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L Y Wing

Publications and source records attributed to L Y Wing.

26 records · Page 2Linked to original sources

Aromatase inhibitors and their potential clinical significance.

Estrogen biosynthesis occurs not only in reproductive tissues of the female but also in such diverse sites as testes, adipose and muscle. Our rationale for the clinical use of aromatase inhibitors is that compounds interacting with aromatase in all tissues could provide both selective and effective inhibition of estrogen production. The most potent inhibitor identified by us to date is 4-hydroxyandrostene-3,17-dione (4-OHA). This compound causes rapid competitive inhibition followed by irreversible inactivation of aromatase. Treatment of rats with 4-OHA results in inhibition of ovarian aromatase and estrogen secretion, accompanied by marked regression of carcinogen induced mammary tumors. Using rhesus monkeys, marked inhibition of peripheral aromatization by 4-OHA was also demonstrated. The first clinical study with a selective aromatase inhibitor was recently carried out using once weekly injections of 500 mg 4-OHA in 60 postmenopausal patients with advanced metastatic breast cancer and unselected for the presence of estrogen receptors. The mean serum estradiol level reduced to 36% of pretreatment values for at least 4 months. No effect of treatment on gonadotropin levels occurred indicating that the reduction in estrogen levels was due to inhibition of peripheral aromatization. In spite of the fact that all patients had relapsed from previous therapy, complete or partial tumor regression occurred in 30% of patients while 15% had static disease. Although the optimum dose of 4-OHA has not yet been established, this aromatase inhibitor appears to be of value in treating postmenopausal breast cancer and may be beneficial in other diseases associated with estrogens.

Androstenedione↗

Effects of aromatase inhibitors, aminoglutethimide, and 4-hydroxyandrostenedione on cyclic rats and rats with 7,12-dimethylbenz(a)anthracene-induced mammary tumors.

4-Hydroxyandrostenedione (4-OHA) is a more potent and specific inhibitor of aromatase (estrogen synthetase) than aminoglutethimide (AG). The two inhibitors were compared in rats with 7,12-dimethylbenz(a)anthracene-induced, hormone-dependent tumors and in normal cyclic rats treated for 4 and 2 weeks, respectively. Ovarian estradiol levels and aromatase activities were not consistently reduced, and tumors regressed in only two of eight rats treated with AG. In animals treated with 4-OHA or 4-OHA:AG, the total tumor volume, estradiol levels, and aromatase activity decreased by greater than 70%. Ovarian weights and plasma luteinizing hormone (LH) levels were also reduced by 4-OHA but increased by AG. Uterine weights were not altered by AG treatment but were increased by 4-OHA. Similar but more consistent results were obtained with these treatments in normal, cyclic rats. In ovariectomized rats, AG had no effect, whereas 4-OHA decreased LH levels and increased uterine weights. The results suggest that, although AG reduces ovarian estrogen secretion by aromatase inhibition, this may lead to an increase in LH secretion. Increased LH may promote ovarian growth and aromatase synthesis, counteracting the inhibitory action of AG to some extent. 4-OHA which inactivates aromatase may also prevent new enzyme synthesis by directly inhibiting gonadotropins. This would result in more effective reduction in ovarian estrogen production by 4-OHA than AG during long-term treatment.

9,10-Dimethyl-1,2-benzanthracene↗

Effects of cyclic nucleotides on ornithine decarboxylase activity in mammary gland explants from mid-pregnant mice.

Dibutyryl cAMP and prolactin stimulated ornithine decarboxylase activity in mouse mammary gland explants which had been preincubated with insulin and cortisol for 1 day; maximally stimulatory concentrations of dibutyryl cAMP and prolactin produced a response which was greater than the sum of the responses of prolactin and dibutyryl cAMP when tested alone. 8-Bromo-cGMP inhibited ornithine decarboxylase activity whereas other derivatives of cyclic nucleotides were without effect. Cortisol concentrations were found to be important for optimizing the dibutyryl cAMP and prolactin responses. Optimal prolactin responses were obtained with cortisol concentrations greater than 10(-7) M, whereas optimal dibutyryl cAMP responses were observed with cortisol concentrations less than 10(-7) M. Despite the differing optimal cortisol concentrations for the prolactin and dibutyryl cAMP responses, it is concluded that prolactin and dibutyryl cAMP probably stimulate ornithine decarboxylase activity in the mammary gland via the same mechanism.

Animals↗

Prostaglandin stimulation of ornithine decarboxylase activity in mammary gland explants from mid-pregnant mice.

The effects of various prostaglandins on ornithine decarboxylase (ODC) activity in mammary gland explants from mid-pregnant mice have been tested. PGE1, E2 and I2 elicit a concentration-dependent stimulation of ODC activity. The minimally effective concentrations are 0.5 ug/ml for PGE1 and E2, and 50 ug/ml for PGF2 alpha and 6-keto-PGF1 alpha. The PGE1 effect had a time course identical to that of prolactin. The prolactin action on ODC activity was attenuated by indomethacin, an inhibitor of prostaglandin biosynthesis. Arachidonic acid stimulated ODC activity and its effect was abolished by indomethacin. The phosphodiesterase inhibitor, 3-isobutyl-1-methylxanthine, potentiated the PGE1 effect on ODC activity. The results suggest that the prostaglandins may modulate prolactin's action on ODC activity via a cAMP dependent mechanism.

1-Methyl-3-isobutylxanthine↗

Effects of phospholipases on ornithine decarboxylase activity in mammary gland explants from midpregnant mice.

Phospholipases A2 (PLA2) and C (PLC) stimulate ornithine decarboxylase (ODC) activity in mouse mammary gland explants preincubated with insulin and cortisol. PLC concentrations of 0.1 micrograms/ml produced responses that were close in magnitude to that of PRL, whereas PLA2 at concentrations of 5-50 micrograms/ml was 35-40% as efficacious as 1 microgram/ml PRL in stimulating ODC activity. The time courses of PLC, PLA2, and PRL actions on ODC activity were not different from one another. When PRL and PLC were tested together, a response greater than the sum of the responses of each of these agents alone was observed; PLA2 (25 micrograms/ml) when tested with PRL produced a nonadditive response. The action of PRL on ODC activity was significantly attenuated by quinacrine, an inhibitor of PLC and PLA2 activities. These results suggest that PRL, PLA2, and PLC stimulate ODC activity via similar mechanisms in the mammary gland and make tenable the idea that the action of PRL on ODC activity may be carried out via an action of PRL on PL activity.

Animals↗

Effect of 3-isobutyl-1-methylxanthine on prolactin actions on RNA synthesis, casein synthesis, lipid synthesis and ornithine decarboxylase activity in mouse mammary gland explants.

The effect of 3-isobutyl-1-methylxanthine (IBMX), an inhibitor of cyclic nucleotide phosphodiesterase, was tested on several actions of prolactin in cultured mouse mammary tissues. At concentrations of 0.5 mM and above, IBMX abolished the actions of prolactin on RNA and casein synthesis. IBMX by itself, stimulated ornithine decarboxylase (ODC) activity in a dose-response fashion; but the IBMX at concentrations up to 1 mM had no effect on the magnitude of the prolactin-stimulated ODC activity. IBMX inhibited in a dose-response fashion the rate of [14C]-acetate incorporation into lipids; however, prolactin stimulated lipid biosynthesis in the presence of IBMX concentrations of up to 1 mM.

1-Methyl-3-isobutylxanthine↗

Effect of various concentrations of prolactin and growth hormone on the magnitude of stimulation of RNA synthesis, casein synthesis and ornithine decarboxylase activity in mouse mammary gland explants.

The effects of various concentrations of prolactin and growth hormone on the rates of [3H]-uridine incorporation into RNA, [3H]-leucine incorporation into casein, and ornithine decarboxylase (ODC) activity were determined in mouse mammary gland explants. The lowest concentrations of prolactin which produced significant responses were between 5 and 25 ng/ml. Growth hormone, in contrast, produced significant response at concentrations between 250 and 1,000 ng/ml. The prolactin actions on RNA and casein synthesis were essentially all-or-none type responses, i.e. the magnitude of the responses were maximal at about 10 ng/ml prolactin. The action of prolactin on ODC activity was quite different; a concentration-response relationship was observed with prolactin at concentrations from 10 t 250 ng/ml. It is apparent from these studies that different concentrations of prolactin are required to produce optimal actions on different biochemical parameters in cultured mammary tissues.

Animals↗

In vitro and in vivo studies with aromatase inhibitor 4-hydroxy-androstenedione.

Studies with 4-hydroxyandrostenedione (4-OHA) are described which demonstrate inhibition of aromatase in human placentra and rat ovaries. In animal experiments, the compound was compared with aminoglutethimide (AG) for antitumor activity and effects on plasma hormone levels. 4-OHA was more effective than AG in causing regression of DMBA-induced hormone dependent tumors in the rat. Although estradiol concentrations in ovarian vein blood were reduced initially by both compounds, there is a reflex rise in LH and estradiol levels during long-term treatment with AG, whereas hormone levels in 4-OHA treated animals remained suppressed. Further studies in ovariectomized rats indicated that during long-term treatment, 4-OHA acts as a weak androgen (the compound has less than 1% the activity of testosterone) to directly inhibit the post-castrational rise in gonadotropin levels. This antigonadotropin action of the steroidal aromatase inhibitor may help maintain reduced ovarian estrogen secretion and thus contribute to the antitumor activity of 4-OHA.

Aminoglutethimide↗