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雄性及雄性去势猪血清胸腺素α1和β4的发育变化:睾酮和人绒毛膜促性腺激素的调节作用

Developmental changes of serum thymosin alpha 1 and beta 4 in male and male castrated pigs: modulation by testosterone and human chorionic gonadotropin.

作者信息

Wise T H

机构信息

USDA, ARS, Roman L. Hruska U.S. Meat Animal Research Center, Clay Center, Nebraska 68933-0166.

出版信息

Biol Reprod. 1992 May;46(5):892-7. doi: 10.1095/biolreprod46.5.892.

DOI:10.1095/biolreprod46.5.892
PMID:1591344
Abstract

Thymic secretory peptides thymosin beta 4 and alpha 1 have possible endocrine roles in both immune and reproductive systems; thus, they should respond to endocrine feedback control mechanisms consistent with gonadal function. In an initial experiment, male pigs (boars; n = 90; 10/time) were bled at 1, 3, 6, 12, 18, 24, 30, 36, and 96 wk of age before and 24 h after hCG stimulation. Thymosin beta 4 concentrations were significantly depressed 24 h after hCG challenge. Testosterone concentrations increased with age up to 36 wk and were further increased with hCG stimulation (p less than 0.01). In a subsequent experiment, boars (n = 12) and barrows (males castrated shortly after birth; n = 12) were blood-sampled, administered hCG, and sampled again 24 h later at 1, 3, 6, 12, 18, and 24 wk of age. Barrows (n = 12) were administered testosterone with the same protocol. Testosterone concentrations increased in boars with maturity and were further increased from the hCG stimulation (p less than 0.01). Thymosin beta 4 concentrations decreased with age in boars and barrows (p less than 0.01), and hCG challenge depressed thymosin alpha 1 and beta 4 concentrations in boars and thymosin beta 4 in barrows (p less than 0.01). Testosterone treatment of barrows also depressed thymosin beta 4 and alpha 1 in barrows (p less than 0.01). The depression of thymosins by hCG treatment points to a role for gonadotropins in altering circulating thymosin concentrations independent of, but in conjunction with, the effect of gonadal steroids.

摘要

胸腺分泌的肽类物质胸腺素β4和α1在免疫和生殖系统中可能具有内分泌作用;因此,它们应该对与性腺功能一致的内分泌反馈控制机制做出反应。在最初的实验中,雄性猪(公猪;n = 90;每组10头)在1、3、6、12、18、24、30、36和96周龄时,于hCG刺激前和刺激后24小时采血。hCG刺激后24小时,胸腺素β4浓度显著降低。睾酮浓度随年龄增长至36周而升高,且经hCG刺激后进一步升高(p < 0.01)。在随后的实验中,对公猪(n = 12)和阉猪(出生后不久阉割的雄性;n = 12)在1、3、6、12、18和24周龄时进行采血、给予hCG,并在24小时后再次采血。按照相同方案给12头阉猪注射睾酮。公猪的睾酮浓度随成熟度增加,且经hCG刺激后进一步升高(p < 0.01)。公猪和阉猪的胸腺素β4浓度均随年龄降低(p < 0.01),hCG刺激使公猪的胸腺素α1和β4浓度以及阉猪的胸腺素β4浓度降低(p < 0.01)。对阉猪进行睾酮处理也使阉猪的胸腺素β4和α1浓度降低(p < 0.01)。hCG处理导致胸腺素降低,这表明促性腺激素在改变循环胸腺素浓度方面发挥作用,这种作用独立于性腺类固醇的作用,但与之协同。

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