Age-Related Changes in Testes, Seminal Vesicles and Plasma Testosterone Levels in Male Mice

Gerontology ◽  
1974 ◽  
Vol 20 (4) ◽  
pp. 231-238 ◽  
Author(s):  
B.E. Eleftheriou ◽  
L.A. Lucas
The Condor ◽  
1990 ◽  
Vol 92 (1) ◽  
pp. 166-173 ◽  
Author(s):  
Martin L. Morton ◽  
Linda E. Peterson ◽  
Douglas M. Burns ◽  
Noella Allan

1974 ◽  
Vol 60 (1) ◽  
pp. 145-148 ◽  
Author(s):  
A. BARTKE

SUMMARY In male mice of the C57BL/10J (C57) strain the testicular weight, sex drive and aggression are low compared with a number of other strains, indicating androgen deficiency. In contrast, DBA/2J (DBA) males were 'normal' in all studied parameters of testicular function. The weight of the seminal vesicles is similar in both strains. Plasma testosterone levels, and the responsiveness of the seminal vesicles to injected testosterone propionate in C57 and DBA animals were compared. Plasma testosterone levels were 1·3 ± 0·4 ng/ml in C57 and 4·6 ± 1·0 ng/ml in DBA mice. The increase in weight of the seminal vesicles after administration of testosterone propionate to castrated male mice was, however, considerably greater in C57 than in DBA mice. In order to restore the weight of the seminal vesicles to normal it was necessary to administer twice as much testosterone propionate to DBA than to C57 males.


1972 ◽  
Vol 54 (2) ◽  
pp. 285-296 ◽  
Author(s):  
B. J. LLOYD

SUMMARY Plasma testosterone concentration and the weights of the seminal vesicles and ventral prostate gland were measured in normal and cryptorchid Fischer rats at 3, 4·5, 7·5 and 13·5 months of age, and in normal parabionts and cryptorchid parabionts of 13·5 months of age. Testosterone was measured individually by a protein-binding method. In normal rats, all parameters rose to a maximum at 7·5 months of age, then levelled off or declined at 13·5 months of age. In cryptorchid rats, a similar pattern at a lower level was found for accessory sex gland weight, but plasma testosterone levels showed a progressive decline from an above normal level at 3 months to a subnormal level at 13·5 months of age. Cryptorchid parabionts were less responsive to gonadotrophin stimulation from union with a castrated partner than normal parabionts. The present study showed that plasma testosterone levels in normal and cryptorchid rats are age-related. It also showed that the pattern of plasma testosterone levels observed in cryptorchid rats is different from that seen in normal rats. Accessory sex gland weight is also age-related but is not a reliable index of plasma testosterone levels.


1984 ◽  
Vol 22 (6) ◽  
pp. 651-656 ◽  
Author(s):  
Manzoor Ahmad ◽  
M. Latif ◽  
Masood Ahmad ◽  
M.H. Qazi ◽  
N. Sahir ◽  
...  

Endocrinology ◽  
2007 ◽  
Vol 148 (12) ◽  
pp. 6019-6025 ◽  
Author(s):  
Varadaraj Chandrashekar ◽  
Christina R. Dawson ◽  
Eric R. Martin ◽  
Juliana S. Rocha ◽  
Andrzej Bartke ◽  
...  

The somatotropic axis, GH, and IGF-I interact with the hypothalamic-pituitary-gonadal axis in health and disease. GH-resistant GH receptor-disrupted knockout (GHRKO) male mice are fertile but exhibit delayed puberty and decreases in plasma FSH levels, testicular content of LH, and prolactin (PRL) receptors, whereas PRL levels are elevated. Because the lifespan of GHRKO mice is much greater than the lifespan of their normal siblings, it was of interest to compare age-related changes in the hypothalamic-pituitary-gonadal axis in GHRKO and normal animals. Plasma IGF-I, insulin, PRL, LH, FSH, androstenedione and testosterone levels, and acute responses to GnRH and LH were measured in young (2–4 and 5–6 months of age) and old (18–19 and 23–26 months of age) male GHRKO mice and their normal siblings. Plasma IGF-I was not detectable in GHRKO mice. Plasma PRL levels increased with age in normal mice but declined in GHRKO males, and did not differ in old GHRKO and normal animals. Plasma LH responses to acute GnRH stimulation were attenuated in GHRKO mice but increased with age only in normal mice. Plasma FSH levels were decreased in GHRKO mice regardless of age. Plasma testosterone responses to LH stimulation were attenuated in old mice regardless of genotype, whereas plasma androstenedione responses were reduced with age only in GHRKO mice. Testicular IGF-I mRNA levels were normal in young and increased in old GHRKO mice, whereas testicular concentrations and total IGF-I levels were decreased in these animals. These findings indicate that GH resistance due to targeted disruption of the GH receptor gene in mice leads to suppression of testicular IGF-I levels, and modifies the effects of aging on plasma PRL levels and responses of the pituitary and testes to GnRH and LH stimulation. Plasma testosterone levels declined during aging in normal but not in GHRKO mice, and the age-related increase in the LH responses to exogenous GnRH was absent in GHRKO mice, perhaps reflecting a delay of aging in these remarkably long-lived animals.


1974 ◽  
Vol 61 (2) ◽  
pp. 193-198 ◽  
Author(s):  
S. EL SAFOURY ◽  
A. BARTKE

SUMMARY The effects of follicle-stimulating hormone (FSH) and luteinizing hormone (LH) on plasma testosterone levels were examined in hypophysectomized and in intact immature and adult male rats. The animals were injected with saline, LH, FSH, or both gonadotrophins twice daily for 3·5 days and were killed 3 h after the last injection. Plasma testosterone levels were measured by radioimmunoassay. In immature hypophysectomized rats, plasma testosterone levels were not changed by treatment with LH, FSH or LH plus FSH. The weight of the testes and of the seminal vesicles was increased only in animals injected with both LH and FSH. In adult hypophysectomized rats, LH caused the expected increase in plasma testosterone levels, while FSH injected alone had no effect. Plasma testosterone levels in rats treated with 5 μg LH and 20 μg FSH were significantly greater than those in animals given 5 μg LH alone. However, the same dose of FSH did not potentiate the action of 25 μg LH on plasma testosterone levels. In adult hypophysectomized rats the weight of testes was not affected by any of the treatments. The weight of the seminal vesicles was increased by the higher dose of LH and addition of FSH caused no further increase. In intact immature and adult rats plasma testosterone levels and the weight of testes were not changed by any of the treatments. Seminal vesicle weight was increased only in adult rats treated with the higher dose of LH together with FSH. The results demonstrate that FSH potentiates the action of low doses of LH on plasma testosterone levels in adult hypophysectomized rats and suggest that FSH may be involved in the regulation of androgen secretion by the rat testis.


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