4.5 Article

Regional and sex differences in spontaneous striatal dopamine transmission

期刊

JOURNAL OF NEUROCHEMISTRY
卷 160, 期 6, 页码 598-612

出版社

WILEY
DOI: 10.1111/jnc.15473

关键词

accumbens; cocaine; dopamine; Kv channels; sex differences; striatum

资金

  1. US National Institutes of Health (NIH) [DA040409, AA020919, DA035958, R00 DA04510, P50 DA006634, R01 DA048490, U01 AA014091]
  2. Brain and Behavior Research Foundation
  3. Alkermes
  4. Brigham Young University College of Life Sciences

向作者/读者索取更多资源

Striatal dopamine release dynamics differ across sexes, with female mice showing less regional differences in dopamine release compared to male mice. Blocking voltage-gated K+ channels with 4-aminopyridine had the greatest effects in ventral regions of female mice, indicating regional differences in Kv channel expression. The dopamine transporter blocker cocaine enhanced detection across subregions in both sexes, with females showing greater overall increased release than males.
Striatal dopamine release is key for learning and motivation and is composed of subregions including the dorsal striatum (DS), nucleus accumbens core, and the nucleus accumbens shell. Spontaneously occurring dopamine release was compared across these subregions. Dopamine release/uptake dynamics differ across striatal subregions, with dopamine transient release amplitude and release frequency greatest in male mice, and the largest signals observed in the DS. Surprisingly, female mice exhibited little regional differences in dopamine release for DS and nucleus accumbens core regions, but lower release in the nucleus accumbens shell. Blocking voltage-gated K+ channel (Kv channels) with 4-aminopyridine enhanced dopamine detection without affecting reuptake. The 4-aminopyridine effects were greatest in ventral regions of female mice, suggesting regional differences in Kv channel expression. The dopamine transporter blocker cocaine also enhanced detection across subregions in both sexes, with greater overall increased release in females than males. Thus, sex differences in dopamine transmission are apparent and likely include differences in the Kv channel and dopamine transporter function. The lack of regional differences in dopamine release observed in females indicates differential regulation of spontaneous and evoked dopamine release.

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