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T Maudelonde

Publications and source records attributed to T Maudelonde.

At least 19 recordsLinked to original sources

Anti-growth factor activities of benzothiophenes in human breast cancer cells.

We have tested the effects of two Eli-Lilly compounds, LY 117, 018 and raloxifene, on E2-regulated and IGF-I-induced proliferation or AP-1 activity in human breast cancer cells. We now demonstrate that both molecules have strong antiestrogenic and anti-growth factor inhibitory effects in MCF7 cells. They were as potent as ICI 182, 780 and more efficient than OH-Tam to prevent estradiol action whereas their inhibition on IGF-I stimulation was less than with ICI 182, 780 and equivalent to that of OH-Tam. Moreover, raloxifene was the most efficient molecule to prevent IGF-I-induced AP-1 activity, with a significant effect observed with a concentration as low as 5 x 10(-11)M in the presence of IGF-I alone. Similar dose-response curves were obtained with a combined treatment of IGF-I and E2 with a 2log shift. Their action on IGF-I-induced proliferation was completely abrogated in MCF7 transfectants in which the expression of an antiestrogen-regulated protein tyrosine phosphatase, PTPL1, was abolished by antisense RNA transfection. Accordingly, they were both able to dose-dependently regulate the expression of PTPL1 and to interfere with the PI3-K/Akt pathway by drastically decreasing Akt phosphorylation exclusively in wild-type PTPL1 expressing cells. Our data altogether demonstrate that raloxifene has a potent inhibitory effect on IGF-I action, with a drastic effect on AP-1 triggered responses as well as on Akt phosphorylation, suggesting that it might be a useful therapeutic agent in tumors in which these signalling pathways become constitutively active.

Breast Neoplasms↗

Aromatase expression in ovarian epithelial cancers.

Our study focused on aromatase cytochrome P450 (CYP19) expression in ovarian epithelial normal and cancer cells and tissues. Aromatase mRNA expression was analyzed by real-time PCR in ovarian epithelial cancer cell lines, in human ovarian surface epithelial (HOSE) cell primary cultures, and in ovarian tissue specimens (n=94), including normal ovaries, ovarian cysts and cancers. Aromatase mRNA was found to be expressed in HOSE cells, in BG1, PEO4 and PEO14, but not in SKOV3 and NIH:OVCAR-3 ovarian cancer cell lines. Correlation analysis of aromatase expression was performed according to clinical, histological and biological parameters. Aromatase expression in ovarian tissue specimens was higher in normal ovaries and cysts than in cancers (P<0.0001). Using laser capture microdissection in normal postmenopausal ovaries, aromatase was found to be predominantly expressed in epithelial cells as compared to stromal component. Using immunohistochemistry (IHC), aromatase was also detected in the epithelium component. There was an inverse correlation between aromatase and ERalpha expression in ovarian tissues (P<0.001, r=-0.34). In the cancer group, no significant differences in aromatase expression were observed according to tumor histotype, grade, stage and survival. Aromatase activity was evaluated in ovarian epithelial cancer (OEC) cell lines by the tritiated water assay and the effects of third-generation aromatase inhibitors (AIs) on aromatase activity and growth were studied. Letrozole and exemestane were able to completely inhibit aromatase activity in BG1 and PEO14 cell lines. Interestingly, both AI showed an antiproliferative effect on the estrogen responsive BG1 cell line co-expressing aromatase and ERalpha. Aromatase expression was found in ovarian epithelial normal tissues and in some ovarian epithelial cancer cells and tissues. This finding raises the possibility that some tumors may respond to estrogen and provides a basis for ascertaining an antimitogenic effect of AI in a subgroup of ovarian epithelial cancers.

Androstadienes↗

Transcriptional and posttranscriptional regulation of fibulin-1 by estrogens leads to differential induction of messenger ribonucleic acid variants in ovarian and breast cancer cells.

Fibulin-1 is an extracellular matrix protein overexpressed in epithelial ovarian and breast cancers. In estrogen receptor (ER)-positive ovarian and breast cancer cell lines, fibulin-1 mRNA levels are markedly increased by estrogens. Transfection experiments using fibulin-1 promoter constructs indicate that 17beta-estradiol (E2) increases fibulin-1 gene transcription and that ERalpha is more potent than ERbeta to mediate E2 regulation of the transfected fibulin-1 promoter. Using SL2 cells devoid of specificity protein 1 (Sp1) and site-directed mutagenesis of GC boxes, we evidenced that the E2 regulation occurs through a proximal specificity protein 1 binding site. In addition, we show that fibulin-1C and -1D mRNAs, the two major fibulin-1 splicing variants, are differentially induced by E2. The induction of both mRNAs variants is direct and independent of a newly synthesized protein intermediate. Interestingly, actinomycin D chase experiments demonstrate that E2 treatment selectively shortens the fibulin-1D mRNA half-life. This indicates that estrogens affect differentially the stability of fibulin-1 variants and may explain the lower accumulation of fibulin-1D mRNA on E2 treatment. In conclusion, our data show that estrogens, via ERalpha, are key regulators of fibulin-1 expression at both the transcriptional and posttranscriptional levels. The preferential induction of the fibulin-1C variant, which is overexpressed in ovarian and breast cancer, might play an important role in estrogen-promoted carcinogenesis.

Base Sequence↗

17beta-estradiol downregulates beta3-integrin expression in differentiating and mature human osteoclasts.

The increased bone resorption observed after estrogen withdrawal is responsible for bone loss and may lead to osteoporosis. The mechanism by which estradiol inhibits bone resorption is known to involve decreased osteoclastogenesis, however, the effect on osteoclast adhesion remains unclear. We examined the in vitro effect of estradiol and raloxifene on human osteoclast differentiation and function. Human peripheral blood mononuclear cells were cultured with M-CSF/RANK-L for 18 days, and we evaluated bone resorption, the expression of the protein and mRNA of the integrins, c-jun and c-fos in the presence or absence of estradiol. In this human model, beta3-integrin expression increased at the mRNA and protein levels during osteoclast differentiation, whereas that of beta5-integrin did not. We found that estradiol and raloxifene directly inhibited bone resorption on bone slices by 50%, and decreased the expression of beta3-integrin mRNA (60%) and protein (20%) in a time-dependent manner. Moreover, the mRNAs of c-fos and c-jun were both diminished by estradiol and raloxifene, particularly in early osteoclasts, but also to a lesser extent in mature cells. These findings suggest that the direct inhibitory action of estradiol on bone resorption may affect human osteoclast differentiation through downregulation of c-fos and c-jun and adhesion through modulation of beta3-integrin.

Blotting, Western↗

Analysis of the potential contribution of estrogen receptor (ER) beta in ER cytosolic assay of breast cancer.

Estrogen receptor (ER) content is the most useful parameter for predicting hormone response therapy in breast cancer. Assays available for detecting ER in breast tumor cytosol are ligand-binding assay (LBA), which detects both ERalpha and ERbeta, and the enzymatic immunoassay (EIA), in which monoclonal antibodies are directed against ERalpha. As shown in several studies, the 2 assays correlate and both are used routinely. However, some discrepancies between the 2 assays were found and explanations remain controversial. We evaluated ERalpha and ERbeta mRNA coexpression in breast tumors in order to study whether the presence of ERbeta could account for differences between LBA and EIA in the determination of ER protein level. Using HeLa cell lines transfected with either ERalpha or ERbeta, we confirmed that EIA, using H222 and D547 monoclonal antibodies, recognizes only ERalpha expression, whereas LBA detects both isoforms. In 119 breast tumor cytosols, the correlation between ER-EIA and ER-LBA was high (r = 0.72), although some discrepancies were found. When analyzing ER mRNA expression of samples with higher LBA values, no overexpression of ERbeta mRNA relatively to ERalpha mRNA were observed. There was a difference in ERbeta/ERalpha ratio between ER-negative and ER-positive samples, with a 10-fold increased median ratio in ER-negative samples (p = 0.01). We thus confirmed that the major form of ER in breast cancer is the ERalpha at both the protein and mRNA levels. Moreover, our data do not support the hypothesis that ERbeta expression could explain differences between LBA and EIA in the determination of ER protein level.

Antineoplastic Agents, Hormonal↗

A prospective prognostic study of the hormonal milieu at the time of surgery in premenopausal breast carcinoma.

BACKGROUND: Despite numerous studies, the influence of timing at surgery in relation to the menstrual cycle on the prognosis of breast carcinoma is still controversial. Most studies are retrospective, and the reliability of the menstrual history data is limited by the lack of hormonal assessment at the time of surgery. The authors prospectively studied the influence of the menstrual cycle phase as determined by circulating hormones at the time of surgery on the outcome of breast carcinoma. METHODS: A population of 360 premenopausal women with nonmetastatic breast carcinoma operated on from 1992 to 1995 was analyzed. Serum estradiol, progesterone, follicle-stimulating hormone (FSH), and luteinizing hormone (LH) levels were assayed the day of surgery to define the menstrual cycle phase (follicular, n = 186; ovulatory, n = 24; luteal, n = 150). The mean follow-up was 48 months. RESULTS: There were no relations between the menstrual phase at surgery and tumor size, cathepsin D level, Scarff-Bloom-Richardson grade, Pg receptor (PgR), and the number of positive lymph nodes. The mean estrogen receptor level was higher during the follicular phase than in the ovulatory and luteal phases (P < 0.02). Univariate analysis of recurrence free survival (RFS) and overall survival (OS) showed no relations with the menstrual phase or the level of estradiol and progesterone at the time of surgery. High LH or FSH levels (above the medians) were associated with shorter RFS (P = 0.02 and P = 0.04, respectively) or OS (P < or = 0.01 and P = 0.01, respectively). In multivariate analysis, lymph node status, PgR status and LH level were the most significant parameters for predicting OS. There appeared to be no survival differences between menstrual cycle groups after stratification by lymph node status. CONCLUSIONS: This prospective study showed a lack of prognostic value of timing at surgery in relation to the menstrual period or to estrogen and progesterone levels in premenopausal breast carcinoma. Conversely, high gonadotropin levels could predict OS independently of other prognostic factors.

Breast Neoplasms↗

Novel germline RET mutation segregating with papillary thyroid carcinomas.

The RET proto-oncogene is responsible for inherited medullary thyroid cancer syndromes. RET is also found mutated in sporadic medullary thyroid cancer (MTC) and rearranged in sporadic papillary thyroid carcinomas. Here, we describe a previously unreported germline RET mutation at codon 603 in exon 10 associated with both MTC and nonmedullary thyroid cancer (NMTC) in a kindred. RET may thus not be excluded as a potential candidate for predisposition to some forms of NMTC.

Adult↗

Dissociated overexpression of cathepsin D and estrogen receptor alpha in preinvasive mammary tumors.

The role of estrogen as a promoter agent of sporadic breast cancer has been considered by assaying, in benign breast disease (BBD) and in situ carcinomas (CIS), 2 markers, the estrogen receptor alpha (ERalpha) and cathepsin D (cath-D) involved in estrogen action on mammary tissue. ERalpha and cath-D were assayed by quantitative immunohistochemistry using an image analyzer in 170 lesions of varying histological risk (94 BBD and 76 CIS), and in "normal" glands close to these lesions. The ERalpha level increased significantly in proliferative BBD with atypia (P < .001), in non-high-grade CIS (P < .001), and in adjacent "normal" glands. ERalpha level was decreased in high-grade ductal CIS (DCIS) and also in adjacent "normal" glands. Cath-D level increased in ductal proliferative BBD (P < or = .01) and in high-grade DCIS (P < or = .003), but not in the other lesions. After menopause, ERalpha level was increased (P = .012) but not cath-D level. According to Mac Neman test, the high-grade DCIS were predominantly ERalpha negative and cath-D positive (P = .0017), and the other CIS were predominantly ERalpha positive and cath-D negative (P = .0002). The 2 markers are overexpressed early in premalignant lesions, but independently. This dissociation suggests a branched model of mammary carcinogenesis involving 1 estrogen-independent pathway with high cath-D and low ERalpha levels (including high-grade DCIS) and 1 estrogen-dependent pathway, with high ERalpha level (including proliferative BBD with atypia and low-grade DCIS). We propose that ERalpha-negative breast cancers may develop directly from high-grade DCIS and that ERalpha assay in preinvasive lesions should be considered in prevention trials with antiestrogens.

Adult↗

Semiquantitative reverse transcription-polymerase chain reaction to evaluate the expression patterns of genes involved in the oestrogen pathway.

The increasing number of factors to be taken into account in the oestrogen transcriptional process has created a need to develop a rapid screening method to evaluate their role in physiology and pathology. Molecular biology techniques enable gene expression studies at the mRNA level with small amounts of tissues. We therefore developed a semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR) technique using fluorescent oligonucleotides to analyse simultaneously a large panel of interrelated genes involved in the oestrogen transcriptional pathway using a moderately expressed housekeeping gene, the hypoxanthine phosphoribosyltransferase gene (HPRT), as the reference gene. Expression levels of oestrogen receptors (ERalpha, ERbeta), cofactors AIB1, RIP140, SMRT and the Fas-associated protein-tyrosine phophatase-1 (FAP-1) genes were evaluated in breast, endometrial and ovarian cancer cell lines and in three ERalpha-positive and three ERalpha-negative breast cancer tumours. This technique provides a rapid and reliable way to quantitate simultaneously numerous mRNAs of genes involved in the oestrogen pathway from small amounts of tissues.

Adaptor Proteins, Signal Transducing↗

Neoadjuvant tamoxifen for operable breast cancer: a need for phase III studies?

We conducted a case-control study to analyze the effect of neoadjuvant tamoxifen on steroid receptors and histologic grade and to evaluate the feasibility of phase III studies in operable breast cancer. Between 1987 and 1990, 107 patients without clinical metastases who had had no chemotherapy preoperatively, were treated preoperatively with 20 mg/day of tamoxifen for 3 weeks. Of them, 92 were matched with controls for age at diagnosis, year of diagnosis, presence or absence of lymph node involvement, and preoperative radiotherapy. The percentage of ER1 tumors (P = .03) and the mean and median ER levels (P<.001 for both) were lower in the tamoxifen group than in the control group. In six patients analyzed longitudinally, the mean ER decreased from 52 to 19 fmol/mg protein. The difference in relapse-free survival between the two groups was not significant (mean follow-up 87 months). This study suggests a decrease in ER content in patients treated with neoadjuvant tamoxifen. This change may thus be taken into account when ER determination is performed after tamoxifen therapy is started. Further randomized trials should determine whether patients with operable breast cancer benefit from neoadjuvant tamoxifen treatment.

Antineoplastic Agents, Hormonal↗

Time at surgery during menstrual cycle and menopause affects pS2 but not cathepsin D levels in breast cancer.

Many studies have addressed the clinical value of pS2 as a marker of hormone responsiveness and of cathepsin D (Cath D) as a prognostic factor in breast cancer. Because pS2 and Cath D are both oestrogen induced in human breast cancer cell lines, we studied the influence of the menstrual cycle phase and menopausal status at the time of surgery on the levels of these proteins in breast cancer. A population of 1750 patients with breast cancer, including 339 women in menstrual cycle, was analysed. Tumoral Cath D and pS2 were measured by radioimmunoassay. Serum oestradiol (E2), progesterone (Pg), follicle-stimulating hormone (FSH) and luteinizing hormone (LH) levels at the day of surgery were used to define the hormonal phase in premenopausal women. There was a trend towards a higher mean pS2 level in the follicular phase compared with the luteal phase (17 ng mg(-1) and 11 ng mg(-1) respectively, P = 0.09). Mean pS2 was lower in menopausal patients than in women with cycle (8 ng mg(-1) and 14 ng mg(-1) respectively, P = 0.0001). No differences in mean Cath D level were observed between the different phases of the menstrual cycle, or between pre- and post-menopausal women. In the overall population, pS2 was slightly positively associated with E2 and Pg levels and negatively associated with FSH and LH, probably reflecting the link between pS2 and menopausal status. In premenopausal women, no association was found between pS2 and E2, Pg, FSH or LH levels. There were no correlations between Cath D level and circulating hormone levels in the overall population. However, in the subgroup of premenopausal women with ER-positive (ER+) tumours, E2 was slightly associated with both pS2 and Cath D, consistent with oestrogen induction of these proteins in ER+ breast cancer cell lines. There are changes in pS2 level in breast cancer throughout the menstrual cycle and menopause. This suggests that the choice of the pS2 cut-off level should take the hormonal status at the time of surgery into account. In contrast, the level of Cath D is unrelated to the menstrual cycle and menopausal status.

Breast Neoplasms↗

[Anti-estrogens, selective estrogen receptor modulators (SERM), tibolone: modes of action].

The regulation of estrogen-induced cellular effects is a multistep molecular process. The diversity of estrogen and anti-estrogen effects on cellular functions is also modulate by tissue and gene specificity. This diversity may be explained by different levels of molecular regulation, including the presence of two distinct estrogen receptor isoforms (ER alpha and ER beta), their binding to activator or corepressor transcriptional proteins, and their affinity to different DNA binding domains of target genes (estrogen responsive element or API). These mechanisms may account for the specific responses to estrogens or anti-estrogens according to tissue, cell or gene level. The anti-estrogen tamoxifen, in vitro, inhibits the estrogen-induced proliferation of breast cancer cells and, in vivo, enhances long-term prognosis of patients having ER positive breast cancer when it is used as an adjuvant treatment. The partial agonist effect of anti-estrogens such as raloxifene, is observed only on bones and vessels but not in endometrium. Tibolone is another class of ER modulators which acts as a prodrug. It is metabolized in compounds activating nuclear receptors (androgen and progesterone receptors) which modify the ER level and estrogen metabolism. The improvement of current knowledge on the cellular mechanisms of estrogen and anti-estrogens action should allow the elaboration new therapeutic approaches on specific functions involved in estrogen-dependent pathologies.

Antineoplastic Agents, Hormonal↗

Differential expression of estrogen receptor-alpha and -beta messenger RNAs as a potential marker of ovarian carcinogenesis.

Although estrogen receptor (ER)-alpha is expressed in both benign and malignant ovarian tumors, the role of ER in ovarian carcinogenesis of epithelial tumors is still unknown. In view of the recent characterization of ER-beta, a second form of ER that seems to be highly expressed in ovaries, we reexamined this issue by studying the relative expression of ER-alpha and -beta in human ovarian tumor progression. We developed a competitive PCR assay based on coamplification of the two ERs in target nucleotide sequences displaying a high homology (exons 3 and 4). Coamplification experiments with varying amounts of plasmids containing ER-alpha and -beta cDNAs showed that this assay was reliable for discriminating as little as a 2-fold difference in the initial ER-alpha:ER-beta cDNA ratio. The relative expression of ER-alpha compared with ER-beta mRNAs was studied in human ovarian cancer cell lines (n = 5) and in normal ovaries (n = 6), then in human benign and malignant tumor samples including ovarian cysts (n = 24), borderline tumors (n = 3), and cancers (n = 10). In normal ovaries, ER-beta mRNA was the predominant ER form, whereas in ovarian cancer cell lines ER-alpha mRNA was markedly increased as compared with ER-beta. In benign and borderline tumors, ER-beta mRNA was detected in 78% of tumors, whereas ER-alpha mRNA was detected in 29%. In ovarian carcinomas, both ER-alpha and -beta mRNAs were expressed in 80% of tumors. The ER-alpha:ER-beta mRNA ratio was >1 in only one cyst sample (4%). In contrast, the ER-alpha:ER-beta mRNA ratio was markedly increased in ovarian cancers because 60% showed an ER-alpha:ER-beta mRNA >1. In situ hybridization experiments showed overlapping tissular distribution of ER-beta and -alpha expression in cancers and cysts, with a main localization in the epithelium and only a low level of expression in stromal cells. In summary, we found an increase in the ER-alpha:ER-beta mRNA ratio in ovarian carcinomas as compared with normal ovaries and cysts. These data suggest that overexpression of ER-alpha relative to ER-beta mRNA may be a marker of ovarian carcinogenesis.

Biomarkers, Tumor↗

Cellular specificity of fibroblastic proMMP-3 downregulation by normal or cancer trophoblastic cells.

It has been shown previously that endometrial fibroblast prometalloproteinase-3 (proMMP-3) secretion is inhibited by normal cytotrophoblasts as a result of paracrine interactions. To investigate the specificity of this downregulation, two different types of co-culture were used. First, peritoneal and synovial fibroblasts obtained from human tissue biopsies were co-cultured with normal cytotrophoblasts. By contrast to what has been observed with endometrial fibroblasts, their proMMP-3 secretion increased though their morphology was slightly modified. Secondly, the regulation of endometrial proMMP-3 secretion was tested in co-cultures with two choriocarcinoma cell lines (JAr and JEG-3 cell lines). With tumoral cytotrophoblastic cells, endometrial fibroblasts became decidua-like cells and JAr and JEG-3 cell lines grew in syncytium. However, co-culture of endometrial fibroblasts with JAr and JEG-3 choriocarcinoma cells did not decrease proMMP-3 secretion. The present results show that endometrial proMMP-3 downregulation is tissue specific and does not depend on cell differentiation. A cytotrophoblast cell membrane factor which might not be expressed in tumoral cells could probably play a role in paracrine relations between epithelial cells and surrounding stroma.

Choriocarcinoma↗

Evaluation of endometrial inflammation by quantification of macrophages, T lymphocytes, and interleukin-1 and -6 in human endometrium.

PURPOSE: Our purpose was to determine the impact of endometrial inflammation on fertility. METHODS: The study population included 49 women: 5 women bearing an intrauterine device, 33 sterile patients, and 11 fertile women. Endometrial biopsies were performed between day 17 and day 21 of the cycle. Immunostaining was performed with an ABC kit. Monoclonal antibodies were CD68 for macrophages, CD3 for T lymphocytes, and B-E8 for interleukin (IL)-6; IL-1 alpha and IL-1 beta were stained with polyclonal antibodies. A double immunofluorescence staining was performed to identify endometrial cells. Macrophage and lymphocyte rates were defined as the percentage of stained cells by field. Double staining was compared among macrophages, T lymphocytes, and anti-IL antibodies in each group. RESULTS: The macrophage rate was high for women bearing an intrauterine device, intermediate for sterile patients, and low for fertile women (P = 0.03). There was a lack of double staining between activated T lymphocytes and anti-IL-6 antibody in tubal sterility and endometriosis. Endometrial macrophages were stained with anti-IL antibodies for all groups. CONCLUSIONS: Endometrial macrophages seem to be an interesting parameter for evaluating endometrial inflammation. In tubal infertility and endometriosis, the lack of expression of IL-6 in T lymphocytes could participate in impaired embryo implantation.

Adult↗

Expression of oestrogen receptor-alpha splicing variants and oestrogen receptor-beta in endometrium of infertile patients.

Endometrium is one of the main target tissues of oestrogens. Although homozygous inactivation of oestrogen receptor-alpha leads to infertility in transgenic mice, oestrogen receptor-alpha is detected in endometrium of patients with unexplained infertility. Oestrogen receptor-alpha splicing variants and oestrogen receptor-beta have been studied in oestrogen target tissues, but their expression in endometrium throughout the menstrual cycle and in unexplained infertility is unknown. Using reverse transcription-polymerase chain reaction (RT-PCR), we studied the expression of oestrogen receptor-alpha splicing variants and oestrogen receptor-beta in uterine biopsies from 12 patients with endometriosis and 15 patients with unexplained infertility. A control group included 19 women who had had a previous pregnancy. Our study gave evidence of exon 2, 3, 4 or 7 deleted oestrogen receptor-alpha variants co-existing with the wild-type receptor. We did not find any exon 5 or 6-deleted variants. Exon 4 or 7-deleted variants were detected in all samples. Exon 2 or 3-deleted variants were detected at a similar frequency in fertile women (58 and 68% respectively), endometriotic patients (67 and 83% respectively) and infertile patients (73 and 80% respectively). During the follicular phase, there was a non-significant trend towards a lower frequency of exon-2 deleted variants in the fertile group when compared with the hypofertile group. Oestrogen receptor-beta was detected in all samples. Our preliminary study showed that altered expression of oestrogen receptor-alpha variants and oestrogen receptor-beta may not explain the hypofertility state.

Alternative Splicing↗

Endometrial cathepsin D immunostaining throughout ovulatory and anovulatory menstrual cycles.

The results of histological examination of the endometrium are normal in most patients with unexplained sterility. Cathepsin D is a ubiquitous lysosomal protease regulated by progesterone in the endometrium. Assays of concentrations of cathepsin D might be useful in determining the functional responses of the endometrium to progesterone. To examine this possibility, we quantified immunostaining of endometrial cathepsin D using an image analysis system in women with regular menstrual cycles. An endometrial sample was obtained during the proliferative and luteal phases from 17 women with ovulatory menstrual cycles and at the beginning and during the last 14 days of a cycle from 15 women having anovulatory menstrual cycles. In endometrial glands of ovulatory women, cathepsin D protein immunostaining increased during the cycle and was significantly higher during the luteal than during the proliferative phase [51 +/- 38.1 arbitrary units (AU) versus 118.2 +/- 58.9 AU; P < 0.01]. This increase was also observed in stromal cells, although to a lesser extent (28.6 +/- 26.9 versus 41.5 +/- 43.1 AU; P = NS). In the endometrium of women with anovulatory menstrual cycles, cathepsin D staining was high both for the proliferative and the luteal biopsies in glands (respectively 95 +/- 43 and 104 +/- 51.3 AU) and stromal cells (respectively 61.8 +/- 33.8 and 75 +/- 32.6 AU). In women with ovulatory cycles, cathepsin D staining was localized in the apical part of glandular cells during the proliferative phase and diffused throughout the cytoplasm during the luteal phase. In contrast, in women with anovulatory cycles, cellular localization of cathepsin D remained apical in glands, regardless of the day of biopsy. In conclusion, this study shows that the cytoplasmic localization of cathepsin D might be a qualitative biological indicator of endometrial gland responses to progesterone. This could be a useful tool for evaluating cell function, which is poorly tested by histology alone.

Adult↗