4.0 Article

Aging-Induced Modulation of Pituitary Adenylate Cyclase-Activating Peptide- and Vasoactive Intestinal Peptide-Induced Vasomotor Responses in the Arteries of Mice

期刊

JOURNAL OF VASCULAR RESEARCH
卷 54, 期 6, 页码 359-366

出版社

KARGER
DOI: 10.1159/000481781

关键词

PACAP-KO mice; Neuropeptides; Carotid artery; Relaxation

资金

  1. Hungarian National Science Research Fund (OTKA) [K115874, K104984, K119759, KTIA_13_NAP-A-III/5, GINOP-2.3.2-15-2016-00050]
  2. PTE AOK KA Research Grant [EFOP-3.6.1.-16-2016-00004]
  3. Comprehensive Development for Implementing Smart Specialization Strategies at the University of Pecs
  4. Janos Bolyai Scholarship
  5. New Excellence Program
  6. New National Excellence Program of the Ministry of Human Capacities [UNKP-16-4-IV]
  7. University of Pecs Medical School [PTE-AOK-KA-2015-14]
  8. MTA-TKI
  9. FP7 Marie Sklodowska Curie Project-Small Artery Remodeling (SmART) ITN
  10. JSPS KAKENHI [JP26293020, JP17H03989]
  11. SRPBS and Brain/MINDS from AMED
  12. Magyary Zoltan Funds by Hungarian Academy of Science
  13. European Union
  14. State of Hungary
  15. European Social Fund in the framework of TAMOP [4.2.4. A/2-11-1-2012-0001]
  16. [OTKA K108444]
  17. Grants-in-Aid for Scientific Research [26293020] Funding Source: KAKEN

向作者/读者索取更多资源

Pituitary adenylate cyclase-activating peptide (PACAP; 1-38 and 1-27) and vasoactive intestinal peptide (VIP) are related neuropeptides of the secretin/glucagon family. Overlapping signaling through G-protein-coupled receptors mediates their vasomotor activity. We previously showed that PACAP deficiency (PACAP-KO) shifts the mechanisms of vascular response and maintains arterial relaxation through the VIP backup mechanism and (mainly) its VPAC1R, but their agedependent modulation is still unknown. We hypothesized that backup mechanisms exist, which maintain the vasomotor activity of these peptides also in older age. Thus, we investigated the effects of exogenous VIP and PACAP peptides in isolated carotid arteries of 2-and 15-month-old wild-type (WT) and PACAP-KO mice. All peptides induced relaxation in the arteries of young WT mice, whereas in young PACAP-KO mice PACAP1-27 and VIP, but not PACAP1-38, induced relaxation. Unlike VIP, PACAP-induced vasomotor responses were reduced in aging WT mice. However, in the arteries of aging PACAP-KO mice, PACAP1-27-and VIP-induced responses were reduced, but PACAP1-38 showed a greater vasomotor response compared to that of young PACAP-KO animals. There were no significant differences between the vasomotor responses of aging WT and PACAP-KO mice. Our data suggest that, in the absence of PACAP both in young and old ages, the vascular response is mediated through backup mechanisms, most likely VIP, maintaining proper vascular relaxation in aging-induced PACAP insufficiency. (c) 2017 S. Karger AG, Basel

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