Literature DB >> 2086576

The testicular and epididymal luminal amino acid microenvironment in the rat.

B T Hinton1.   

Abstract

Concentrations of amino acids were measured in arterial and testicular venous blood, and in fluids from the seminiferous tubule, rete testis, and the caput, corpus, and cauda epididymidis. There were no significant differences in the concentrations of any amino acids between arterial and testicular venous blood, whereas there were significant differences between arterial/venous blood and testicular interstitial fluid. The predominant amino acids measured within seminiferous tubule fluid (STF) and rete testis fluid (RTF) were glycine, alanine, glutamate, and glutamine. RTF contained approximately equal concentrations of basic and total amino acids, but 17 times higher acidic amino acids and 1.2 and 1.3 times lower uncharged polar and nonpolar amino acids, respectively, compared to STF. The concentration of total amino acids within caput fluid reached over 50 nmol/L, but then declined to approximately 50% and 0.1% of caput for corpus and cauda, respectively. The predominant amino acids measured within epididymal luminal fluids were glutamate and taurine; glutamate contributed to approximately 90% of the total amino acids measured in caput fluid. The presence of glutamate and taurine within the epididymal lumen is due primarily to a direct contribution from the epididymal epithelium, as measured using the split-drop stopped-flow microperfusion technique. Several other amino acids within the lumen also originate from the epididymal epithelium. Amino acids contribute approximately 20%, 9%, and 2% of the total osmolality of caput, corpus, and cauda fluid, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1990        PMID: 2086576

Source DB:  PubMed          Journal:  J Androl        ISSN: 0196-3635


  12 in total

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Journal:  Asian J Androl       Date:  2010-12-20       Impact factor: 3.285

4.  Null mutation of the transcription factor inhibitor of DNA binding 3 (id3) affects spermatozoal motility parameters and epididymal gene expression in mice.

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5.  Effects of taurine on male reproduction in rats of different ages.

Authors:  Jiancheng Yang; Gaofeng Wu; Ying Feng; Qiufeng Lv; Shumei Lin; Jianmin Hu
Journal:  J Biomed Sci       Date:  2010-08-24       Impact factor: 8.410

6.  Genetic ablations of iron regulatory proteins 1 and 2 reveal why iron regulatory protein 2 dominates iron homeostasis.

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7.  Cysteine dioxygenase is essential for mouse sperm osmoadaptation and male fertility.

Authors:  Atsushi Asano; Heather B Roman; Lawrence L Hirschberger; Ai Ushiyama; Jacquelyn L Nelson; Meleana M Hinchman; Martha H Stipanuk; Alexander J Travis
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8.  A critical role of solute carrier 22a14 in sperm motility and male fertility in mice.

Authors:  Shin-Ya Maruyama; Momoe Ito; Yuusuke Ikami; Yu Okitsu; Chizuru Ito; Kiyotaka Toshimori; Wataru Fujii; Keiichiro Yogo
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9.  Effect of glutamine supplementation and replacement of tris-egg yolk based extender with defatted cow milk on spermatozoa quality after equilibration and thawing.

Authors:  Vasundhara Dawra; Brijesh Yadav; Sarvajeet Yadav
Journal:  Vet World       Date:  2015-08-26

Review 10.  Is the Epididymis a Series of Organs Placed Side By Side?

Authors:  Raquel F Domeniconi; Ana Cláudia Ferreira Souza; Bingfang Xu; Angela M Washington; Barry T Hinton
Journal:  Biol Reprod       Date:  2016-04-27       Impact factor: 4.285

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