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Novel Mechanistic Insights and Potential Therapeutic Impact of TRPC6 in Neurovascular Coupling and Ischemic Stroke.

Publication ,  Journal Article
Shekhar, S; Liu, Y; Wang, S; Zhang, H; Fang, X; Zhang, J; Fan, L; Zheng, B; Roman, RJ; Wang, Z; Fan, F; Booz, GW
Published in: Int J Mol Sci
February 19, 2021

Ischemic stroke is one of the most disabling diseases and a leading cause of death globally. Despite advances in medical care, the global burden of stroke continues to grow, as no effective treatments to limit or reverse ischemic injury to the brain are available. However, recent preclinical findings have revealed the potential role of transient receptor potential cation 6 (TRPC6) channels as endogenous protectors of neuronal tissue. Activating TRPC6 in various cerebral ischemia models has been found to prevent neuronal death, whereas blocking TRPC6 enhances sensitivity to ischemia. Evidence has shown that Ca2+ influx through TRPC6 activates the cAMP (adenosine 3',5'-cyclic monophosphate) response element-binding protein (CREB), an important transcription factor linked to neuronal survival. Additionally, TRPC6 activation may counter excitotoxic damage resulting from glutamate release by attenuating the activity of N-methyl-d-aspartate (NMDA) receptors of neurons by posttranslational means. Unresolved though, are the roles of TRPC6 channels in non-neuronal cells, such as astrocytes and endothelial cells. Moreover, TRPC6 channels may have detrimental effects on the blood-brain barrier, although their exact role in neurovascular coupling requires further investigation. This review discusses evidence-based cell-specific aspects of TRPC6 in the brain to assess the potential targets for ischemic stroke management.

Duke Scholars

Published In

Int J Mol Sci

DOI

EISSN

1422-0067

Publication Date

February 19, 2021

Volume

22

Issue

4

Location

Switzerland

Related Subject Headings

  • TRPC6 Cation Channel
  • Neurovascular Coupling
  • Neurons
  • Models, Biological
  • Ischemic Stroke
  • Humans
  • Chemical Physics
  • Animals
  • 3404 Medicinal and biomolecular chemistry
  • 3107 Microbiology
 

Citation

APA
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ICMJE
MLA
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Shekhar, S., Liu, Y., Wang, S., Zhang, H., Fang, X., Zhang, J., … Booz, G. W. (2021). Novel Mechanistic Insights and Potential Therapeutic Impact of TRPC6 in Neurovascular Coupling and Ischemic Stroke. Int J Mol Sci, 22(4). https://doi.org/10.3390/ijms22042074
Shekhar, Shashank, Yedan Liu, Shaoxun Wang, Huawei Zhang, Xing Fang, Jin Zhang, Letao Fan, et al. “Novel Mechanistic Insights and Potential Therapeutic Impact of TRPC6 in Neurovascular Coupling and Ischemic Stroke.Int J Mol Sci 22, no. 4 (February 19, 2021). https://doi.org/10.3390/ijms22042074.
Shekhar S, Liu Y, Wang S, Zhang H, Fang X, Zhang J, et al. Novel Mechanistic Insights and Potential Therapeutic Impact of TRPC6 in Neurovascular Coupling and Ischemic Stroke. Int J Mol Sci. 2021 Feb 19;22(4).
Shekhar, Shashank, et al. “Novel Mechanistic Insights and Potential Therapeutic Impact of TRPC6 in Neurovascular Coupling and Ischemic Stroke.Int J Mol Sci, vol. 22, no. 4, Feb. 2021. Pubmed, doi:10.3390/ijms22042074.
Shekhar S, Liu Y, Wang S, Zhang H, Fang X, Zhang J, Fan L, Zheng B, Roman RJ, Wang Z, Fan F, Booz GW. Novel Mechanistic Insights and Potential Therapeutic Impact of TRPC6 in Neurovascular Coupling and Ischemic Stroke. Int J Mol Sci. 2021 Feb 19;22(4).

Published In

Int J Mol Sci

DOI

EISSN

1422-0067

Publication Date

February 19, 2021

Volume

22

Issue

4

Location

Switzerland

Related Subject Headings

  • TRPC6 Cation Channel
  • Neurovascular Coupling
  • Neurons
  • Models, Biological
  • Ischemic Stroke
  • Humans
  • Chemical Physics
  • Animals
  • 3404 Medicinal and biomolecular chemistry
  • 3107 Microbiology