The level of sex steroids decrease with age, and some studies indicate a correlation between declining cognitive functions and decreased androgen levels. Thus, decreased testosterone and altered dehydroepiandrosterone sulphate (DHEAS) levels in patients with Alzheimer's disease (AD) have been reported. In this study, we correlate the serum levels of four different hormones: testosterone, DHEAS, 4-androstendione (4-ADS) and dihydrotestosterone (DHT) and sex hormone-binding globulin (SHBG) to the levels of the AD cerebrospinal fluid (CSF) markers: total tau, phospho-tau and amyloid-β 1-42 (Aβ 1-42) in patients with AD compared to controls. Serum and CSF samples from patients referred to the memory clinic at the Copenhagen University Hospital were obtained during the period 2004-2005. The AD patients (n = 26) fulfilled the NINCDS/ADRDA criteria for AD and the control group consisted of 42 patients with clinically confirmed non-AD neurodegenerative disorders. CSF markers were analysed using ELISA, SHBG was analysed using an immunofluoroimmunometric assay (AutoDELFIA) and the androgens were measured using ether extraction, liquid chromatography and radio immunoassay. The levels of total-tau and p-tau differed significantly in AD patients compared to the control group. Aβ 1-42 did not discriminate the two groups. None of the sex hormones differed significantly between AD patients and controls. Also, there was no statistically significant correlation between the AD CSF markers and sex hormone levels. However, when men and women were analysed separately, a statistically significant correlation was found between age, DHEAS serum level and AD diagnosis in men, but not in women. In particular, the group of men below the age of 65 had elevated DHEAS levels compared to age-matched control patients. We found no statistically significant differences between the groups or correlations with the CSF AD biomarkers except for elevated DHEAS serum levels in male subjects below the age of 65. The results warrant exploration in larger materials using more exact methods for steroid measurement such as tandem mass spectrometry and looking at other adrenal parameters.
In a previous study, we have demonstrated that inhibin-production may be associated with improved survival and, also, that tetranectin (TN) is a valuable prognostic marker in ovarian epithelial cancer. We investigated the possible correlation between inhibin, tetranectin, CA-125, ovarian steroid activity and the gonadotropin levels. Preoperative serum levels of the tumor markers inhibin, tetranectin (TN) and CA-125 were measured and related to ovarian steroid function and the pituitary-gonadal axis (gonadotropin levels) in 28 postmenopausal ovarian cancer patients. The following median levels and 95% confidence limits were demonstrated for the tumor markers: Inhibin 0.4 U/l (0.2-0.9), TN 8.9 mg/l (6.8-9.2), CA-125 160 kU/l (75-687). A significant inverse correlation was demonstrated between inhibin and the gonadotropins. The Spearman correlation coefficients showed a highly significant correlation of inhibin with the examined ovarian steroid hormones except DHEAS which also has a suprarenal component. This indicates a synthesis of inhibin and the steroid hormones from the same cell compartment as known from the normal ovary and an apparently intact negative feed back mechanism. Inhibin may be produced in the normal ovary as a defense mechanism against an elevated gonadotropin level and inhibin acts by lowering the gonadotropins or by altering their biological activity. Elevated values of the tumor markers TN and CA-125 due to gonadotropin stimulation could not be demonstrated but a significant inverse correlation between TN and CA-125 was confirmed.
30 postmenopausal patients with metastatic breast cancer were treated with three different doses of fadrozole hydrochloride (CGS 169 49A), a non-steroidal competitive aromatase inhibitor. The effect of 0.5, 1 and 2 mg given twice daily upon the levels of oestrogens, their androgen precursors and upon the concentration of sex hormone binding globulin (SHBG) was investigated after 1 and 3 months and then every 3 months until progression of disease. A significant reduction in the serum concentration of oestrone (P < 0.0001) was obtained at all doses. Also, the serum concentration of oestrone sulphate was significantly reduced (P < 0.001). However, after 1 month, the concentration was significantly different from pretreatment levels (P < 0.01) only at the 4 mg daily dose. A decline was also observed in the concentration of SHBG (P < 0.05), with a concomitant elevation of the percentage non-SHBG-bound oestradiol. The androgens, testosterone and dehydroepiandrosterone sulphate, were unaltered during treatment, while androstendione was significantly elevated at the 2 mg daily dose (P < 0.001).
The effects of short and long duration exercise on serum erythropoietin concentrations [EPO]s were studied in seven male cross-country skiers of national team standard and eight male marathon runners, respectively. The short duration exercise was performed as 60 min of cycling at an intensity of 80%–95% of maximal heart rate. Arterial blood oxygen saturations monitored by pulse-oximetry remained unchanged throughout exercise. The partial pressure of O2 at which haemoglobin was half-saturated with O2 calculated from forearm venous blood gas tension and blood O2 saturation, and the erythrocyte 2,3-diphosphoglycerate did not change significantly during the exercise. Blood lactate concentrations were increased at the end of exercise [from 1.3 (SEM 0.1) to 3.6 (SEM 0.3) mmol · 1−1]. The [EPO]s determined (by enzyme-linked immunosorbent assay) pre-exercise, 5 min, 6 h, 19 h, and 30 h after the exercise were unchanged [from 16.1 (SEM 2.6) to 19.1 (SEM 3.2), 17.9 (SEM 3.0), 17.0 (SEM 2.5), and 18.6 (SEM 2.9) U·l−1, respectively]. The [EPO]s were not correlated to the earlier parameters. The long duration exercise consisted of habitual training, a 3 week break from training followed by 2 and 4 weeks of re-training. The [EPO]s, body fat (BF), and serum free-testosterone concentrations determined at the end of each period remained unchanged. The maximal oxygen uptakes were decreased after the break from training and increased during retraining (P=0.04). Body mass (mb) increased after the break in training (P=0.02). The [EPO]s were correlated to BF,r=0.42,P=0.02;mb,r=0.45,P=0.01; and free-testosterone concentrations,r=0.44,P=0.01. Thus, short and long-duration exercise had no direct influence on [EPO]s; but relationships among [EPO]s, free-testosterone concentrations and body composition were noted.
Serial estimates of the post-operative hormone levels were made in 15 women subjected to oophorectomy because of ovarian carcinoma. All women were post-menopausal. Pre-operatively, they had significantly lower follicle stimulating hormone (FSH) levels compared with an age-matched control group. Blood samples were collected after a median time of 8 months (139-378 days). After oophorectomy, significantly higher FSH values were found (P = 0.0002), whereas the luteinizing hormone (LH) values were not significantly changed. The inhibin, estradiol and progesterone values were found to be significantly lowered compared with the pre-operative sample. Total and unbound testosterone levels were significantly lower while dehydroepiandrosterone sulphate (DHEAS) and androstenedione levels were unchanged compared with the original sample and compared with controls. Most likely, estradiol and progesterone are produced by the epithelial malignant tumors, as the post-operative values are completely comparable with the primarily included healthy controls. The FSH is suppressed by inhibin and only to a minor degree by the steroid hormones as indicated by the correlation coefficients. Of great interest is the question whether inhibin production is random, or defensive, lowering the gonadotropin levels or influencing tumor growth in some hitherto unknown fashion.
In post-menopausal women with a malignant epithelial ovarian tumor the follicle stimulating hormone (FSH) level was found to be significantly lower compared with healthy controls. We demonstrated immunoreactive (i.r.) inhibin in 20% of controls which was elevated to 60% of women with an ovarian tumor and correlating strongly to FSH in the tumor group (P = 0.0002). Steroid hormone levels were comparable in the two groups. In women with ovarian tumors the survival time for the i.r. inhibin-producing women was found to be 4.6 years compared wirh 0.9 year, or 5.1 times longer than in the non-producing women (P = 0.002). The site of i.r. inhibin production in these post-menopausal women is unknown, but i.r. inhibin production by the developing ovarian tumor or by the post-menopausal ovary may be regarded as a defense mechanism against an elevated gonadotrophin level (the gonadotrophin theory) which would promote further tumor growth. The recent suggestion that the alpha subunit of inhibin is a tumor suppressor gene is consistent with these results. The serum i.r. inhibin or alpha subunit concentrations might be used as an aid to diagnosis or as a prognostic indicator of survival in women with an ovarian carcinoma.
When a significantly lower follicle stimulating hormone (FSH) level was found in patients with epithelial ovarian carcinoma, it was decided to analyze the influence of hormonal factors on prognosis. Thirteen factors were tested for prognostic significance in 35 women with epithelial ovarian carcinoma. Age, FIGO-stage, histopathological grade, residual tumor, treatment, gonadotrophins and steroid hormones were tested. By univariate log-rank testing a significantly shorter survival time was found for patients with ascending FIGO-stage, residual tumor mass, estradiol < 0.10 nmol/l, progesterone < 2.0 nmol/l and DHEAS < 1300 nmol/l. In the Cox model the independently significant prognostic factors found were residual tumor mass (P < 0.001) with a risk estimate of 2.65, progesterone (P < 0.05) with a risk estimate of 0.29 for a progesterone level > 2.0 nmol/l and total testosterone (P < 0.03) with a risk estimate of 0.29 for a total testosterone level > 1.15 nmol/l. The present findings, together with the assumption that an elevated gonadotrophin level may induce ovarian tumor growth (the gonadotrophin theory), earlier findings of estrogen and progesterone receptors in human ovarian cancer, and the in vitro demonstration of gonadotrophin-growth-stimulation of human malignant epithelial tumors, justify a thorough investigation of the interaction between steroid hormones and receptors, gonadotrophins, tumor bulk and survival in future research protocols.
A total of 151 postmenopausal women were randomly allocated to 3 groups for treatment with hormone replacement therapy. One group received combined therapy (2 mg oestradiol (E2) and 1 mg norethisterone acetate (NETA) daily), the second group was placed on sequential therapy (2 mg E2 for 12 days, 2 mg E2 and 1 mg NETA for 10 days and 1 mg E2 for 6 days), while the third was given placebo. Treatment was administered over 24 cycles of 28 days. The two active treatments were equally effective in relieving climacteric symptoms. In the combined therapy group, 62% of the women experienced spotting and/or breakthrough bleeding during the first 3 cycles; thereafter this proportion decreased to between 3 and 18% in each of the following three-cycle periods. Sixty-four percent (64%) of these women had no more bleeding after the first 3 cycles. Endometrial atrophy was detected in 93% of the women in this group after 24 cycles of therapy. Bleeding irregularities occurred during the first 3 cycles in 27% of the patients treated with sequential therapy and in 21% of those receiving placebo. In the subsequent 3-cycle periods these figures fell to below 10% in the 2 groups. In all 3 groups weight remained stable but blood pressure increased equally in the actively treated groups and the placebo group. The levels of follicle-stimulating hormone (FSH), sexhormone-binding globulin (SHBG) and the free fraction of E2 in serum were significantly lower in the combined therapy group than in the sequential therapy group. The higher level of free E2 in the latter group may have been caused by a decrease in metabolism associated with the increased SHBG concentration. It was concluded that combined treatment with E2 and NETA might provide an alternative to sequential treatment in postmenopausal women willing to tolerate the initial high risk of breakthrough bleeding/spotting in order to avoid subsequent regular bleeding. In the subgroup of women in whom bleeding irregularities continue, sequential treatment should be considered.
The serum levels of follicle-stimulating hormone (FSH), luteinizing hormone (LH), human chorionic gonadotropin (hCG), estradiol, progesterone, androstenedione, testosterone (total and free) and dehydroepiandrosterone sulphate (DHEAS) were investigated prior to surgery in 24 postmenopausal women with benign and 28 postmenopausal women with malignant epithelial ovarian tumors. The serum concentrations of hormones were compared with those of 28 healthy, postmenopausal, age-matched controls. Significantly lower serum FSH levels were demonstrated in women with malignant tumors. No significant differences were found between the groups regarding the serum LH levels. The hCG levels were low in all groups. Regarding progesterone and estradiol levels, low postmenopausal steroid levels were found in all groups examined and no significant differences were demonstrated within the groups. No significant correlations between the levels of estradiol and FSH or progesterone and LH were demonstrated. To exclude a central depression of gonadotropin release mediated by the dopaminergic system we examined the thyroid stimulating hormone (TSH) and prolactin. No differences were found between the groups regarding TSH and prolactin levels. A possible relationship between other hormones/factors produced by the tumor and exerting a negative feedback, either centrally or directly, on the gonadotropin release remains to be investigated. A change in biological activity in the gonadotropins might explain the present findings.
Testis cancer and ichthyosis are both relatively rare diseases. Hence the finding of six individuals with both these conditions in a small population with testicular cancer is highly conspicuous and indicates some kind of connection among such persons. Despite the identical clinical appearances of their ichthyoses, three of the ichthyotic subjects had no measurable activity of the enzyme, steroid sulfatase (STS) in leucocytes, a distinct characteristic of recessive X-linked ichthyosis (RXLI). However, the remaining three subjects had normal STS activity, a strong indicator of autosomal dominant ichthyosis (ADI). The STS activity in patients with testicular cancer who do not have ichthyosis (N = 30) was also within the normal range. The patients with testicular cancer with no skin disease had elevated serum levels of 4-androstenedione (4-AD), follicle stimulating hormone (FSH), and luteinizing hormone (LH) but had reduced levels of estrone and estrone sulfate. The other serum parameters measured did not significantly differ from normal levels. In essence, the hormone levels obtained for the patients with ichthyotic testicular cancer followed the same pattern, although their dehydroepiandrosterone sulfate (DHEAS) and estrone sulfate levels tended to be slightly higher than normal. However, no conspicuous aberrations in any of the parameters examined were observed, and why men with ichthyosis are at high risk for testicular cancer remains an unresolved issue.
Five premenopausal women were followed with measurements of androgens, oestrogens, gonadotrophins and sex hormone binding globulin (SHBG) after ovariectomy for benign disease. After a period of 6 weeks without treatment the women were treated with oestradiol 4 mg daily for 8 weeks, oestradiol 4 mg plus norethisterone acetate (NETA) 2 mg daily for 8 weeks and finally oestradiol 4 mg daily for another 8 weeks. The levels of androgens did not change during the various periods. As usual during oral treatment oestrone and oestrone sulphate were elevated while oestradiol levels were in the pre-operative range during treatment, regardless of the addition of NETA. SHBG was elevated during oestrogen-only treatment, while addition of NETA normalized the concentration of SHBG. In the combined NETA period concentrations of free oestradiol and non-SHBG-bound oestradiol were significantly elevated, and gonadotrophins returned to premenopausal levels, in contrast to the high levels in the oestrogen-only periods. Using oral oestrogen therapy it may be preferable to add a progestagen rather than elevate the oestrogen dose. Progestagen will result in more free oestradiol and give greater relief of symptoms, but the potentially harmful effect of progestagens on blood lipids must be considered.
An investigation was made of the serum steroid levels found in intact and endocrine ablated nude mice of both sexes and in their intact homozygous littermates. The results showed that nude mice have a normal steroidogenesis, but with decreased levels of circulating steroids compared to those of the littermates. The efficacy of the endocrine ablations was confirmed by the reduction in serum oestrone following oophorectomy, and by the reduction in serum testosterone and progesterone following orchiectomy. The normal steroidogenesis in nude mice, and the similarities between mouse and man with regard to changes in serum steroids following oophorectomy and orchiectomy, support the usefulness of human tumor xenograft models for the study of hormone-tumor interactions.