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Biomedical subjects

S Franks

Publications and source records attributed to S Franks.

At least 73 records · Page 4Linked to original sources

Tissue IGFBP-3 proteolysis: contrasting pathophysiology to that in the circulation.

Endogenous IGFBP-3 has been examined in the circulation and in four different extravascular fluids in normal healthy adults and in patients with psoriasis or arthritis. In all of these cases there was no apparent increase of IGFBP-3 protease activity in the circulation. In contrast, endogenous IGFBP-3 from normal skin interstititial fluid and synovial fluid from healthy adults was found to be predominantly in the 29 kDa proteolytically modified form. This indicated that in these extravascular fluids in normal healthy adults a protease was active which was similar, if not identical, to that found in the circulation in pregnancy and other conditions. This was confirmed by the fragmentation of recombinant IGFBP-3 when incubated with these fluids. When the skin interstitial fluid or synovial fluid were taken from abnormal tissues (psoriasis in the former and osteoarthritis or rheumatoid arthritis in the latter) there was a considerable reduction in the amount of endogenous IGFBP-3 in the 'clipped' form and a reduction in the protease activity. In psoriatic lesions, this reduction in IGFBP-3 protease activity was shown to be due to the presence of an inhibitor in the interstitial fluid but not in the circulation. In both peritoneal and follicular fluid, the ratio of intact to fragmented IGFBP-3 appeared to relate to the oestrogen status. In peritoneal fluid there was a decrease in intact IGFBP-3 during the late proliferative/early secretory phase of the endometrial cycle. In the ovary there was an increase in the amount of fragmented IGFBP-3 in the follicular fluid from the dominant follicle in comparison with atretic follicles from the same ovary. There is normally little proteo-lysis of IGFBP-3 in the circulation but this increases in many conditions where there is increased metabolic activity. The same enzyme(s) appear to be active in many extravascular fluids but under very different regulation. The activity in these extravascular fluids is normally high but can be decreased with local tissue inflammation; this decrease appears to be mediated by the induction of a local inhibitor.

Adult↗

Sex hormone-binding globulin and female reproductive function.

Although sex steroids have long been known to influence serum concentrations of SHBG, it is now recognized that nutritional factors may be more important in the regulation of SHBG in women. Thus, SHBG concentrations are negatively correlated with body mass index (BMI) and, more particularly, to indices of central adiposity. Polycystic ovary syndrome (PCOS), the most common cause of anovulatory infertility, is associated with truncal obesity, hyperandrogenism and hyperinsulinaemia. There is evidence that insulin may be the humoral mediator of the weight-dependent changes in SHBG. Serum SHBG concentrations are inversely correlated with both fasting and glucose-stimulated insulin levels, and insulin has been shown to have a direct inhibitory effect on SHBG synthesis and secretion by hepatocytes in culture. However, the interrelationship of BMI, insulin and SHBG appears to be different in women with PCOS from that in normal subjects. The clinical importance of the weight-related suppression of SHBG is illustrated by the finding of a greater prevalence of hirsutism in obese women PCOS compared with their lean counterparts. Obese subjects with PCOS have similar total testosterone concentrations to lean PCO women but have lower SHBG and reciprocally higher free testosterone levels. Calorie restriction results in reduction of serum insulin followed by an increase in SHBG and a fall in free testosterone but an isocaloric, low-fat diet has no significant effect on SHBG concentrations. Weight reduction in obese, hyperandrogenaemic women with PCO is an important approach to the management of both anovulation and hirsutism.

Diet↗

Normal development and metabolic activity of preimplantation embryos in vitro from patients with polycystic ovaries.

Polycystic ovary syndrome (PCOS) is closely associated with high miscarriage rates and, following in-vitro fertilization (IVF), with decreased fertilization rates, suggesting that oocytes and embryos are of poor quality. In this prospective study, we examined the development, metabolic activity and blastocyst cell number of embryos following IVF from 51 patients with either anovulatory PCOS, ovulatory PCOS or tubal disease. The number of oocytes retrieved and the fertilization rates were similar for patients with PCOS and tubal disease. Following embryo transfer, 46% of the patients with PCOS and 36% of patients with tubal disease became pregnant. A similar proportion of surplus embryos from patients with PCOS and tubal disease developed to the blastocyst stage (38% and 43% respectively). Patients with anovulatory PCOS had embryos with less fragmentation which cleaved faster, cavitated earlier and had more cells at the blastocyst stage than embryos from patients with tubal disease. While the profile of glucose uptake and lactate production was similar for all groups throughout preimplantation development, patients with tubal disease who underwent ovulation induction using the 'titrated' regimen optimized for PCOS patients resulted in embryos with reduced pyruvate uptake, in addition to low blastocyst cell numbers. This study demonstrates that with an optimized ovulation induction regimen, embryos from PCOS patients are of good quality and developmental potential.

Adult↗

Diurnal variation of sex hormone binding globulin and insulin-like growth factor binding protein-1 in women with polycystic ovary syndrome.

OBJECTIVES: The aim of this study was to examine (1) the diurnal variation in SHBG and (2) the inter-relationships of insulin, IGF-I, SHBG and IGFBP-1 over 24 hours in 10 women with anovulatory PCOS and compare them with weight-matched ovulatory controls. PATIENTS AND METHODS: The two groups comprised 10 anovulatory women with PCOS (as defined by clinical, ultrasound and biochemical criteria) and 10 weight matched controls. Serum samples were taken at two-hourly intervals for 24 hours and stored for measurement of SHBG, IGFBP-1, insulin and IGF-I. Differences between the groups were compared using the Wilcoxon ranked paired tests of the individual peak and trough concentrations in each group. The variation in insulin, IGFBP-1 and SHBG concentrations over 24 hours was tested using two-way analysis of variance with the factors time and subject. Spearman's correlation coefficient was calculated from the subjects' median value over 24 hours. RESULTS: The median (interquartile range) body mass index (BMI) was 25.2 (22.2-29.3) in the PCOS group and 24.3 (23.2-25.7) kg/m2 in the control group. Serum testosterone (T) and LH levels were significantly raised in the PCOS group compared to the control group; T 3.8 (2.9-5.6) vs 1.9 (1.9-2.5) nmol/l (P < 0.007) and LH 12 (10-15) vs 4.1 (3.6-4.5) IU/I (P < 0.005) respectively. There was no diurnal variation in SHBG. The median (interquartile ranges) of the peak SHBG concentrations was lower in the PCOS group: 29.4 (14.9-39.4) vs 52.1 (39.4-61) nmol/l in the control group (P < 0.01). The fasting levels of insulin at 0600 h (median (interquartile ranges)) were not significantly different between the groups; 6.6 (5.4-9.8) and 6.2 (1.9-7.6) mU/l, respectively, although the peak median concentrations were significantly different; PCOS 66.1 (50.9-129.2) vs 40 (36.1-74.2) mU/l (P < 0.05). Two-way analysis of variance showed a diurnal variation in insulin concentrations in the control group (P = 0.001) but not in the PCOS group (P = 0.1). The diurnal variation in IGFBP-1 was similar in the two groups but the peak median levels were lower in the women with PCOS 54.9 (22.3-79.2) vs 71.5 (60.5-99.3) micrograms/l (P < 0.03). The decline in IGFBP-1 concentrations correlated with the increase in insulin concentrations. The IGF-I concentrations were similar in the two groups. There was a significant negative correlation between SHBG and insulin (P < 0.05) and between insulin and IGFBP-1 (P < 0.01). CONCLUSION: This study demonstrates that there is no diurnal variation in SHBG concentrations and confirms the finding of a marked diurnal variation in the concentration of IGFBP-1. Women with PCOS who are anovulatory have an abnormal pattern of insulin secretion with an absence of diurnal variation compared to weight matched controls. This provides further evidence of the relative insulin resistance which is independent of weight found in women with anovulatory PCOS. The inverse correlations of insulin concentrations with SHBG and IGFBP-1 support the role of insulin as a possible regulator of the circulating levels of these binding proteins although the difference in the time course of their response makes it unlikely that they are co-regulated.

Circadian Rhythm↗

Gonadotrophin and gonadal steroid response to a single dose of a long-acting agonist of gonadotrophin-releasing hormone in ovulatory and anovulatory women with polycystic ovary syndrome.

OBJECTIVE: A previously published study has identified that anovulatory women with PCOS have an increased response of 17 alpha-hydroxyprogesterone (17OHP) and androstenedione to a GnRH analogue suggesting dysregulation of cytochrome P450c17 alpha. The object of this study was to compare the responses of the pituitary-ovarian axis to a single dose of a long-acting GnRH agonist (GnRHa) in both ovulatory and anovulatory women with PCOS with those in normal subjects. DESIGN: Comparative study of responses of LH, FSH and ovarian steroids to buserelin and the adrenal steroid response to synthetic ACTH in two groups of women with hyperandrogenaemia and polycystic ovaries: those with anovulatory menses or amenorrhoea and those with equally elevated serum testosterone concentrations but regular menses. Results in both groups of women with PCO were compared with those in normal subjects. SUBJECTS AND METHODS: Twenty-four women with hyperandrogenism and PCO (14 had oligo or amenorrhoea, 10 regular cycles) and 12 weight matched controls with normal ovaries, regular cycles and neither clinical nor biochemical evidence of hyperandrogenism. Subjects were given synthetic ACTH (Synacthen) 250 micrograms i.v. on day 1 of the study and blood collected at 30 and 60 minutes thereafter. On the evening of day 1, dexamethasone treatment was commenced to suppress adrenal androgens. GnRHa 100 micrograms s.c. was given on day 2 and blood samples collected at 30-minute intervals for 4 hours and once more at 24 hours after the injection. RESULTS: The acute responses of both immunoactive and bioactive LH to GnRHa were significantly greater in the ovulatory PCO group (ovPCO) than controls but the response was greater in anovulatory women with polycystic ovaries (anovPCO) than in either ovPCO or controls, throughout the 24-hour study period. Despite the discrepancy in LH concentrations, basal serum concentrations of androstenedione were equally elevated in anovulatory and ovulatory women with PCO, compared with controls. There was a small but significant increase in androstenedione following GnRHa in both PCO groups at 24 hours but not in controls. A similar pattern was observed in the response of 17OHP to GnRHa although the response was significantly higher than controls in anovPCO women only. By contrast, the responses of both androstenedione and 17OHP to 250 micrograms synthetic ACTH were similar in PCO women to those in controls. CONCLUSIONS: These data provide evidence for ovarian hypersecretion of androgens in ovulatory, as well as anovulatory women with PCO, supporting the concept of abnormal regulation of 17-hydroxylase and (17,20-lyase activity in the ovary. The finding of an equal degree of hyperandrogenaemia in ovPCO and anovPCO groups, even though LH levels were much higher in the latter, suggests that hypersecretion of LH is not the primary cause of ovarian hyperandrogenism. Hyperandrogenism in PCOs may therefore represent an intrinsic abnormality of ovarian theca-interstitial cell function.

17-alpha-Hydroxyprogesterone↗

Insulin action in human granulosa cells from normal and polycystic ovaries is mediated by the insulin receptor and not the type-I insulin-like growth factor receptor.

In order to account for the effects of insulin on the polycystic ovary (PCO), despite peripheral insulin resistance in women with polycystic ovary syndrome (PCOS), it has been suggested that insulin may act through the type-I insulin-like growth factor (IGF) receptor and not the insulin receptor. We have tested this hypothesis by investigating the effect of anti-insulin receptor and anti-type-I IGF receptor antibodies on insulin-stimulated steroidogenesis in human granulosa cells in vitro from normal (N) and PCO. Insulin-stimulated estradiol and progesterone production was inhibited by an anti-insulin receptor antibody. In contrast, anti-type-I IGF receptor antibodies had no effect on insulin-stimulated steroidogenesis in granulosa cell cultures from N or PCO. Hence insulin acts via its own receptor in human granulosa cells from both N and PCO.

Adult↗

Production of transforming growth factor-alpha by normal and polycystic ovaries.

The mechanism of anovulation in polycystic ovary (PCO) syndrome remains unknown. As circulating concentrations of FSH are apparently normal, and in vivo, granulosa cells from anovulatory PCO are hyperresponsive to FSH, it has been suggested that the lack of follicular development in anovulatory PCO is caused by overexpression of a paracrine growth factor that inhibits steroidogenesis. Epidermal growth factor and the structurally homologous transforming growth factor-alpha (TGF alpha) are suitable candidates for this role, but although the production of the latter has been demonstrated in the ovary, no comparison has been performed between the levels in normal ovaries and PCO. We compared the levels of TGF alpha in follicular fluid and in granulosa cell- and theca- and stroma-conditioned media from normal ovaries and PCO. TGF alpha was present in the range of 0.2-200 ng/mL in follicular fluid. There was a significant inverse correlation of TGF alpha with follicle size, with no differences between follicles from normal ovaries and PCO. Granulosa cell-conditioned medium contained concentrations of TGF alpha ranging from 0.1-200 ng/1000 cells. There was a wide range of concentrations in theca- and stroma-conditioned media, with levels varying from 0.2-100 ng/mg tissue and no consistent effect of LH. There were no significant differences between the levels from normal ovaries or PCO in medium conditioned by any compartment of the ovary. We conclude that the failure of folliculogenesis in PCO syndrome is not likely to be due to overproduction of TGF alpha by the ovary.

Anovulation↗

In vivo and in vitro effects of gamma-linolenic acid and eicosapentaenoic acid on prostaglandin production and arachidonic acid uptake by human endometrium.

This study examines the effect of a 6 month dietary supplement of either gamma-linolenic acid (GLA) or eicosapentaenoic acid (EPA) on the synthesis of prostaglandins E2 and F2 alpha by the endometrium of women with regular menstrual cycles. Samples of endometrium, obtained pre- and post-treatment, were incubated in vitro for 2 h and the prostaglandins E2 and F2 alpha released into the medium measured by radioimmunoassay. The ability of the tissue to take up 14C-arachidonic acid before and after treatment was also examined. Both GLA and EPA caused a marked decrease in the synthesis of prostaglandins E2 and F2 alpha (P < 0.001) but under the experimental conditions used, there was no consistent effect on arachidonic acid uptake. Body mass index, serum testosterone, fasting insulin and serum sex hormone-binding globulin (SHBG) concentrations did not change during the 6 month treatment period. An effect of GLA and EPA on arachidonic acid uptake into endometrial tissue explants was demonstrated in vitro. In the presence of both GLA and EPA, uptake into phospholipids (particularly phosphatidylcholine) decreased while uptake into triglycerides increased. Free 14C-arachidonic acid levels (that which could not be removed from the tissue by washing) also increased. Suppression of endometrial prostaglandin E2 and F2 alpha synthesis following GLA or EPA supplementation can be explained as direct competition between these fatty acids and arachidonic acid (the precursor of 2-series prostaglandins) for incorporation into membrane phospholipids. The amount of arachidonic acid available for 2-series prostaglandin synthesis will therefore be reduced. However, other mechanisms may exist which need to be investigated.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The epidermal growth factor receptor in the human endometrial adenocarcinoma cell line HEC-1-B.

The binding characteristics and steroidal regulation of the EGF receptor were investigated in the human endometrial adenocarcinoma cell line HEC-1-B. The cell line was shown to possess a single, high affinity binding site for epidermal growth factor receptor (EGF) with a Kd of 3.09 +/- 1.39 nM (mean +/- SD, n = 6) and binding of 845 +/- 311 fmol/mg protein (mean +/- SD, n = 6). The protein kinase C activator, phorbol 12-myristate, 13-acetate (PMA) increased the Kd of the EGF receptor in a dose dependent manner (PMA: 0, 1, 10, 100 nM; Kd: 4.1, 5, 10, 50 nM, respectively). The effect of PMA (10 nM) was overcome by preincubating the cells with the protein kinase C inhibitor staurosporine (1 microM) prior to the addition of PMA. The effect of the ovarian steroids oestradiol and progresterone on EGF receptor accumulation was studied by pretreating the cells for 6 days with oestradiol or progesterone in phenol red free DMEM:F12, 1:1 supplemented with 5% charcoal stripped fetal calf serum. Both steroids were shown to increase EGF receptor number with a maximum 5- and 7-fold increase in the presence of 1 nM oestradiol or 1 microM progresterone, respectively. The study demonstrates the presence of a high affinity binding site for EGF in HEC-1-B cells which is regulated by oestradiol and progresterone.

Adenocarcinoma↗

Polycystic ovaries and premature male pattern baldness are associated with one allele of the steroid metabolism gene CYP17.

Fourteen Caucasian families with 81 affected individuals have been assessed in which polycystic ovaries/male pattern baldness (PCO/MPB) segregates as an autosomal dominant phenotype (1). The gene CYP17, coding for P450c17 alpha (17 alpha-hydroxylase; 17/20 lyase) on chromosome 10q24.3 is the rate-limiting step in androgen biosynthesis. We have identified a new single base change in the 5' promoter region of CYP17 by heteroduplex analysis. This creates an additional SP1-type (CCACC box) promoter site, which may cause increased expression. This base change also creates a recognition site for the restriction enzyme MspA1 allowing a simple screening procedure. There is a significant association between the presence of this base change (A2) and the affected state for consecutively identified Caucasian women with PCO as compared either to consecutively matched controls (P = 0.03) with an odds ratio for those with at least one A2 allele of 3.57, or to a random population (P = 0.02) with an odds ratio of 2.50. Within the fourteen families, members with PCO or MPB have a significant association with the occurrence of at least one A2 allele compared to their normal relatives, with an odds ratio of 2.20 (P = 0.05). The base change does not cosegregate with the affected phenotype within the families showing association, demonstrating that this mutation of CYP17 does not cause PCO/MPB. Variation in the A2 allele of the CYP17 gene is a significant factor modifying the expression of PCO/MPB in families where it has been demonstrated to segregate as a single gene disorder, but it is excluded as the primary genetic defect.

Alleles↗

Insulin preincubation enhances insulin-like growth factor-II (IGF-II) action on steroidogenesis in human granulosa cells.

Although abundant mRNA for IGF-II has been detected in the human ovary, a role for IGF-II in steroidogenesis has not yet been established. In rat adipocytes, incubation with insulin greatly increases cell-surface IGF-II receptor (5-fold) and the receptor is rapidly internalised in the absence of insulin. We have therefore investigated the effects of insulin preincubation on the response of granulosa cells from unstimulated ovaries to a range of doses of IGF-II. In the absence of insulin, IGF-II stimulated steroidogenesis in only one of three experiments. After incubation with 10 ng/ml insulin, there was a dose-dependent response to IGF-II in all experiments. Cells incubated with insulin produced 5-10 fold more estradiol in response to IGF-II than those incubated without. In contrast, insulin produced only a small increase of estradiol in response to IGF-I. These results demonstrate a synergistic interaction of insulin with IGF-II in human granulosa cells and suggest that there is an important role for IGF-II in human ovarian steroidogenesis.

Adult↗

Hypersecretion of androstenedione by isolated thecal cells from polycystic ovaries.

The aim of this study was to examine the hypothesis that hypersecretion of ovarian androgens in polycystic ovary syndrome results from an intrinsic abnormality of androgen biosynthesis by thecal cells. Steroid accumulation by human thecal cells from normal and polycystic ovaries (PCO-theca) was examined under basal and LH-stimulated conditions. A method for dispersing and culturing human thecal cells as primary monolayers in serum-free medium was developed. LH increased androstenedione (A), progesterone (P), 17 alpha-hydroxyprogesterone, dehydroepiandrosterone, and estradiol accumulation in the overlying medium in a dose-dependent manner at a maximum effective dose of 2.5 ng/mL. The principal variables affecting the magnitude of steroid accumulation were plating density, duration of incubation, and follicle size. Using only theca from follicles less than 10 mm and keeping plating density constant, 48-h steroid production by theca from five normal ovaries was compared to that from nine polycystic ovaries isolated from both anovulatory and ovulatory women. There was a significant increase in both basal (median, 32.1 pmol/1000 cells.48 h; range, 18.7-250) and LH-stimulated (56 pmol/1000 cells; range, 40.7-406) A accumulation by PCO-theca compared to basal (1.7 pmol/1000 cells; range, 1.1-4.3) and LH-stimulated (2.8 pmol/1000 cells; range, 2.0-8.1) A accumulation by normal theca, with no overlap in values between the two. Although P production was also increased in the PCO-theca, the A to P ratios under both basal and LH-stimulated conditions were significantly higher in the PCO-theca [A/P ratio normal; PCO basal, 0.1 and 0.53 (P < 0.01); LH-stimulated, 0.04 and 0.65 (P < 0.001)], suggesting increased conversion of P to A. The steroid response to LH was similar in both groups. This is the first report of a difference in thecal androgen production between normal and polycystic ovaries and supports the hypothesis that there is a primary abnormality in the regulation of androgen production in PCOS.

Adult↗

Estradiol production by granulosa cells of normal and polycystic ovaries: relationship to menstrual cycle history and concentrations of gonadotropins and sex steroids in follicular fluid.

The underlying cause of anovulation in polycystic ovary syndrome is unknown. Circulating levels of immuno- and bioactive FSH are within the normal range, and the follicles contain measurable levels of bioactive FSH. The aim of this study was to compare estradiol (E2) production in response to FSH by granulosa cells from normal ovaries with those from polycystic ovaries derived from both anovulatory (anovPCO) and ovulatory subjects (ovPCO). Intrafollicular levels of immunoactive FSH, E2, and androstenedione in follicles of less than 12 mm were also measured. Follicular fluid steroid concentrations were obtained from 41 pairs of normal ovaries and 23 pairs of polycystic ovaries (8 anovPCO and 15 ovPCO). In size-matched follicles from each group there were no significant differences in follicular fluid FSH or E2 concentrations, but androstenedione levels were significantly higher in 5- to 11-mm follicles from ovPCO than in corresponding follicles from normal ovaries. Dose responses to FSH were determined in granulosa cells derived from 9 pairs of normal ovaries, 7 anovPCO, and 8 ovPCO. Cells from anovPCO produced 6- to 10-fold more E2 in response to FSH than normal cells, although there was no significant difference in the ED50 values. The response in cells from ovPCO was reduced compared to normal, but this difference did not reach significance. In summary, as judged by their FSH and E2 contents, polycystic ovaries do not have a higher proportion of atretic follicles than normal. Indeed, cells from anovPCO are hyperesponsive to FSH in vitro. This could be explained by stimulation of aromatase in vivo by either paracrine or, more probably, by endocrine factors, of which insulin is an arguable candidate.

Adult↗

Characterization of epidermal growth factor receptor in human endometrial cells in culture.

The aim of the study was to determine the binding characteristics of the epidermal growth factor (EGF) receptor in isolated human endometrial glands and stromal cells in culture. Stromal cells and glands were obtained from endometrial tissue by collagenase dispersion followed by sieve filtration. They were plated into 24-well multiwell plates in Ham's F10 medium supplemented with 5% fetal calf serum and used at 70-80% confluence. Scatchard analysis revealed a single class of high-affinity binding sites in both cell types with apparent dissociation constants of 1.17 +/- 0.6 (n = 15) and 1.20 +/- 0.3 (n = 8) nmol 1-1 for stromal cells and glands, respectively. The concentration of receptors was higher in stromal cells than in glands, 719 +/- 377 (n = 16) and 310 +/- 177 (n = 8) fmol mg-1 protein, respectively. Epidermal growth factor labelled with 125I was displaced from the receptor by EGF and transforming growth factor alpha, but not insulin, insulin-like growth factor, fibroblast growth factor, or platelet-derived growth factor. Binding was shown to be dependent on time and temperature. Downregulation of the receptor was demonstrated by preincubating cells with 5 nmol EGF I-1, which reduced receptor concentrations by 75%. 12-O-Tetradecanoylphorbol-13-acetate decreased the affinity of the receptor for EGF changing the dissociation constant from 1.8 to 3.9 nmol l-1. A suitable system for investigating the regulation of this receptor in human endometrium was established.

Cells, Cultured↗

Advances in induction of ovulation.

The emphasis of this review is placed on the treatment of clomiphene-resistant women with polycystic ovary syndrome (PCOS) or with hypogonadotropic hypogonadism. There has been an increasing awareness of the need to avoid the consequences of multiple folliculogenesis, and this is reflected in the more widespread use of low-dose regimens for induction of ovulation, particularly in PCOS. The past 12 months have seen the first reports of the clinical applications of recombinant human follicle-stimulating hormone (FSH), and there is an intriguing suggestion that long-acting opiate agonists may have a part to play in the management of anovulation of hypothalamic origin.

Buserelin↗