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Biomedical subjects

N Harada

Publications and source records attributed to N Harada.

At least 307 records · Page 17Linked to original sources

Effect of dietary paraquat on a rat mutant unable to synthesize ascorbic acid.

To obtain some insight into the toxicity of paraquat (PQ) in humans, PQ dichloride at 250 ppm in the diet was administered to both normal (NO) rats and ODS-od/od (OD) rats which are unable to synthesize ascorbic acid (AsA). Firstly, OD rats and NO rats treated with PQ were compared with untreated NO rats (CO). Only OD rats displayed several symptoms of PQ poisoning such as anorexia, hypokinesia, diarrhea, epistaxis, tremor and their pili became rough about 9 days after. Their cysteine proteinase inhibitor level in plasma and lung increased to 2- and 6-fold, respectively, of CO. In contrast, NO rats treated with PQ resembled CO rats, and their cysteine proteinase inhibitor levels were unchanged until 11 days. After this period they began to display symptoms. Secondly, OD rats fed with different amounts of AsA were compared. Excess AsA delayed the onset of symptoms by only 1 day. Thirdly, the day of onset of symptoms was found to be influenced with the weight of rats.

Animals↗

Localization of testosterone-sensitive and sexually dimorphic aromatase-immunoreactive cells in the quail preoptic area.

The distribution of aromatase-immunoreactive cells was studied in the medial preoptic nucleus of male and female quail that were sexually mature and gonadally intact, or gonadectomized, or gonadectomized and treated with testosterone. The study first confirmed the existence of a significant difference in the number of aromatase-immunoreactive cells between males and females (males > females) and the marked effect of castration and testosterone treatment which, respectively, decrease and restore the number of these cells. An analysis of the distribution in space of this neurochemically defined cell population was also carried out. This study revealed that castration does not uniformly decrease the density of aromatase-immunoreactive cells, but local increases are observed in an area directly adjacent to the third ventricle. A number of new sex differences in the organization of the medial preoptic nucleus and its population of aromatase cells have, in addition, been identified. The density of aromatase-immunoreactive cells is not higher in males than in females throughout the nucleus, but a higher density of immunoreactive cells is present in the ventromedial part of the nucleus in females as compared to males. In addition, the cross-sectional area of the nucleus as defined by the population of aromatase-immunoreactive cells is larger in males than in females in its rostral part and its shape is more elongated in the dorso-ventral direction in females than in males. Some of these differences (e.g. higher density of ARC-ir cells in the ventromedial part of the female POM, shape of the nucleus) appear to be organizational in nature, because they are still present in birds exposed to the same endocrine conditions during adult life (e.g. gonadectomized and treated with a same dose of testosterone). This conclusion should now be tested by experiments manipulating the endocrine environment of quail embryos. The anatomical heterogeneity of the medial preoptic nucleus revealed by this study also suggests a functional heterogeneity and the specific roles of the medial and lateral parts of the nucleus should also be investigated.

Animals↗

Effects of testosterone and its metabolites on aromatase-immunoreactive cells in the quail brain: relationship with the activation of male reproductive behavior.

The enzyme aromatase converts testosterone (T) into 17 beta-estradiol and plays a pivotal role in the control of reproduction. In particular, the aromatase activity (AA) located in the preoptic area (POA) of male Japanese quail is a limiting step in the activation by T of copulatory behavior. Aromatase-immunoreactive (ARO-ir) cells of the POA are specifically localized within the cytoarchitectonic boundaries of the medial preoptic nucleus(POM), a sexually dimorphic and steroid-sensitive structure that is a necessary and sufficient site of steroid action in the activation of behavior. Stereotaxic implantation of aromatase inhibitors in but not around the POM strongly decreases the behavioral effects of a systemic treatment with T of castrated males. AA is decreased by castration and increased by aromatizable androgens and by estrogens. These changes have been independently documented at three levels of analysis: the enzymatic activity measured by radioenzymatic assays in vitro, the enzyme concentration evaluated semi-quantitatively by immunocytochemistry and the concentration of its messenger RNA quantified by reverse transcription-polymerase chain reaction (RT-PCR). These studies demonstrate that T acting mostly through its estrogenic metabolites regulates brain aromatase by acting essentially at the transcriptional level. Estrogens produced by central aromatization of T therefore have two independent roles: they activate male copulatory behavior and they regulate the synthesis of aromatase. Double label immunocytochemical studies demonstrate that estrogen receptors(ER) are found in all brain areas containing ARO-ir cells but the extent to which these markers are colocalized varies from one brain region to the other. More than 70% of ARO-ir cells contain detectable ER in the tuberal hypothalamus but less than 20% of the cells display this colocalization in the POA. This absence of ER in ARO-ir cells is also observed in the POA of the rat brain. This suggests that locally formed estrogens cannot control the behavior and the aromatase synthesis in an autocrine fashion in the cells where they were formed. Multi-neuronal networks need therefore to be considered. The behavioral activation could result from the action of estrogens in ER-positive cells located in the vicinity of the ARO-ir cells where they were produced (paracrine action). Alternatively, actions that do not involve the nuclear ER could be important. Immunocytochemical studies at the electron microscope level and biochemical assays of AA in purified synaptosomes indicate the presence of aromatase in presynaptic boutons. Estrogens formed at this level could directly affect the pre-and post-synaptic membrane or could directly modulate neurotransmission namely through their metabolization into catecholestrogens (CE) which are known to be powerful inhibitors of the catechol- omicron - methyl transferase (COMT). The inhibition of COMT should increase the catecholaminergic transmission. It is significant to note, in this respect, that high levels of 2-hydroxylase activity, the enzyme that catalyzes the transformation of estrogens in CE, are found in all brain areas that contain aromatase. On the other hand, the synthesis of aromatase should also be controlled by estrogens in an indirect, transynaptic manner very reminiscent of the way in which steroids indirectly control the production of LHRH. Fibers that are immunoreactive for tyrosine hydroxylase (synthesis of dopamine), dopamine beta-hydroxylase (synthesis of norepinephrine) or vasotocine have been identified in the close vicinity of ARO-ir cells in the POM and retrograde tracing has identified the origin of the dopaminergic and noradrenergic innervation of these areas. A few preliminary physiological experiments suggest that these catecholaminergic inputs regulate AA and presumably synthesis.

Androgens↗

Aromatase cytochrome P450 gene expression in endometrial carcinoma.

We analysed aromatase gene expression and its regulation in seven cases of endometrioid endometrial carcinoma. Immunohistochemistry revealed the presence of strong aromatase immunoreactivity in the stromal cells of carcinoma in five out of seven cases. A polymerase chain reaction after reverse transcription (RT PCR) revealed varying levels of aromatase transcripts (0.1-27.0 amol ng(-1) total mRNA) in five cases. The alternative use of multiple exons 1 was also examined by identifying various human aromatase transcripts specific for exons 1 in RT-PCR products. Gonadal type or exon 1d was primarily used in three cases in which aromatase overexpression was not detected. The two cases in which fibroblasts type or exon 1b was used with other exons 1 as minor transcripts demonstrated aromatase overexpression in immunohistochemistry and RT PCR analysis. Further studies are required, but alternative splicing as well as use of multiple exons 1 transcripts may result in increased aromatase expression in stromal cells observed in endometrial carcinoma.

Adult↗

Immunophenotyping of peripheral blood mononuclear cells collected by cytotoxic and cytotoxic/G-CSF mobilization.

We investigated surface immunophenotypes of peripheral blood mononuclear cells (PBMC) collected by cytotoxic and cytotoxic/G-CSF mobilization of peripheral blood stem cells (PBSC) from 38 patients with haematological malignancies in complete remission who underwent consolidation chemotherapy. PBMC were collected by leucapheresis during the haematopoietic recovery phase after intensive chemotherapy. G-CSF was used for mobilization of PBSC in 19 cases. Surface immunophenotyping of frozen-thawed PBMC was performed by flow cytometry. Our findings showed that monocytes and T cells were the two major cell components of PBMC. There were very few B cells in PBMC. Expression of CD45RO and HLA-DR was elevated in lymphocytes, suggesting that T cells in PBMC were activated. The percentage of CD34 positive cells were significantly increased in PBMC collected by cytotoxic/G-CSF mobilization (group 1) compared with PBMC collected by cytotoxic mobilization (group 2). There were significantly higher percentages of CD14 and CD33 positive cells in group 1 than in group 2. The percentage of CD4 positive lymphocytes positive for HLA-DR was significantly higher in group 1 compared with group 2. These observations indicated that PBMC contained a large number of monocytes and activated T cells, especially in cytotoxic/G-CSF mobilization.

Adolescent↗

Effect of vorozole, an aromatase enzyme inhibitor, on sexual behavior, aromatase activity and neural immunoreactivity.

Aromatase enzyme is essential for the expression of normal sexual behavior in many mammals and birds. Here we report that vorozole (R83842), a non-steroidal aromatase inhibitor, blocks sexual behavior in the female musk shrew. In addition, vorozole treatment lowers aromatase activity in male and female preoptic area, and reduces plasma estradiol concentrations in females. Our findings confirm and extend results demonstrated in other species, conducted with the active enantiomer (R83842), or the racemic mixture (R76713, racemic vorozole). We also report that vorozole treatment affects the immunocytochemical distribution of aromatase immunoreactivity (AROM-ir) in musk shrew brain. The histological identification of neurons that contain this enzyme has been difficult in mammals. Several aromatase enzyme antisera have been developed and used in brain, and each gives a different pattern of immunoreactivity. Moreover, despite the fact that aromatase activity is very high in the bed nucleus of the stria terminalis, several amygdala nuclei, the preoptic area and hypothalamus, AROM-ir in these regions has been very limited. The distribution of AROM-ir in female musk shew brain tissues is modified by treatment with vorozole prior to sacrifice. Female musk shrew brains contain aromatase immunoreactive cell bodies, as reported previously, in the central amygdala, lateral septum and to a limited extent in the bed nucleus of the stria terminalis (BST). Brains of females treated with vorozole show additional immunoreactivity in the preoptic area, hypothalamus, and medial amygdala, and have a broad distribution of AROM-ir in several subdivisions of the BST. Several sexual dimorphisms are apparent in musk shrews brains after treatment with vorozole. We have quantified this sexual dimorphism in the medial preoptic area (MPO) by counting immunoreactive cells. In both the rostral and caudal portions of the MPO, female brains contain significantly fewer AROM-ir cell bodies than males. These data are in complete agreement with sex differences in biochemical analyses of aromatase activity in the MPO. At this time we do not know if these dimorphisms are the result of differences in circulating levels of steroids in males and females, and/or if the AROM-ir nuclei regulate sexually dimorphic behaviors.

Animals↗

Neurotransmitter-mediated regulation of brain aromatase: protein kinase C- and G-dependent induction.

Aromatase in the diencephalic neurons, the level of which increases transiently during the prenatal to neonatal period, has been suggested to be involved in control of sexual behavior and differentiation of the CNS. Effects of neurotransmitters on levels of aromatase mRNA in cultured neurons were investigated to determine factors regulating the developmental increase that occurs in level of fetal brain aromatase. The expression of aromatase in diencephalic neurons of fetal mice at embryonic day 13, cultured in vitro, was significantly affected by alpha 1-adrenergic receptor ligands. Aromatase mRNA levels were higher in neurons treated with the alpha 1-agonist phenylephrine than in control neurons, whereas prazosin, an alpha 1-antagonist, suppressed this increase, and ligands for alpha 2- or beta-adrenergic receptors did not exert any influence. The profile of alpha 1-adrenergic receptor subtypes during actual development in vivo suggested that the alpha 1B subtype is in fact responsible for the signal transduction. Substance P, cholecystokinin, neurotensin, and brain natriuretic peptide also increased the level of expression along with phorbol 12-myristate 13-acetate and dibutyrylcyclic GMP, whereas forskolin and dibutyryl-cyclic AMP caused a decrease. These data indicate that stimulation via alpha 1 (possibly alpha 1B)-adrenergic receptors, as well as receptors of specific neuropeptides, controls the expression of aromatase in embryonic day 13 diencephalic neurons through activation of protein kinase C or G. beta-Adrenergic receptors would not appear to participate in the regulation, judging from their developmental profile, although cyclic AMP might be a suppressive second messenger.

Adrenergic alpha-1 Receptor Agonists↗

Critical proline residues of the cytoplasmic domain of the IL-5 receptor alpha chain and its function in IL-5-mediated activation of JAK kinase and STAT5.

The high-affinity receptor (R) for IL-5 consists of a unique alpha chain (IL-5R alpha) and a beta chain (beta c) that is shared with the receptors for IL-3 and granulocyte macrophage colony stimulating factor (GM-CSF). We defined two regions of IL-5R alpha for the IL-5-induced proliferative response, the expression of nuclear proto-oncogenes, and the tyrosine phosphorylation of cellular proteins including beta c, SH2/SH3-containing proteins and JAK2 kinase. In the studies described here, we demonstrate that IL-5, IL-3 or GM-CSF stimulation induces the tyrosine phosphorylation of JAK2, and to a lesser extent JAK1, and of STAT5. Mutational analysis revealed that one of the proline residues, particularly Pro352 and Pro355, in the membrane-proximal proline-rich sequence (Pro352-Pro353-X-Pro355) of the cytoplasmic domain of IL-5R alpha is required for cell proliferation, and for both JAK1 and JAK2 activation. In addition, transfectants expressing chimeric receptors which consist of the extracellular domain of IL-5R alpha and the cytoplasmic domain of beta c responded to IL-5 for proliferation and tyrosine phosphorylation of JAK1. Intriguingly, electrophoretic mobility shift assay analysis revealed that STAT5 was activated in cells showing either JAK1 or JAK2 tyrosine phosphorylation. These results indicate that activation of JAK1, JAK2 and STAT5 is critical to coupling IL-5-induced tyrosine phosphorylation and ultimately mitogenesis, and that Pro352 and Pro355 in the proline-rich sequence appear to play more essential roles in cell growth and in both JAK1/STAT5 and JAK2/STAT5 activation than Pro353 does.

Animals↗

Functional aromatase expression in porcine adrenal gland and testis.

The expression of aromatase cytochrome P450 (P450arom) in the adrenal glands, testes, and placentas of fetal and newborn pigs was investigated. Western immunoblot analysis detected a single 48-50-kDa protein band in these tissues as well as in other porcine tissues known to express P450arom including Day 12 tubular conceptuses, theca interna, and granulosa. Slight differences in migration suggested that the P450arom protein expressed in the testis was larger than that in the adrenal gland, which was, in turn, larger than that in placenta, theca, and granulosa. Consistent with P450arom expression in these tissues, a cDNA encoding porcine P450arom hybridized to a 2.3-kb transcripts in Northern analyses of porcine blastocysts, placentas, and fetal and newborn adrenal glands and testes, as well as in theca and granulosa tissues from preovulatory follicles. No differences in transcript size were detectable among tissues. The identity of P450arom transcripts was confirmed by sequence analysis of partial cDNA clones amplified from porcine fetal adrenal glands, testes, and placentas according to the RACE procedure. The sequences of the adrenal and testis clones were identical but differed from the placental sequence, which represented the first 85 amino acids of porcine P450arom. Specifically, the adrenal and testis clones expressed transcripts that resembled the ovarian isoform of porcine P450arom, rather than the porcine placental isoform, predicting a two-amino acid deletion and 12 predicted amino acid substitutions. P450arom activity was examined to further define expression in these tissues. Activity in adrenal, testis, and placental homogenates was inhibited by 4-hydroxyandrostenedione (4OH-A4) whereas inhibition by etomidate was demonstrated in the adrenal and testis homogenates but not in the placental homogenates. The sensitivity of activity in the newborn porcine adrenal glands and testes to inhibition by etomidate was similar to that of ovarian P450arom activity. The level of P450arom activity was highest in the placenta and lowest in the adrenal gland, and no effect of fetal sex was noted in either tissue. Immunocytochemical studies localized the expression of P450arom in the adrenal gland of newborns to cells at the corticomedullary junction and, with greater intensity, to cells around the developing medullary lobules. The same cells expressed cytochrome P450 17 alpha-hydroxylase, the expression of which also extended throughout the zona fasciculata. The interstitial cells were the site of P450arom expression in the testis, but no expression could be detected in any cells with the spermatic tubules. These data demonstrate that fetal and newborn porcine adrenal glands and testes express an active P450arom that resembles the isoform expressed in the ovary. The localization of adrenal expression suggests a possible role in medullary maturation and function in the fetal and newborn pig.

Adrenal Glands↗

Role of granulocyte elastase in ischemia/reperfusion injury of rat liver.

OBJECTIVE: To investigate the role of granulocyte elastase in ischemia/reperfusion injury of liver, the effect of ONO-5046, a granulocyte elastase inhibitor, was examined in ischemia/reperfusion-induced liver injury in rats. DESIGN: Prospective, randomized, controlled study. SETTING: Research laboratory at a university medical center. SUBJECTS: Male Wistar rats, weighing 220 to 280 g. INTERVENTIONS: Animals receiving continuous intravenous infusion of ONO-5046 (50 mg/kg/hr) were subjected to hepatic ischemia/reperfusion. Hepatic damage was evaluated by effects on bile formation capacity, plasma clearance of indocyanine green, and serum aminotransferase concentrations after ischemia/reperfusion. MEASUREMENTS AND MAIN RESULTS: Hepatic dysfunction, observed after 60 mins of ischemia/reperfusion, led to a reduction in bile flow and to a decrease in the plasma clearance of indocyanine green. These indicators of hepatic dysfunction were prevented, to a large extent, by administration of ONO-5046. Serum concentrations of aminotransferases increased after hepatic ischemia/reperfusion, peaking at 12 hrs of reperfusion. Increases in serum concentrations of aminotransferases were significantly inhibited by ONO-5046. CONCLUSION: Granulocyte elastase derived from activated leukocytes may play a critical role in hepatic dysfunction and the subsequent hepatic injury induced by ischemia/reperfusion.

Animals↗

Trisomy 13/trisomy 18 mosaicism in an infant.

Cytogenetic analysis of amniotic fluid cells from a 31-week-old fetus suffering from polyhydramnios revealed that there were two cell lines, each with either trisomy 13 or trisomy 18. We studied the origin and mechanism for formation of this unique mixoploidy by tracing chromosomal heteromorphisms as genetic markers, and showed no discordance of parent-child transmission between the two cell lines in any of the heteromorphisms examined. The result indicated that the mixoploidy is not chimerism but mosaicism and that the mechanism of mosaic development is most likely due to two non-disjunctional events which had occurred independently at the two-cell stage of the zygote. A girl was born at the 38th gestational week and her clinical features were mainly those for trisomy 13. Chromosome analysis of the newborn confirmed +13/+18 mosaicism in fibroblasts from the skin and chorionic plate, while cord blood lymphocytes and chorionic villus cells showed only the +18 cell line.

Abnormalities, Multiple↗

Aromatase mRNA levels in benign prostatic hyperplasia and prostate cancer.

BACKGROUND: Estrogens are suspected to play a role in the pathogenesis of benign prostatic hyperplasia (BPH) and prostate cancer. In this study, the expression of aromatase messenger ribonucleic acid (mRNA) was determined, and these levels were quantitated, in human prostatic tissues to evaluate the role of estrogens in the pathogenesis of BPH and prostate cancer. METHODS: Prostatic tissues were obtained either by retropubic prostatectomy, radical prostatectomy, or radical cystectomy from patients with BPH, prostate cancer, and bladder cancer. The expression of aromatase mRNA in the prostatic tissues was studied by Southern blot analysis of the reverse transcription and polymerase chain reaction technique (RT-PCR) products. Aromatase mRNA levels were measured in human prostatic tissues by the RT-PCR using a fluorescent primer. RESULTS: Aromatase mRNA was identified in all specimens by Southern blot analysis of the RT-PCR products. The concentrations of aromatase mRNA (mean +/- SD) which were measured by fluorometric quantitation in 16 of 19 patients with BPH and in 3 of 4 patients with prostate cancer, were 1.81 +/- 3.02, and 0.84 +/- 0.27, x 10(-3) attomoles/micrograms of total RNA, respectively. CONCLUSIONS: These results demonstrate local formation of estrogen in the prostates of patients with BPH and prostate cancer. Controlled studies will be necessary to determine whether this may be a factor in the development of BPH and prostate cancer.

Aged↗

In vitro increase of aromatase mRNA in diencephalic neurons.

This study was designed to (1) examine the ability of fetal diencephalic neurons cultured in vitro to express aromatase mRNA and (2) evaluate the involvement of several environmental factors which may regulate the development and differentiation of the neurons in the central nervous system. Brain cells from fetal mice at various developmental stages were cultured as tissue slices and as primary monolayer cells, and the expression levels of aromatase mRNA in the cultured cells were measured by a quantitative reverse transcription-polymerase chain reaction method using an internal standard. On cultured slices of the diencephalic region from fetal mice on embryonic day 12 (E12), E13, or E15 on collagen-coated membranes, the expression level of the mRNA continued to increase for the initial 2-3 days as that in vivo. Time-dependent increase of aromatase mRNA was also observed for 3 days in E13 neuronal cells dissociated with papain and cultured on poly L-Lys-coated dishes in serum-free medium. However, no significant time-dependent increase of the aromatase mRNA level was observed in E10 or E11 brain cells cultured by either method. These findings suggest that the developmental increase of aromatase mRNA in diencephalic neurons is an endogenous characteristic and probably genetically determined after E12.

Animals↗

Aromatase immunoreactivity in axon terminals of the vertebrate brain. An immunocytochemical study on quail, rat, monkey and human tissues.

Intraneuronal production of estradiol from testosterone has been shown to play a pivotal role in gender-specific brain development of most vertebrates, and to participate in numerous functions of the adult central nervous system. Previous biochemical and morphological approaches demonstrated that estrogen synthetase (aromatase) is present in specific limbic and hypothalamic structures. On the other hand, less attention has been paid to revealing its subcellular distribution. The possibility of aromatase presence in axonal processes has been indicated by recent biochemical and morphological observations suggesting new insights for the role of aromatase in neural functions. The objective of the present study was to provide morphological evidence for the subcellular location of aromatase in neurons of different vertebrate species including Japanese quail, rat, monkey, and human. Immunocytochemistry using a purified polyclonal antiserum against human placental aromatase localized immunoreactivity to hypothalamic and limbic cell groups in all of these species. Light and electron microscopic examination of vibratome sections revealed the presence of aromatase immunoreactivity throughout the neuronal perikarya, including dendrites and axonal processes. In each species there were numerous boutons which contained labeled small clear synaptic vesicles. Many of these axon terminals formed synapses with immuno-negative and immuno-positive dendrites and perikarya. This study furnishes the first immunolocalization of aromatase in the brains of two primate species, humans and monkeys. The provision of further evidence for estrogen synthesis in axons and axon terminals may help resolve apparent differences between the measurement of aromatase activity and the lack of aromatase-immunopositive cell bodies in previous studies. The present findings may be coupled with recent evidence regarding the molecular biology and the diversity of functional properties of P450 aromatase to indicate previously unexpected effects of brain aromatase at the synaptic level.

Adult↗

Direct inhibitory effect of thyrotropin-releasing hormone on isolated cecal circular smooth muscle cells of guinea pig.

Smooth muscle cells isolated from cecal circular smooth muscle of the guinea pig were used to determine whether thyrotropin-releasing hormone (TRH) can inhibit the contractile response produced by 10(-6) M carbachol by exerting a direct action on muscle cells. In addition, the inhibitory effect of 2',5'-dideoxyadenosine (an inhibitor of adenylate cyclase), phorbol 12-myristate 13-acetate (an inhibitor of particulate guanylate cyclase), 6-anilinoquinoline-5,8-quinone (an inhibitor of nitric oxide synthase) on the TRH-induced relaxation of cecal circular smooth muscle cells was examined. TRH inhibited the contractile response produced by 10(-6) M carbachol in a concentration-dependent manner, with an IC50 value of 4 nM, 2',5'-Dideoxyadenosine and phorbol 12-myristate 13-acetate did not have any significant effect on the TRH-induced relaxation. On the other hand, 6-anilinoquinoline-5,8-quinone and N omega-nitro-L-arginine methyl ester significantly inhibited the relaxation produced by TRH. Our findings show that TRH has a direct inhibitory effect on the isolated cecal circular smooth muscle cells via activation of nitric oxide synthase and soluble guanylate cyclase.

Aminoquinolines↗

Aromatase and 17 beta-hydroxysteroid dehydrogenase type 1 in human breast carcinoma.

The in situ formation of estradiol plays an important role in the development and biological behavior of human breast cancer Aromatase and 17 beta-hydroxysteroid dehydrogenase type 1 (17 beta-HSD type 1) are two principal enzymes involved in in situ estradiol production. We evaluated the expression of aromatase and 17 beta-HSD type 1 by immunohistochemistry in 41 cases of invasive breast carcinoma (19 lobular and 22 ductal). We then examined the correlation among the expression of these enzymes, estrogen (ER) and progesterone (PR) receptor status, Ki67 labeling index of carcinoma cells, age, and the clinical stage of the patients. Marked aromatase immunoreactivity was observed in stromal cells around carcinomatous glands in 32 of 41 cases (78%), and 17 beta-HSD type 1 immunoreactivity was detected in carcinoma cells in 23 of 41 cases (56%). There was a significant correlation observed between expression of 17 beta-HSD type 1 and aromatase in invasive lobular carcinoma (P = 0.0119), but not in invasive ductal carcinoma. There was an inverse correlation between aromatase and ER status in invasive ductal carcinoma (P = 0.0213), but not in invasive lobular carcinoma. No other correlations were observed among 17 beta-HSD type 1, aromatase, PR, ER, clinical stage, age, and Ki67 labeling indexes. Aromatase and 17 beta-HSD are not always expressed simultaneously in human breast carcinoma, but their simultaneous expression is more frequent in invasive lobular carcinoma than invasive ductal carcinoma. Consequently, different mechanisms may be involved in the regulation of expression of these two enzymes in human breast carcinoma.

17-Hydroxysteroid Dehydrogenases↗

Presence of alternatively spliced transcripts of aromatase gene in human breast cancer.

The expression of aromatase (estrogen synthetase) is tissue specifically regulated through the alternative use of multiple exons 1 and promotors. We have determined the amounts of aromatase messenger ribonucleic acid (mRNA) and which type of multiple exons 1 of the human aromatase gene is used in breast tissues of 49 patients with breast cancer by reverse transcription-PCR analysis. The aromatase mRNA levels in these breast cancer tissues (4.53 +/- 0.66 x 10(-3) attomoles/micrograms RNA) were significantly (P < 0.01) higher than those in 16 nonmalignant breast tissues (1.73 +/- 0.40 x 10(-3) amol/micrograms RNA). Aromatase mRNA in all nonmalignant breast tissue were transcribed from skin fibroblast/fetal liver-specific exon 1 (exon 1b) of the gene. In 23 breast cancer tissues, the utilization of multiple exons 1 in the aromatase mRNA was the same as that in nonmalignant breast tissues, whereas in the other 26 cases, it changed from exon 1b to ovary-specific exon 1 (exon 1c). Such switching of tissue-specific exons 1 may affect strict regulation of the tissue-specific expression of aromatase, leading to abnormal expression of the aromatase. The consequent overproduction of local estrogen might promote carcinogenesis or the proliferation of breast cancers.

Adult↗