AI Article Synopsis

  • ACE inhibitors (ACEi) like captopril and enalapril impact the transformation of angiotensin I to angiotensin II and affect the levels of substance P (SP) and bradykinin (BK) in astrocytes, which are star-shaped cells in the brain.
  • The study shows that treatment with these ACE inhibitors leads to higher levels of SP and BK in cultured astrocytes while also causing an increase in the PKCβI isoform, a protein involved in cell signaling.
  • These changes are influenced by the activation of SP and BK receptors, indicating that ACE inhibition can alter cellular signaling in the brain's support cells, potentially affecting pain signaling pathways.

Article Abstract

Background: Angiotensin-converting enzyme inhibitor (ACEi) inhibits the catalysis of angiotensin I to angiotensin II and the degradation of substance P (SP) and bradykinin (BK). While the possible relationship between ACEi and SP in nociceptive mice was recently suggested, the effect of ACEi on signal transduction in astrocytes remains unclear.

Objectives: This study examined whether ACE inhibition with captopril or enalapril modulates the levels of SP and BK in primary cultured astrocytes and whether this change modulates PKC isoforms (PKCα, PKCβI, and PKCε) expression in cultured astrocytes.

Methods: Immunocytochemistry and Western blot analysis were performed to examine the changes in the levels of SP and BK and the expression of the PKC isoforms in primary cultured astrocytes, respectively.

Results: The treatment of captopril or enalapril increased the immunoreactivity of SP and BK significantly in glial fibrillary acidic protein-positive cultured astrocytes. These increases were suppressed by a pretreatment with an angiotensin-converting enzyme. In addition, treatment with captopril increased the expression of the PKCβI isoform in cultured astrocytes, while there were no changes in the expression of the PKCα and PKCε isoforms after the captopril treatment. The captopril-induced increased expression of the PKCβI isoform was inhibited by a pretreatment with the neurokinin-1 receptor antagonist, L-733,060, the BK B receptor antagonist, R 715, or the BK B receptor antagonist, HOE 140.

Conclusions: These results suggest that ACE inhibition with captopril or enalapril increases the levels of SP and BK in cultured astrocytes and that the activation of SP and BK receptors mediates the captopril-induced increase in the expression of the PKCβI isoform.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10071283PMC
http://dx.doi.org/10.4142/jvs.22275DOI Listing

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