Related Experiment Video
Updated: Aug 20, 2025

Simultaneous Measurements of Intracellular Calcium and Membrane Potential in Freshly Isolated and Intact Mouse Cerebral Endothelium
Published on: January 20, 2019
Aging-Induced Down-Regulation of PKA/BKCa Pathway in Rat Cerebral Arteries
1Perinatal Medicine Laboratory, The Affiliated Wuxi Maternity and Child Health Care Hospital of Jiangnan University, Wuxi, Jiangsu, China. 52smrehab@163.com.
Abstract:
The incidence of cerebrovascular diseases increases significantly with aging. This study aimed to test the hypothesis that aging may influence the protein kinase A (PKA)-dependent vasodilation via RyR/BKCa pathway in the middle cerebral arteries (MCA). Male Sprague-Dawley rats were randomly divided into control (4-6 month-old) and aged (24-month-old) groups. The functions of MCA and ion channel activities in smooth muscle cells were examined using myograph system and patch-clamp. Aging decreased the isoproterenol/forskolin-induced relaxation in the MCA. Large-conductance Ca(2+)-activated-K(+) (BKCa) channel inhibitor, iberiotoxin, significantly attenuated the forskolin-induced vasodilatation and hyperpolarization in the young group, but not in the aged group. The amplitude and frequency of spontaneous transient outward currents (STOCs) were significantly decreased in the aged group. Single channel recording revealed that the mean open time of BKCa channels were decreased, while an increased mean closed time of BKCa channels were found in the aged group. The Ca(2+)/voltage sensitivity of the channels was decreased accompanied by reduced BKCa alpha and beta1-subunit, the expression of RyR2, PKA-Calpha and PKA-Cbeta subunits were also declined in the aged group. Aging induced down-regulation of PKA/BKCa pathway in cerebral artery in rats. The results provides new information on further understanding in cerebrovascular diseases resulted from age-related cerebral vascular dysfunction.
Insights
Aging impairs protein kinase A (PKA)-dependent vasodilation in rat middle cerebral arteries by down-regulating the RyR/BKCa pathway, contributing to cerebrovascular dysfunction.
Area of Science:
- Neuroscience
- Cardiovascular Biology
- Gerontology
Background:
- Cerebrovascular diseases incidence rises with age.
- Aging may affect protein kinase A (PKA)-dependent vasodilation through the RyR/BKCa pathway in middle cerebral arteries (MCA).
Purpose of the Study:
- To investigate the impact of aging on PKA-dependent vasodilation via the RyR/BKCa pathway in rat MCA.
- To elucidate the mechanisms of age-related cerebral vascular dysfunction.
Main Methods:
- Comparison of MCA function and smooth muscle cell ion channel activity between young (4-6 months) and aged (24 months) rats.
- Utilized myograph system and patch-clamp techniques.
- Examined protein expression of key pathway components.
Main Results:
- Aging reduced isoproterenol/forskolin-induced relaxation in MCA.
- Iberiotoxin affected forskolin-induced vasodilation and hyperpolarization in young but not aged rats.
- Aged rats showed decreased spontaneous transient outward currents (STOCs), altered BKCa channel kinetics, and reduced expression of BKCa, RyR2, and PKA subunits.
Conclusions:
- Aging down-regulates the PKA/BKCa pathway in rat cerebral arteries.
- This age-related pathway dysfunction contributes to cerebrovascular diseases.

