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Biomedical subjects

G F Erickson

Publications and source records attributed to G F Erickson.

At least 37 records · Page 2Linked to original sources

Follistatin concentrations in follicular fluid of normal and polycystic ovaries.

Follistatin (FS) is an activin/inhibin binding protein which is believed to act in an autocrine/paracrine manner to regulate growth and differentiation. Although FS has been identified in human follicular fluid, it remains unclear how its concentration changes during selection and atresia, and what the concentrations of FS are in follicles of women with polycystic ovary syndrome (PCOS). Towards this goal, we have measured by radioimmunoassay the concentrations of FS in follicular fluid obtained from dominant and atretic cohort follicles of normal cycling women, preovulatory follicles of in-vitro fertilization (IVF) patients, and small Graafian follicles of patients with PCOS. In all cases, the follicular fluid concentration of FS was much higher (approximately 100-fold) than that reported in serum. The FS concentrations (ng/ml) were 203 +/- 42 (normal dominant), 185 +/- 17 (atretic cohort), 185 +/- 5 (IVF), and 250 +/- 14 (PCOS). There was no statistical difference between these mean values of FS. Further, there were no significant correlations between the follicular fluid concentrations of FS and the concentrations of oestradiol, progesterone, or androstenedione. These results indicate that human Graafian follicles, regardless of whether they are healthy or atretic, normal or PCOS, contain high steady-state concentrations of FS in the micro-environment. Collectively, these data fit with the hypothesis that major increases and decreases in the concentration of FS in the micro-environment may not play a key role in the mechanisms of selection, atresia, and PCOS in women. The possibility of regulation of intrinsic activin and inhibin activity through FS binding is discussed.

Case-Control Studies↗

Activin causes premature superovulation.

In the rat ovary, follicle cells produce and respond to activin, but as yet, the functional significance of the autocrine/paracrine effects of ovarian activin remains equivocal. To assess the effects of activin on folliculogenesis, normal cycling female rats were injected once every 8 h over a 40-h period with recombinant human activin A (120 micrograms/kg) beginning at 1300 h on estrus (day 1 of treatment). A total of 10 rats were injected with activin in 2 separate experiments. On days 3 and 4 of treatment, blood was obtained for hormone measurements, and the ovaries were removed for histology. Follicle counts were performed in 1 ovary from 3 representative animals in each treatment group. All antral (Graafian) follicles 300 microns or more in diameter were measured and classified as healthy or atretic based on the number of pyknotic nuclei in the largest cross-section. On day 3, all rats were in diestrus (diestrous day 2). After 3 days of activin administration, serum levels of estradiol were increased 200%, progesterone levels were decreased 67%, and FSH levels were unchanged compared with those in matched controls. By day 4 (i.e. 1 day after the last injection), no changes in the levels of these hormones were observed. Injection of activin for 3 days did not change the total number of antral follicles per ovary (control, 41.3 +/- 4.9; activin, 43.7 +/- 3.9); however, activin significantly increased the total number of atretic follicles (control, 69%; activin, 92%). Morphometric analysis of the ovaries removed on day 3 showed a marked increase (2-fold) in the number of large follicles, but most (89%) were atretic. Follicle counts suggested that the additional large follicles may have come from the pool of healthy small follicles. Histological studies showed that some of the day 3 activin-treated follicles had initiated ovulation. On day 4, control and activin-treated animals were at proestrus and estrus, respectively. Therefore, activin shortened the estrous cycle by 1 day. Little or n change in the follicle populations was observed in day 4 control ovaries. Interestingly, however, in 2 of the 3 activin-treated animals, 1 set of large follicles had ovulated (12 +/- 1 expanded egg cumulus complexes/oviduct), and another set (13 +/- 2) was just about to rupture. The activin-exposed oocytes (tubal and follicular) appeared arrested in metaphase I. After ovulation, activin-treated follicles developed into typical corpora lutea. No ovulations were found in control animals.(ABSTRACT TRUNCATED AT 400 WORDS)

Activins↗

Insulin-like growth factor binding proteins show distinct patterns of expression in the rat uterus.

An intrinsic insulin-like growth factor (IGF) system, complete with IGF ligands, receptors, and biological responses, is present in the rat uterus, where it is thought to regulate uterine homeostasis by autocrine/paracrine mechanisms. It is known that IGF binding proteins (IGFBP) modulate IGF-I and IGF-II action, but very little information is available concerning their cellular localization in the uterus. Therefore, we have employed in situ hybridization to localize IGFBP-1, -2, -3, -4, -5, and -6 mRNAs in the adult rat uterus during the estrous cycle. IGFBP-1 was undetectable in all uteri examined. IGFBP-2 mRNA was localized only in the luminal epithelium of the endometrium. It was abundant during proestrus (P1000 h, P2000 h) and early estrus (E0200 h), but was relatively low at other stages of the cycle. IGFBP-3 mRNA was localized to the stroma cells juxtaposed to the endometrium. A weak signal was detected on estrus morning (E0200 h, E1000 h), but high levels of IGFBP-3 mRNA were observed in the stroma cells on Day 12 of pregnancy. IGFBP-4 mRNA was localized only in the luminal epithelium of the endometrium. It was moderately abundant at diestrus I and II, but the signal was very low or absent at other times in the cycle. IGFBP-5 mRNA was localized in the circular and longitudinal muscle layers of the myometrium. The IGFBP-5 hybridization signal was maximal at diestrus, weak on proestrus, and moderate during estrus. IGFBP-6 mRNA was also expressed in the myometrium. The signal was strong on estrus morning (E0200 h and E1000 h) and low or absent at other times in the cycle. These results provide the first direct evidence that the genes encoding the six IGFBP are expressed in a tissue-specific manner in the adult rat uterus. Equally important, the levels of the mRNA for each IGFBP appear to change throughout the estrous cycle, but not in a parallel fashion. These results support the hypothesis that inducible and tissue-specific expression of IGFBP-2 to -6 may be involved in modulating the activity of the IGF ligands during the proliferative and secretory phases of the uterine cycle.

Animals↗

Extrapituitary actions of gonadotropin-releasing hormone: stimulation of insulin-like growth factor-binding protein-4 and atresia.

To understand how the intrinsic GnRH system functions in the ovary, we tested the effects of GnRH agonist (GnRH-a) on insulin-like growth factor-binding protein-4 (IGFBP-4) production, a novel marker of atresia. We also tested the ability of GnRH-a to stimulate atresia in vivo. When rat granulosa cells were cultured in defined medium for 2 days (controls), relatively large amounts of the 24,000 relative molecular mass IGFBP-4 accumulated in the medium. FSH (100 ng/ml) inhibited control IGFBP-4 protein levels and stimulated IGFBP-4 protease activity. GnRH-a increased (up to 4-fold) IGFBP-4 accumulation in the medium (ED50 = 1 x 10(-10) M), and the effect was blocked by a GnRH antagonist. Neither GnRH-a nor its antagonist had a detectable effect on protease activity. In coincubation experiments, GnRH-a effectively inhibited (ED50 = 3 x 10(-11) M) the FSH responses, and the effect of GnRH-a was blocked by GnRH antagonist. A 6-day time-course experiment showed that IGFBP-4 accumulation in control cultures remained constant for 2 and 4 days, after which it was undetectable. FSH (100 ng/ml) produced no measurable IGFBP-4 over the 6-day time course. The levels of IGFBP-4 increased markedly during the first 2 days of GnRH-a treatment, but were not significantly different from control levels on days 4 and 6. Similar results were obtained when cells were treated with FSH plus GnRH-a. Treating immature hypophysectomized estrogen-primed rats with GnRH-a in vivo caused a rapid and dramatic decrease (average, 60%) in the mitotic index of the granulosa cells of all preantral follicles (healthy and atretic) and increased pyknosis. These results demonstrate that 1) GnRH-a stimulates the expression of IGFBP-4 protein in rat granulosa cells in vitro; 2) GnRH-a abolishes the ability of FSH to inhibit IGFBP-4 expression and induce IGFBP-4 protease activity; and 3) GnRH-a stimulates atresia in preantral follicles in vivo. These results support the hypothesis that autocrine/paracrine secretion of ovarian GnRH might cause atresia by mechanisms involving increased IGFBP-4 synthesis.

Animals↗

Differential control of activin, inhibin and follistatin proteins in cultured rat granulosa cells.

Follistatin, activin and inhibin proteins are produced by granulosa cells, but the mechanisms controlling their production remain unclear. Here, we examined how the protein kinase A (PKA) and protein kinase C (PKC) pathways act and interact to regulate production of these proteins. Granulosa cells from immature rats were cultured with activators of the PKA pathway (100 ng/ml FSH, 10 microM forskolin) and/or activators of the PKC pathway (100 nM GnRH agonist, 100nM 2-0-tetradecanoyl-phorbol-13-acetate, TPA). Conditioned media were assayed for inhibin and activin by ligand blotting using recombinant human 125I-follistatin and for follistatin by double ligand blotting using cold activin plus 125I-follistatin. FSH and forskolin stimulated inhibin but not activin production. In contrast, GnRH and TPA stimulated activin, and to a lesser degree, inhibin production; significantly, this is the first demonstration of activin dimer production by granulosa cells. Activators of the PKA pathway antagonized the actions of PKC effectors and vice versa. All agents increased follistatin protein production, and the PKA and PKC activators interacted to generate further increases in follistatin production. These results show that the FSH-PKA signalling pathway favors formation of alpha beta inhibin dimers while the GnRH-PKC pathway favors formation of beta-subunit activin dimers. Both pathways act to increase follistatin protein production.

Activins↗

Development of specific antibodies to rat insulin-like growth factor-binding proteins (IGFBP-2 to -6): analysis of IGFBP production by rat granulosa cells.

Six insulin-like growth factor-binding proteins (IGFBPs) have been isolated and their cDNAs cloned in the rat and human species. The next step is to develop antibodies to each IGFBP. Toward this goal, we generated rabbit polyclonal antibodies to rat IGFBP-2, -4, -5, and -6, using synthetic peptide fragments of the IGFBPs. A rat IGFBP-3 polyclonal antibody was prepared in a previous study using the native protein. Western immunoblotting demonstrated that the IGFBP-2, -3, -4, -5, and -6 antibodies were highly specific for their respective antigens. The elicited antisera were used to study IGFBP production in primary cultures of rat granulosa cells grown in serum-free medium for 72 h. Ligand blotting with 125I-labeled IGF-I and IGF-II revealed two bands migrating at 29 and 24 kilodaltons (kDa) in the medium of untreated control cells, whereas no bands were detectable in medium from cells incubated with 100 ng/ml FSH. Western blotting of control medium with all of the IGFBP antibodies revealed that the IGFBP-4 antibody stained two bands at 28 and 24 kDa, and the IGFBP-5 antibody stained two bands at 30 and 29 kDa. By contrast, these bands were absent in medium from FSH-stimulated cells; instead, two lower molecular mass bands of 21.5 and 17.5 kDa were detected with the IGFBP-4 antibody, and a 21-kDa band was seen with the IGFBP-5 antibody. The same 21.5- and 17.5-kDa bands were seen when exogenously added IGFBP-4 was incubated with the FSH-conditioned medium, whereas untreated medium did not degrade the added IGFBP-4. Incubation with the conditioned medium also degraded exogenous IGFBP-5 to yield a 21-kDa band. By contrast, medium from control cells did not degrade the exogenous IGFBP-5. This finding indicates that FSH induced the production of a protease from granulosa cells that degraded IGFBP-4 and -5 in the culture medium. No IGFBPs were detectable in medium from control or FSH-treated cells using the IGFBP-2, -3, and -6 antibodies. Northern blotting analysis of the same control granulosa cell cultures revealed a 2.6-kilobase and a 6.0-kilobase transcript for IGFBP-4 and -5, respectively; however, the IGFBP-4 and -5 mRNAs were essentially undetectable in FSH-treated cell cultures. To determine the effects of the IGFBPs on steroidogenesis, dose-response experiments were performed with IGFBP-4 and -5.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

Insulin-like growth factor binding protein-3 gene expression is restricted to involuting corpora lutea in rat ovaries.

There is evidence that insulin-like growth factor binding protein-3 (IGFBP-3) is a part of the intrinsic IGF system in rat CL. Here, we examined when during luteogenesis the IGFBP-3 gene is expressed. IGFBP-3 messenger RNA (mRNA) was characterized by Northern analysis and in situ hybridization techniques. Animals were selected at proestrus (P 1000 h and P 2000 h), estrus (E 0200 h and E 1000 h), diestrus I (DI 1100 h), and diestrus II (DII 1100 h), and in pregnancy (day 12, before luteolysis and day 21, during luteolysis). A single 2.6 kilobase IGFBP-3 transcript was identified at each stage of the estrous cycle; however, the amounts of message varied markedly, being most abundant at P 1000 h, least abundant at P 2000 h, E 0200 h, E 1000 h, and DI, and then more abundant at DII. Corroborating our earlier report, IGFBP-3 mRNA was limited solely to corpora lutea (CL). Newly-formed CL-I at E 0200 h and E 1000 h revealed no IGFBP-3 hybridization. This is the period of early luteinization when cells undergo hypertrophy and capillaries and lymphatics penetrate the granulosa lutein layer. At DI 1100 h, a few cells (12.2 +/- 3.4%) near the central cavity of the CL-I showed a positive hybridization signal for IGFBP-3; this period is commensurate with active luteinization when the vascular tissue develops a distinctly sinusoidal character and progesterone secretion by CL-I increases. At DII 1100 h, more cells in the central area were positive for IGFBP-3 (55.2 +/- 6.4%); this is the period of active luteolysis when P4 secretion has fallen to basal levels. At P 1000 h, a positive IGFBP-3 hybridization signal was detected in most CL-I cells (85.3 +/- 2.8%), and the signal was particularly intense in subtypes of endothelial cells lining venous sinusoids and/or lymphatics and some perivascular cells; this is the period when patches of pyknotic cells appear in the central area of CL-I. At P 2000 h, 45.9 +/- 1.6% of the CL-I cells showed a positive signal; however, the intensity of the signal was much weaker when compared to P 1000 h. During the next cycle, the CL-I become the CL of the second generation (CL-II), which show increased necrosis. Between estrus and diestrus II of the next cycle, a large number of the CL-II cells (approximately 75%) were positive for IGFBP-3 and the signal was very strong in some groups of cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Granulosa cells of polycystic ovaries: are they normal or abnormal?

Understanding whether granulosa cells are normal or abnormal in women with polycystic ovary syndrome (PCO) could have clinical importance. For this purpose, we compared the ability of normal and PCO granulosa cells to synthesize oestrogen and progesterone in vitro in response to follicle stimulating hormone (FSH) and/or insulin-like growth factor-I (IGF-I). The normal granulosa cells were from a 7 mm dominant follicle from a women with regular menstrual cycles. The PCO granulosa cells were from 5-7 mm follicles of three patients who had classical PCO. Several interesting points emerge from the comparison: in each PCO patient there was a high level of bioactive FSH in the follicular microenvironment (greater than or equal to 5 mIU/ml; greater than or equal to 250 ng/ml). This is paradoxical because the concentration of steroids in follicular fluid suggests that PCO follicles are highly atretic and therefore should not contain detectable FSH activity. The capacity to secrete progesterone when challenged with a maximally effective dose of FSH and/or IGF-I, was markedly reduced (8- to 10-fold) in PCO compared to normal granulosa cells. This is in sharp contrast to the oestradiol responses which were much the same for PCO and normal granulosa cells. Also, the time course and dose-response effects of FSH showed some major differences between normal and PCO cells, that is, PCO cells lost their capacity to produce oestradiol when treated continuously with a maximally effective dose of FSH. They were also significantly more sensitive to FSH and failed to become more sensitive to IGF-I when treated with FSH.(ABSTRACT TRUNCATED AT 250 WORDS)

Cells, Cultured↗

Cyclic changes in insulin-like growth factor-binding protein-4 messenger ribonucleic acid in the rat ovary.

We have previously shown that the mRNA for insulin-like growth factor-binding protein-4 (IGFBP-4) is present in adult rat ovaries, being localized predominantly to granulosa cells of atretic follicles. Now we have considered the following questions. What class of atretic follicles expresses IGFBP-4 mRNA? How does IGFBP-4 mRNA expression change during the estrous cycle? In keeping with our earlier work, a strong hybridization signal for IGFBP-4 mRNA was present in subpopulations of follicles throughout the estrous cycle. In all cases, the hybridization signal was localized to granulosa cells. Among the various types of follicles, IGFBP-4 mRNA was present almost exclusively in atretic graafian (antral) follicles. Morphologically, the outer layer of granulosa cells was positive, while cells in the cumulus oophorous were negative. By Northern analysis and in situ hybridization, the levels of IGFBP-4 mRNA were found to change over the estrous cycle. At 1000 h on proestrus (before the LH/FSH surge), the hybridization signal was relatively weak, being restricted in some (but not all) atretic Graafian follicles. At 2000 h on proestrus, (after the LH/FSH surge), essentially all atretic Graafian follicles were strongly positive for the message. The pattern of hybridization was similar at 0200 h on estrus, but the signal was less intense. At 1000 h on estrus, the hybridization signal was variable, ranging from very strong to weak or undetectable in atretic follicles. At this stage, however, the highest levels of IGFBP-4 mRNA were measured by Northern analysis; interestingly, a strong signal became apparent in the stromal cells. On diestrous day 1, the message levels decreased, and the signal was restricted to some atretic follicles. On diestrous day 2, the hybridization signal was very weak. There was virtually no detectable IGFBP-4 mRNA in any healthy follicle. In summary, we found that IGFBP-4 mRNA is 1) not detected in healthy dominant follicles; 2) localized almost exclusively to atretic Graafian follicles, except on estrus when it also appears in stromal cells; 3) localized predominantly to the mural granulosa cells in atretic follicles; and 4) undergoes changes during the cycle, being most prominent around estrous morning. The possibility that IGFBP-4 plays a role in the cyclic destruction of cohort Graafian follicles at estrus, perhaps by mechanisms involving hormones, is discussed.

Animals↗

Localization of insulin-like growth factor-binding protein-5 messenger ribonucleic acid in rat ovaries during the estrous cycle.

To investigate the potential role of insulin-like growth factor-binding protein-5 (IGFBP-5) in ovarian physiology, we employed in situ hybridization and Northern analysis to localize IGFBP-5 mRNA in rat ovaries during the estrous cycle. By Northern analysis, the mRNA was abundant at all stages of the cycle. Two species of mRNAs were detected, with sizes of 6.0 and 1.8 kilobases, respectively. The relative amounts of the two transcripts changed throughout the cycle. By in situ hybridization, IGFBP-5 mRNA was expressed in only a few cell types: 1) granulosa cells of some atretic follicles, 2) some secondary interstitial cells, 3) some corpora lutea, and 4) the surface epithelium. The levels of message in both the granulosa and secondary interstitial cells changed over the cycle. At 1000 h on proestrus (before the LH/FSH surge), the message was expressed in only a few follicles. Interestingly, all were small atretic preantral (200-250 microns) follicles. At 2000 h on proestrus (after the LH/FSH surge), the IGFBP-5 mRNA was more abundant; now almost every atretic preantral follicle showed a strong hybridization signal. At 0200 and 1000 h on estrus, the mRNA appeared for the first time in granulosa cells of some atretic antral follicles and in secondary interstitial cells. Hence, virtually all atretic follicles, preantral and antral, now showed IGFBP-5 gene expression. In contrast to that on proestrus and estrus, the hybridization signal on diestrous days 1 and 2 was much less prominent and was found in only a few atretic preantral follicles. Throughout the cycle, IGFBP-5 mRNA was evident in some corpora lutea, but it was not particularly prominent. Abundant IGFBP-5 mRNA was evident in the surface epithelium, and no change was detected over the cycle. Dominant follicles were devoid of IGFBP-5 mRNA. In conclusion, this paper presents the first evidence that the IGFBP-5 gene is expressed in the adult rat ovary. The IGFBP gene is expressed in a cell-specific manner, e.g. in atretic granulosa, secondary interstitial cells, corpora lutea, and the surface epithelium, and the stage of the cycle significantly affected message levels, especially in atretic granulosa and secondary interstitial cells around estrous morning. These findings suggest that IGBP-5 may be an autocrine/paracrine regulator of ovarian physiology, particularly in relation to preantral follicle atresia.

Animals↗

Progesterone production by human granulosa cells cultured in serum free medium: effects of gonadotrophins and insulin-like growth factor I (IGF-I).

There is evidence that insulin-like growth factor I (IGF-I) is a potent regulator of oestradiol synthesis by human granulosa and luteal cells; however, the question of whether IGF-I regulates progesterone synthesis by these cell types has yet to be answered. As a first step towards this goal, we have compared the effects of IGF-I, follicle stimulating hormone (FSH), and human chorionic gonadotrophin (HCG) on progesterone production by human granulosa cells obtained from individual dominant and cohort follicles, and granulosa luteal cells from preovulatory follicles of patients undergoing in-vitro fertilization (IVF). Granulosa cells from normal, unstimulated follicles cultured in serum-free medium as controls (no additions) produced some progesterone spontaneously. In all cases, FSH stimulated basal progesterone levels (10-fold average increase) and the effect was dose-dependent (ED50 of FSH = 9.1 +/- 3.9 ng/ml). Similar effects were observed when granulosa cells from large follicles were incubated with HCG (ED50 of HCG = 6.9 +/- 2.8 ng/ml). By comparison, the effects of IGF-I on progesterone production were not marked, being absent in 80% of the follicles tested. However, granulosa cells from healthy follicles co-incubated with IGF-I and FSH or HCG produced more progesterone compared with cells treated with the gonadotrophins alone; this effect of IGF-I was dose dependent (ED50 of IGF-I = 10 ng/ml). When the effect of each agonist was tested on IVF granulosa luteal cells, HCG but not FSH or IGF-I stimulated basal progesterone levels but the HCG effect required a two-day lag phase.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Cyclic changes in follistatin messenger ribonucleic acid and its protein in the rat ovary during the estrous cycle.

The purpose of this research was to characterize the localization of follistatin mRNA and protein in the adult rat ovary during the 4-day estrous cycle. Analysis of ovarian sections using in situ hybridization and immunohistochemistry demonstrated the presence of follistatin messenger RNA (mRNA) and its protein in granulosa and luteal cells; no follistatin (message or protein) was detected in any of the other ovarian cell types. An important observation was that the intensity of follistatin signals changed during granulosa differentiation and the estrous cycle. During folliculogenesis, the first detectable hybridization signal appeared in the granulosa cells of secondary follicles, but the signal was weak. However, when a preantral follicle reached the early tertiary stage (beginning antrum formation), the message signal was very strong, being expressed in all granulosa cells of all such follicles (300-400 microns in diameter). In atretic follicles, follistatin mRNA was localized to granulosa cells, but only during the early stages. The above hybridization pattern of follistatin mRNA in prenatral and atretic follicles appeared constant throughout the estrous cycle. Interestingly, immunohistochemistry studies showed that the follistatin protein was detected only in certain follicles, being restricted to those which were healthy. On the morning of estrus, the follistatin protein was localized to a subpopulation of early tertiary follicles, presumably the dominant follicles selected to ovulate in the next cycle. As the dominant preovulatory follicles matured through diestrus and proestrus, the follistatin mRNA and protein signals appeared more intense in the granulosa cells. After ovulation, the hybridization and immunohistochemical signals continued to be strong in the newly formed corpora lutea on estrus morning. After luteolysis on diestrus-I, neither the follistatin message nor the protein was detectable in the corpora lutea. In conclusion, these results suggest that the follistatin message is present in all the granulosa cells of every developing follicle throughout the estrous cycle, but the follistatin protein appears to be present in only the selected dominant follicles. Accordingly, the possibility that follistatin might be an important regulatory molecule for selection/atresia should be considered.

Animals↗

Tissue-specific expression of four insulin-like growth factor-binding proteins (1, 2, 3, and 4) in the rat ovary.

We investigated the possible presence of the mRNAs encoding four insulin-like growth factor-binding proteins (IGFBP-1, -2, -3, and -4) in the rat ovary. It has been demonstrated previously by Northern analysis that adult rat ovaries contain mRNA transcripts for IGFBP-2 and -3. Here we show by Northern analysis that adult rat ovaries contain mRNA for IGFBP-4, but the mRNA for IGFBP-1 was below the limit of detection. Using in situ hybridization, IGFBP-1 mRNA was not detected in any of the ovaries tested. The IGFBP-2 mRNA was localized specifically in thecal interstitial cells (TIC) and secondary interstitial cells of all ovaries. The IGFBP-2 signal was very strong in TIC of all Graafian follicles (healthy and atretic) and very strong in all secondary interstitial cells located in different regions of the ovary, but weak in TIC of preantral follicles. The IGFBP-3 hybridization signal was localized specifically to some corpora lutea. Here the hybridization single for IGFBP-3 was strong and distributed throughout the corpus luteum, strong but localized to only some luteal cells, or not detectable. The IGFBP-4 mRNA was localized almost exclusively to granulosa cells of atretic follicles. The intensity of the IGFBP-4 signals appeared to increase as the level of atresia increased. In some cases, IGFBP-4 signals were detected in the TIC, but they were weak and variable. These results show that the mRNAs for IGFBP-2, -3, and -4 are localized to the interstitial cells, corpora lutea, and atretic granulosa cells, respectively. The tissue-specific synthesis of IGFBP subtypes in specialized ovarian cells provides an excellent system to study the manner in which IGFBP synthesis is controlled and their potential role as an autocrine and paracrine factors.

Animals↗

The effects of insulin and insulin-like growth factors-I and -II on estradiol production by granulosa cells of polycystic ovaries.

The objective of this work was to examine the effects of insulin-like growth factors (IGFs) on estradiol (E2) production by granulosa cells obtained from ovaries of patients with polycystic ovary disease (PCO). Granulosa cells, isolated from ovaries of three PCO patients, were cultured in serum-free medium containing either androstenedione alone (10(-7) M) or androstenedione plus graded doses of FSH, IGF-I, IGF-II, and/or insulin. At the end of the culture period (2, 4, or 6 days) E2 levels in the medium were measured by RIA. The results from each patient were similar, and therefore, the data were pooled. In the 6-day time-course experiments, the control (untreated) cells produced relatively high levels of E2 at 2 days; however, none was detected thereafter. Treatment with FSH (30 ng/mL) stimulated E2 production 4-fold at 2 days, but the stimulatory effects of FSH were not sustained during culture. IGF-I at 30 ng/mL mimicked the effects of FSH. Concomitant treatment with FSH and IGF-I caused synergistic increases in E2 production (3-, 13-, and 33-fold at 2, 4, and 6 days, respectively). Dose-response studies revealed that FSH and IGF-I stimulated E2 production in a dose-dependent fashion (ED50 of FSH and IGF-I, were 1.1 +/- 0.3 and 7.6 +/- 7.2 ng/mL, respectively). In the presence of a maximally effective dose of FSH (30 ng/mL), the cells appeared to become more responsive to IGF-I (ED50 of IGF-I plus FSH, 1.09 +/- 0.29 ng/mL); however, this effect was not significant (P = 0.086). In the presence of a maximally effective dose of IGF-I (30 ng/mL), the stimulatory effect of FSH on E2 production was dramatically amplified, but the IGF-I did not significantly (P = 0.85) change the potency of FSH (ED50 of FSH plus IGF-I, 1.07 +/- 2.3 ng/mL). Treatment with IGF-II over the concentration range of 0.1-100 ng/mL had no effect on either control or FSH-stimulated E2 production. Treatment with insulin, either alone or together with FSH, increased the levels of E2, but the insulin effects were seen only at the highest doses tested (0.3-10 micrograms/mL). The results in these in vitro experiments with PCO granulosa cells indicate that 1) physiological concentrations of IGF-I are as effective as FSH in stimulating E2 production; 2) IGF-I and FSH act synergistically to control the level of E2 production; and 3) this synergy was not observed with insulin or IGF-II.

Adult↗

Insulin-like growth factor-I selectively stimulates cholesterol side-chain cleavage expression in ovarian theca-interstitial cells.

Evidence accumulating in the literature supports the concept that insulin-like growth factor I (IGF-I) may be an important local regulator of ovarian function. Recent studies have demonstrated that IGF-I synergistically augments LH stimulation of theca-interstitial cell (TIC) androgen biosynthesis. The purpose of the present studies was to begin to elucidate the molecular mechanisms of the interaction between IGF-I and LH. TIC were purified from ovaries of hypophysectomized immature rats by Percoll gradient centrifugation. When isolated TIC (5 x 10(6) viable cells per dish) were cultured (4 days) in serum-free medium, low amounts (less than 10 ng/ml) of androsterone were produced. Basal androsterone production was not changed by incubation with IGF-I (30 ng/ml). Treatment with LH (50 ng/ml) caused an 85-fold stimulation of androsterone synthesis that was further increased 2.1-fold by concomitant treatment with IGF-I. Immunoblot analysis demonstrated that untreated TIC contained low levels of 17 alpha-hydroxylase/C17-20 lyase enzyme (P450(17 alpha] that were unchanged by incubation with IGF-I alone. LH treatment increased P450(17 alpha) content 5.5-fold and coincubation with LH plus IGF-I increased P450(17 alpha) content 16-fold above control levels. Cholesterol side chain cleavage enzyme (P450scc) was readily detected in immunoblots from untreated TIC. P450scc content was increased 2.6-fold by LH treatment and 4.2-fold by LH plus IGF-I. Interestingly, IGF-I alone induced a 2-fold increase in P450scc. To determine if the increases in P450scc content were associated with increased enzyme activity, progesterone production was measured.(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens↗

Theca function in polycystic ovaries of a patient with virilizing congenital adrenal hyperplasia.

The steroidogenic activity of purified theca interstitial cells (TIC) from polycystic ovaries of a patient with virilizing congenital adrenal hyperplasia due to 21-hydroxylase deficiency was studied in serum-free medium. The results show that CVAH TIC have high intrinsic basal androgen secretory activity that is dramatically stimulated by hCG, insulin, and lipoproteins, particularly HDL. Accordingly, the results support the hypothesis that TIC may contribute to the development of polycystic ovaries in CVAH patients, perhaps by mechanisms independent of the adrenal glands.

Adrenal Hyperplasia, Congenital↗