4.6 Article

Renin angiotensin system and gender differences in dopaminergic degeneration

期刊

MOLECULAR NEURODEGENERATION
卷 6, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/1750-1326-6-58

关键词

angiotensin; estrogen; menopause; NADPH-oxidase complex; neurodegeneration; oxidative stress; Parkinson; sex differences

资金

  1. Spanish Ministry of Science and Innovation
  2. Spanish Ministry of Health [RD06/0010/0013, CIBERNED]
  3. Galician Government (XUGA)
  4. FEDER

向作者/读者索取更多资源

Background: There are sex differences in dopaminergic degeneration. Men are approximately two times as likely as premenopausal women of the same age to develop Parkinson's disease (PD). It has been shown that the local renin angiotensin system (RAS) plays a prominent role in sex differences in the development of chronic renal and cardiovascular diseases, and there is a local RAS in the substantia nigra and dopaminergic cell loss is enhanced by angiotensin via type 1 (AT1) receptors. Results: In the present study, we observed that intrastriatal injection of 6-hydroxydopamine induced a marked loss of dopaminergic neurons in the substantia nigra of male rats, which was significantly higher than the loss induced in ovariectomized female rats given estrogen implants (i.e. rats with estrogen). However, the loss of dopaminergic neurons was significantly lower in male rats treated with the AT1 antagonist candesartan, and similar to that observed in female rats with estrogen. The involvement of the RAS in gender differences in dopaminergic degeneration was confirmed with AT1a null mice lesioned with the dopaminergic neurotoxin MPTP. Significantly higher expression of AT1 receptors, angiotensin converting enzyme activity, and NADPH-oxidase complex activity, and much lower levels of AT2 receptors were observed in male rats than in female rats with estrogen. Conclusions: The results suggest that brain RAS plays a major role in the increased risk of developing PD in men, and that manipulation of brain RAS may be an efficient approach for neuroprotective treatment of PD in men, without the feminizing effects of estrogen.

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