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Biomedical subjects

B S Setty

Publications and source records attributed to B S Setty.

At least 19 recordsLinked to original sources

CDRI-85/287, a novel antiestrogen and antiimplantation agent: biological profile and interaction with the estrogen receptors in immature rat uterus.

Postcoital antifertility efficacy, estrogenic and antiestrogenic activities of compound 85/287 were determined by the subcutaneous route in rats. It was 100% effective in preventing implantation at 0.5 mg/kg dose when administered within 24 h of mating and at 0.05 mg/kg in the days 1-5 post-coitum regimen. In the immature rat bioassay, it exhibited mild uterotrophic effect at the contraceptive dose but when administered along with estradiol (E2), it caused almost complete inhibition of uterine weight gain and vaginal cornification at the 2 mg/kg dose. E2 administration to immature rats (0.1 microgram, s.c., 3 days) caused 3-5 fold increase in the nuclear as well as cytoplasmic estradiol receptor (ER) content as compared to controls. In contrast, 85/287 (0.5 mg/kg and 2 mg/kg; s.c.), only translocated the ER to the nuclear compartment resulting in a depletion of cytoplasmic ER levels. Concurrent administration of 85/287 and E2 inhibited E2-induced increase in cytoplasmic ER. It is suggested that compound 85/287 exerts its antiestrogenic and antiimplantation action by interfering with the formation of E2-receptor complexes in the uterus.

Animals

Effect of efferentiectomy on enzymes of glycolytic pathway, HMP pathway and TCA cycle in epididymis and vas deferens of rhesus monkey.

The importance of exocrine secretions of testis in the regulation of energy metabolism of the epididymis and vas deferens was examined in rhesus monkeys by performing efferentiectomy. At autopsy the epididymis was divided into initial segment, caput, corpus and cauda portions to make an account of regional differences, if any. Eleven enzymes of glycolysis, two key enzymes of HMP pathway and seven enzymes of TCA cycle were assayed in the epididymal segments and vas deferens of control (intact) and experimental (efferentiectomised for 90 days) monkeys. The results indicate that while anaerobic energy metabolism (glycolysis and HMP pathway) is sensitive to efferentiectomy chiefly in the proximal regions of epididymis, the oxidative pathway (TCA cycle) is dependent on testicular exocrine secretions throughout the length of epididymis, as well as in the vas deferens. Since all androgen-sensitive enzymes do not regress after efferentiectomy, it is suggested that unidentified exocrine factors of testis may have role in regulating energy metabolism in the epididymis and vas deferens.

Animals

Duration of antiestrogenecity of compound CDRI-85/287: a new orally active nonsteroidal antiimplantation agent.

Duration of antiestrogenic and antiimplantation action of CDRI-85/287, (2-(4-(2-N-piperidino)ethoxy phenyl)-3-phenyl(2H)benzo(2)pyran), was studied in rat. Pretreatment of ovariectomized immature rats with this compound caused translocation of cytoplasmic estrogen receptor (ER) to the nucleus and a marked depletion of cytoplasmic ER pool resulting in a nonresponsive state of the uterus to subsequent estrogen administration until day 4. While in rats pretreated with estradiol, increased cytoplasmic ER level made the uterus responsive to a second injection of estrogen. In the delayed implantation model, 85/287 pretreated rats were given estrone on days 4, 5 or 6 post-antiestrogen treatment. No implantations were observed after estrone administration on day 4, but were present when estrone was given on days 5 or 6. Summation of these results suggests the duration of action of 85/287 to be 3-4 days in rat.

Administration, Oral

CDRI-85/287: studies on competition to estrogen binding sites in the immature rat uterus.

Ability of compound CDRI-85/287, a new nonsteroidal antiestrogen with negligible inherent estrogenicity, to inhibit uptake of 3H-estradiol (3H-E2) by the immature rat uterus in vivo was investigated. Different doses of 85/287 were administered either intraperitoneally 30 min before 3H-E2 or orally 1 and 6 hr before 3H-E2. A dose dependent inhibition in 3H-E2 uptake was observed after administration of the compound by either route and was 69% at 50 micrograms/rat ip dose and 80% at 2.5 mg/kg po dose. In in vitro competitive binding assay, however, the compound showed poor affinity (RBA 0.42% of estradiol-17 beta) for cytosolic estrogen receptors. Considering the potent anti-estrogenic as well as anti-implantation efficacy of the compound, its action in vivo appears to be mediated via its active metabolite(s).

Animals

Post-coital antifertility activity of the marine plant, Achrostichum aureum L. in rat.

The ethanolic extract of A. aureum and its fractions were evaluated for postovulatory antifertility activity in female rats. The water soluble fraction of ethanolic (95%) extract prevented (100%) pregnancy when administered to female rats on days 1-7 postcoitum. This fraction was found devoid of both estrogenic and antiestrogenic activities.

Animals

Biological profile of 2-[4-(2-N-piperidinoethoxy) phenyl]-3-phenyl (2H) benzo (b) pyran--a potent antiimplantation agent in rat.

Compound CDRI-85/287: 2-[4-(2-N-piperidinoethoxy) phenyl]-3-phenyl (2H) benzo (b) pyran has been identified as a potent antiimplantation agent in rat. A single oral dose (2.5 mg/kg body weight) of the compound administered on days 1, 2 or 3 of pregnancy or multiple dosing (0.05 mg/kg daily) on days 5-7 postcoitum effectively prevented pregnancy. When administered on days 5-7 postcoitum, it failed to interrupt pregnancy even at 20 mg/kg dose. The compound is a potent antiestrogen, with very weak uterotrophic activity; it does not induce vaginal cornification in immature ovariectomised rat. Also, it is devoid of progestational, antiprogestational, androgenic, antiandrogenic and antigonadotrophic activities. The results suggest that the compound exerts its antiimplantation acivity in rat by virtue of its antiestrogenic activity [corrected].

Animals

Androgen-estrogen synergy in the regulation of energy metabolism in epididymis and vas deferens of rhesus monkey.

The possible physiological role of estrogen in the regulation of energy metabolism of epididymis and vas deferens of rhesus monkey was investigated. A few selected key enzymes of glycolysis (hexokinase, phosphofructokinase and pyruvate kinase) and TCA cycle (succinate dehydrogenase and malate dehydrogenase) were measured in these two organs of (a) castrated estrogen treated, (b) castrated estrogen + dihydrotestosterone (DHT) treated animals and compared with those in castrated and castrated + DHT treated animals. Results reveal that DHT stimulated the activities of all these enzymes whereas estrogen failed to stimulate any of the enzymes in castrated animals. However, estrogen in combination with DHT caused a marked stimulation of the enzymes and the response of the epididymis and vas deferens to combination treatment was significantly more than that caused by DHT alone. The results suggest that circulating estrogen in male has a physiological role and acts synergistically with androgen in regulating accessory sex organ function.

Androgens

Effect of a nonsteroidal antiandrogen, anandron, on the reproductive system and fertility in male rats.

The effect of Anandron, a nonsteroidal antiandrogen, on the reproductive system and fertility of adult male rats was studied. Administered at a daily oral dose of 5 mg and 10 mg (per rat) for 30 days, it caused a significant increase in the plasma testosterone levels. Spermatogenic arrest in about 20 to 50% of the tubules in 9 out of 16 rats and stimulation of Leydig cells was observed in rats treated with the higher dose. Although a reduction occurred in accessory sex organ (epididymis, seminal vesicles, SV; ventral prostate, VP; dorsal prostate, DP and coagulating gland, CG) weight, no parallel reduction was evident in the secretory indices of the epididymis (glycerylphosphorylcholine and sialic acid), VP (alkaline phosphatase) and CG (fructose). However, there was a reduction in the total content per organ of these constituents. Females mated with treated males showed postimplantation loss indicating an adverse effect of Anandron during spermiogenesis. The results suggest that the peripheral antiandrogenic potency of Anandron in intact animals is insufficient to completely neutralize the elevated levels of androgens. A microdose (1 microgram) of estradiol efficiently neutralized the central stimulatory effect of Anadron and potentiated its antiandrogenic action. The potential use of such a combination for 'Fertility Regulation' in male is discussed.

Alkaline Phosphatase

Changes in testis, epididymis and other accessory organs of male rats treated with anandron during sexual maturation.

Anandron (5,5-dimethyl-(4-nitro-3(trifluoromethyl)phenyl)-2,4-imidazolidine-dione ), a nonsteroidal antiandrogen was administered orally to growing rats from day 31 through day 60 of age to study its effect on the testis and genital tract. At a daily dose of 5 mg per rat, it caused a significant reduction in the weights of testis, epididymis, seminal vesicles, ventral prostate and dorsal prostate. In more than 50 percent of the animals, it caused arrest of spermatogenesis at spermatid stage. Though there was a reduction in the epididymal content of glycerylphosphorylcholine and sialic acid, their concentration was not altered much. The results are discussed in relation to the effects of anandron on the genital organs of adult male rat.

Androgen Antagonists

Studies on mechanism(s) of antifertility action of gossypol in rat and hamster.

This study was undertaken with a view to investigate the possible mechanism(s) of antifertility action of gossypol acetate in rats and hamsters. Adult male rats were treated by gavage with 30 mg/kg/day of gossypol for 7 weeks and adult male hamsters were treated similarly with 20 mg/kg/day gossypol for 8 weeks. The treatment caused a marked reduction in the weights of testis and epididymis. Histological examination of the testis in the two species revealed presence of seminiferous tubules showing varying degrees of damage along with a large number of normal tubules. Exfoliation of germ cells and spermatogenic arrest at spermatid stage was a common feature. Leydig cells presented normal morphological features. Though there was a reduction in the diameter of epididymal tubules, the epithelium did not show any morphological alterations. Examination of vasal flushings revealed marked reduction in sperm population and consisted of decapitated and immotile spermatozoa. Gossypol caused a significant reduction in the levels of total protein, RNA and DNA, and a marginal decrease in glycogen content in the testis. This was accompanied by a reduction in the activities of SDH and MDH. Except for LDH activity which showed a marked rise, there was no effect on glycolytic enzymes in the testis. The concentrations of glycerylphosphorylcholine and sialic acid were reduced in the cauda epididymis. The antifertility effects of gossypol appear to be due to its action both on testis as well as on epididymis.

Animals

Morphological changes in human spermatozoa as examined under scanning electron microscope after in vitro exposure to saponins isolated from Sapindus mukorossi.

Saponins isolated from Sapindus mukorossi have potent spermicidal activity. Morphological changes in human ejaculated spermatozoa after exposure to these saponins were evaluated under Scanning Electron Microscope. The minimum effective concentration (0.05% in spot test) did not affect the surface topography after exposure for 1 minute. However, incubation of spermatozoa for 10 minutes resulted in extensive vesiculation and disruption of plasma membrane in the head region. Higher concentrations (0.1%, 1.25%, 2.5% and 5.0%) caused more or less similar changes which included vesiculation, vacuolation, disruption or erosion of membranes in the head region. These findings suggest that the morphological changes observed are due to alterations in the glycoproteins associated with the lipid bilayer of plasma membrane of spermatozoa.

Humans

Effect of antiandrogens on some key enzymes of glycolysis in epididymis and ventral prostate of rat.

Effect of three antiandrogens: cyproterone acetate (5 mg/day, sc), flutamide (5 mg/day, sc) and STS-557 (5 mg/day, po) and an estrogen, estradiol dipropionate (5 micrograms/day, sc) on some key enzymes of carbohydrate metabolism was investigated in adult rat epididymis and ventral prostate. Antiandrogens were administered for 21 days and estrogen for 14 days. All of them caused a significant decrease in the weight of epididymis, seminal vesicles and ventral prostate. A significant decrease in the specific activities of enzymes (hexokinase, phosphofructokinase, aldolase, glyceraldehyde phosphate dehydrogenase, pyruvate kinase, glucose-6-phosphate dehydrogenase and 6-phosphogluconate dehydrogenase) occurred only in the organs of estrogen treated rats; activities of some of the enzymes were lowered also in the prostate of STS-557 treated rats. Flutamide and cyproterone acetate were ineffective in this regard. The possible factors responsible for the ineffectiveness of synthetic antiandrogens in influencing epididymal metabolism are discussed.

Androgen Antagonists

Evaluation of STS-557 as an oral contraceptive in male rat.

To examine the nature and site of post-testicular antifertility action of STS-557 (17 alpha-cyanomethyl-17 beta-hydroxy-estra-4,9-dien-3-one), male rats were given the steroid orally daily for 60 days. In doses of 1 and 5 mg per animal per day it had no effect on fertility at the end of 3 weeks of treatment. When the treatment was extended for 60 days, spermatogenic arrest and loss of libido were evident in animals treated with 5 mg dose; animals receiving 1 mg dose of steroid showed no decrease of spermatogenesis or sexual activity and their fertility remained unaffected. In 35-day-old growing rats the steroid produced inconsistent effects on spermatogenesis after a 15-day treatment period at 1 and 5 mg doses. Both in adult and in growing rats the steroid caused a significant reduction in the weights and secretory function of the epididymis and other accessory sex organs; a dose-dependent response was seen in all the sex organs. Evaluation in castrated rat model revealed that STS-557 is a weak anti-androgen. Although this steroid is a potent inhibitor of spermatogenesis, its inhibitory effect on Leydig cell function is a contraindication for its use as a male oral contraceptive.

Animals

Studies in antifertility agents. 50. Stereoselective binding of d- and l-centchromans to estrogen receptors and their antifertility activity.

Centchroman [dl-3,4-trans-2,2-dimethyl-3-phenyl-4-[p-(beta-pyrrolidinoethoxy)phenyl] - 7-methoxychroman hydrochloride], an antifertility agent under clinical evaluation, has been resolved into its optical enantiomers. The cytosol estrogen receptor binding affinity and estrogenic, antiestrogenic and antiimplantation activities of the two enantiomers have been determined. The enantiomers display a 7-fold difference in receptor affinity, and a corresponding difference in stimulation of the uterine growth and antiimplantation activity was observed in rats.

Animals

Testicular regulation and sub-cellular distribution of zinc in the epididymis and vas deferens of rhesus monkey (Macaca mulatta).

The zinc concentration in the epididymis (caput, corpus and cauda regions), vas deferens and caudal lobe of prostate of adult rhesus monkeys was determined by atomic absorption spectrophotometry. Zinc content (microgram/g wet weight) was found to be maximum in the prostate (709 micrograms) followed by epididymis and vas deferens. The three segments of the epididymis did not differ from one another in their zinc content (165-177 micrograms). On a protein basis maximum concentration of zinc was present in the nuclear fraction followed by microsomal, cytosolic and mitochondrial fractions in that order. Ligation of testicular efferent ducts or castration 90 days prior to autopsy caused a marked reduction in zinc concentration in different sub-cellular fractions of the organs examined; castration was relatively more effective in this regard. The importance of androgen and other testicular products in controlling zinc content and the possible physiological role of zinc in the male genital tract are discussed.

Animals

Biological response of the rat epididymis to estrogen.

The possible physiological role of estrogen in the epididymis and ventral prostate of rat was investigated. In prepubertal rats castrated for 7 days, treatment with estradiol (1.0 micrograms) for 7 days (35-day-old at autopsy) resulted in a marked increase in the weight and content of glyceryl-phosphorylcholine and sialic acid in the epididymis; estradiol and dihydrotestosterone were equipotent in causing an increase in sialic acid concentration. Estradiol showed a synergistic effect in influencing the androgen action on the growth of the prepubertal rat prostate while no such synergism was evident in stimulating the secretory function of the epididymis. The duality of epididymal response to the two sex steroids suggests that the two hormones may be acting in concert at physiological levels as regulators of epididymal secretory function; the need for identifying estrogen specific biochemical indices in the epididymis is discussed.

Animals