemical, enzymehistochemical, and biochemical study.

The present study was conducted to investigate the regional distribution of the enzymes catalyzing the interconversion of the hydroxyl and carbonyl groups at C-17 of the estrogen molecule within the male urogenital tract of adult mouse and to test the hypothesis, whether regional differences in the distribution are critical for estrogen responses. The highest ratios of NADPH-dependent 3H-estrogen reduction to oxidation at C-17 of cell-free homogenates were obtained from coagulating gland and seminal vesicle as well as from the prostatic and lower intrapelvic urethra, which are considered the most estrogen-sensitive parts of the male urogenital tract. Both NADP- and NAD-dependent oxidation of 3H-17 beta-estradiol were low or nondetectable at these sites. The epithelium of the lower and prostatic urethra as well as the periurethral collecting ducts were stained with the antibody prepared against human placental 17 beta-hydroxysteroid oxidoreductase. The NAD-dependent 3H-estradiol-17 beta oxidase activity was highest in the bladder epithelium, and the activity declined sharply in the urinary tract from the bladder downward. The lowest detectable activities were found in vas deferens and prostate (combined ventral and dorsolateral lobes). The uneven distribution of estradiol-17 beta oxidase activity may provide additional explanation for the regional differences of estrogen responses. The NADPH-dependent 17 beta-reduction of estrone and the immunohistochemical staining of the human placental estradiol-17 beta oxidoreductase antigenicity were not significantly altered after neonatal estrogenization. These findings do not lend any support to the idea that the increased estrogen sensitivity observed after neonatal estrogenization is associated with changes in 17 beta-oxidoreduction. However, the possibility remains that there are specific sites (e.g., epithelium of prostatic urethra and collecting ducts) in which the changes in 17 beta-oxidoreduction of estrogen does play a role in the regulation of estrogen action.

17-Hydroxysteroid Dehydrogenases↗

Immunohistochemical detection of human estrogen receptor with region D-specific antipeptide antibodies.

To study the possibility of using antipeptide antibodies for the immunohistochemical determination of human estrogen receptors (ER), three peptides corresponding to the putative major antigenic regions of the human ER (Met12-Leu26, or ERP1; Thr227-Gln267, or ERP2; Leu256-Gly275, or ERP3) were used to produce site-specific rabbit polyclonal antipeptide antisera. High titer antibodies were obtained against all the peptides used, as judged by time-resolved fluoroimmunoassay. The antibodies against region D (ERP3) specifically immunoprecipitated the ER proteins in vitro, as did the antiERP2 antibodies to a much smaller extent. With one of the region D-specific antibodies (antiERP3 Ab2) ER could also be immunohistochemically detected. When benign and malignant human breast and normal endometrial tissues were used, the immunohistochemical staining observed with these antipeptide antibodies correlated well with the staining obtained with an established method. Thus, the results reported here show that this part of region D in ER is a potential antigenic epitope for the production of site-specific antibodies against ER. Antipeptide antibodies produced against this region can be used to immunolocalize the ER in various normal and pathological human tissues.

Breast Neoplasms↗

Bovine uterine, cervical and ovarian androgen receptor concentrations. Correlation with estrogen and progesterone receptor concentrations.

Bovine cytosol androgen receptor (ARC) concentrations were examined simultaneously in various regions of the uterus and in ovarian tissues of cows, and were related to cytosol estrogen (ERC) and progesterone receptor (PRC) concentrations and circulating steroid levels. ERC concentrations were 3-7-fold and PRC concentrations 13-29-fold those of ARC in bovine endometrial and myometrial tissues. When serum progesterone levels were low, both endometrial and myometrial ARC, endometrial ERC, and endometrial and myometrial PRC concentrations were higher (p < 0.05) than those observed during higher progesterone concentrations. Because serum 5 alpha-dihydrotestosterone (5 alpha-DHT) concentrations were higher during the luteal phase, it is possible that ARC was down-regulated by this natural ligand at this phase of the cycle. There were no differences between uterine horns in endometrial or myometrial ARC concentrations. Bovine cervical and ovarian stromal tissue also contained ARC, and the concentrations were about the same as in the endometrium and the myometrium. The relative binding affinities (RBAs) of some steroid hormones towards ARC in vitro were: the synthetic compound R1881 (146%), 5 alpha-dihydrotestosterone (100%), testosterone (75%) while estradiol-17 beta, progesterone and dexamethasone had lower RBAs (2, < 1, < 1% respectively). Cytosol androgen receptor concentrations correlated significantly with cytosol progesterone (PRC) and estrogen receptor (ERC) concentrations, both in the endometrium and myometrium. These data show that androgens, such as 5 alpha-DHT, may participate the endocrine regulation of bovine reproductive tissues.

Animals↗

Effects of tumour mass and circulating antigen on the biodistribution of 111In-labelled F(ab')2 fragments of human prostatic acid phosphatase monoclonal antibody in nude mice bearing PC-82 human prostatic tumour xenografts.

We have evaluated the effects of tumour mass and circulating antigen (prostatic acid phosphatase, PAP) on the biodistribution and the incorporation of 111In-labelled F(ab')2 monoclonal antibody (MoAb) fragments directed against human PAP into human prostatic tumours (PC-82; 0.1-8.9 g) growing in nude mice. The radioactivities in the blood, liver, spleen, kidney and tumour were compared at 1, 3, 4 and 6 days after the intravenous administration of the antibody fragments. There was a significant correlation between the tumour size and the serum PAP concentration in the model employed. Even tissue of a small tumour (less than 0.1 g) had a high concentration of PAP, but it was not secreted into the circulation in detectable amounts when measured by radioimmunoassay (the lowest standard was 0.5 micrograms/l). The percentage uptake by tumours of the injected dose per gram of tissue (%ID/g) was inversely proportional to the tumour size at 24 h after the administration of 111In-labelled F(ab')2 fragments. This relationship had levelled off by 72 h and most likely reflected a better vascularisation of the smaller tumours. Our results show that the increase in tumour size and in the concentration of circulating antigen in the blood led to decreased tumour-to-blood ratios, since there was a tendency for higher blood activities in mice with larger tumours and higher serum PAP concentrations. There was no correlation between tumour size and label uptake by the liver during the follow-up over 144 h, although serum PAP concentrations ranged from 3.1 micrograms/l to 352 micrograms/l.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid Phosphatase↗

Regulation of steroid and steroid sulfate production and aromatase activity in cultured human granulosa-luteal cells.

The regulation of the production of steroids and steroid sulfates and the activity of aromatase in human luteinized granulosa cells were investigated. The cells were cultured for 48 h in the presence or absence of hCG and FSH. Basal production of pregnenolone (Pre, 0.3 +/- 0.03 ng/micrograms protein) and progesterone (P, 19.3 +/- 1.7 ng/micrograms protein) were high compared with that of other steroids beyond P in the steroidogenic pathway. The concentration of 17 alpha-hydroxyprogesterone (17-OHP) was lower 0.17 +/- 0.06 ng/micrograms and that of other steroids in the 4-ene and 5-ene pathways and steroid sulfates less than 0.05 ng/micrograms. Both hCG and FSH (100 ng/ml) stimulated the production of Pre and P 3- to 5-fold, but only minimal stimulation of other steroids and steroid sulfates was observed. Aromatase activity of granulosa-luteal cells was measured from the rate of formation of 3H2O from 1 beta-[3H]androstenedione (1 beta[3H]A) after exposing the cells to hCG, FSH or estradiol (E2) for 48 h. Basal aromatase activity was relatively low, but hCG and FSH stimulated aromatase 8- and 4-fold, respectively. The incubation of granulosa-luteal cells with E2 did not affect basal aromatase activity, but E2 augmented FSH-stimulated aromatase 1.4-fold (P less than 0.025). The results suggest that there is low 17 alpha-hydroxylase and steroid sulfokinase activity in human granulosa-luteal cells. Aromatase activity in these cells is regulated by both hCG and FSH, and intra-ovarian estrogens may regulate granulosa cell aromatase activity.

Aromatase↗

Immunohistochemical localization of 17 beta-hydroxysteroid dehydrogenase in the human endometrium during the menstrual cycle.

Immunoaffinity-purified polyclonal anti-rabbit antibody against human placental 17 beta-hydroxysteroid dehydrogenase (17HSD) was used to localize 17HSD in frozen sections of 21 human endometrial tissue specimens, taken at different stages of the menstrual cycle, and in the human placenta. The presence and distribution of estrogen and progesterone receptors were also analyzed in endometrial specimens using commercial immunohistochemical techniques. In addition, 17HSD was localized by immunoelectron microscopy in the endometrium and the placenta. In the endometrium, immunostaining of 17HSD appeared in the cytoplasm of surface epithelial and gland cells during the early and midluteal phase. During the late luteal phase, it gradually disappeared. No immunostaining was observed in the endometrium during the follicular phase of the menstrual cycle. The changes in staining intensity of 17HSD were associated with changes in the concentration of serum progesterone as judged by radioimmunoassay. An apparent inverse correlation between 17HSD expression and the concentrations of estrogen and progesterone receptors was observed. These results strongly support the concept that progesterone induces an increase in the amount of 17HSD, in the glandular and surface epithelial cells of the human endometrium. In the human term placenta, 17HSD immunostaining was detected exclusively in the cytoplasm of syncytiotrophoblasts. In immunoelectron microscopic studies of the endometrium and placenta, 17HSD staining was observed in the cytoplasm and it was associated with cytoplasmic membranes unrelated to the endoplasmic reticulum.

17-Hydroxysteroid Dehydrogenases↗

Time-resolved immunofluorometric assay of 17 beta-hydroxysteroid dehydrogenase in plasma.

We describe a time-resolved immunofluorometric assay (TR-IFMA) for human 17 beta-hydroxysteroid dehydrogenase (17HSD) in which antibody-coated microtiter strip wells and europium chelate-labeled polyclonal antibodies are used. In preparing the label, a polyclonal antibody is affinity-purified and derivatized with diethylenetriamine-pentaacetic acid. With this derivative, five to eight europium ions can be combined with one antibody molecule without decreasing the antibody's immunoreactivity. The minimum detectable concentration of 17HSD is 0.13 microgram/L; the intra- and interassay CVs are less than 8% and less than 15%, respectively, for concentrations between 0.3 and 100 micrograms/L. There is no difference between the concentrations of 17HSD in plasma specimens taken during the proliferative and luteal phases of the menstrual cycle, the measured mean concentration being 0.22 microgram/L. We found no correlation between plasma 17HSD and progesterone concentrations. The plasma concentrations of 17HSD increase during pregnancy, the mean concentrations being 1.5, 4.4, and 12.5 micrograms/L, during the first, second, and third trimesters of pregnancy, respectively. In the specimens from 18 men, the mean concentration was 0.18 microgram/L. In six plasma specimens from patients with endometrial adenocarcinoma, the mean concentration was 0.20 micrograms/L. Pre-analytical aspects are important in the assay of 17HSD because of the lability of the enzyme protein. Preferably, blood should be sampled into EDTA-containing tubes, plasma should be separated within 15 min, and glycerol must be added without delay to a final volume of 200 mL/L.

17-Hydroxysteroid Dehydrogenases↗

Progestin induction of 17 beta-hydroxysteroid dehydrogenase enzyme protein in the T-47D human breast-cancer cell line.

Steroid regulation of 17 beta-hydroxysteroid dehydrogenase (17-HSD) was studied in the T-47D human breast-cancer cell line, using a radioimmunoassay. In addition, 3 mRNA species (2.4, 1.4, and 0.9 kb) specific for the enzyme were shown to be present in these cells. All the synthetic progestins tested (ORG 2058, R5020, medroxyprogesterone acetate) significantly increased the immunoreactive enzyme protein concentration, while other types of steroids, such as testosterone, oestradiol and dexamethasone, were ineffective. The progestin-specific induction of 17-HSD was dose-related and was maximum in about 5 days. An antiprogestin, RU 486, when used in combination with synthetic progestins, blocked the progestin-induced increase of 17-HSD concentration very effectively. A good correlation was observed in the different experiments between the enzyme activity and the immunoreactive 17-HSD concentration. We conclude that progestins induce 17-HSD in T-47D cells and that the induction occurs via an increased accumulation of enzyme protein.

Breast Neoplasms↗

Immunological measurement of human 17 beta-hydroxysteroid dehydrogenase.

Human placental 17 beta-hydroxysteroid dehydrogenase (17-HSD) was purified to apparent homogeneity using ammonium sulfate precipitation and chromatography on Red-Agarose and DEAE-Sepharose columns. Electrophoresis on polyacrylamide gels under denaturing conditions and using silver staining showed a single protein with an apparent molecular weight of 37,800. Antibodies to the purified protein were raised in rabbits and were found by immunoblotting to be specific to 17-HSD. A sensitive radioimmunoassay was established using 125I-labeled 17-HSD as a tracer, an appropriate dilution of the antibody, and a kaolin-coupled double antibody for separating the antibody-bound and free fractions. The detection limit of the assay was approximately 150 pg/tube (1.5 micrograms/l). The cytosol fraction (105,000 g) of term placental tissue contained approximately 0.7 mg of 17-HSD per gram of protein, and the concentrations of 17-HSD measured by immunoassay and enzymatic activity proved to be strictly parallel in different partly purified placental preparations. The supernatants from centrifugations of human endometrial homogenates at 800 g and 105,000 g (after detergent treatment) displayed cross-reactivity with the antibody. The mean concentration of the cross-reacting substance in the radioimmunoassay was 14.1 micrograms/g protein (range 2-62.3) in specimens taken on different days in the cycle. These concentrations showed a significant correlation with the 17-HSD activities measured in the endometrial specimens (r = 0.722, P less than 0.001, n = 21). Mean concentrations of substance were 8.3 micrograms/g protein in endometrial specimens taken during the follicular phase (days 4-12, n = 8) and 22.9 micrograms/g protein during the luteal phase (days 16-22, n = 6) were obtained using the radioimmunoassay. There was excellent parallelism between the competition curves for [125I]iodo-17-HSD with purified 17-HSD standards and placental and endometrial homogenate dilutions. These data strongly suggest that the substance measured in the endometrial specimens was 17-HSD.

17-Hydroxysteroid Dehydrogenases↗