SMTP-44D Exerts Antioxidant and Anti-Inflammatory Effects through Its Soluble Epoxide Hydrolase Inhibitory Action in Immortalized Mouse Schwann Cells upon High Glucose Treatment

Int J Mol Sci. 2022 May 6;23(9):5187. doi: 10.3390/ijms23095187.

Abstract

Diabetic neuropathy (DN) is a major complication of diabetes mellitus. We have previously reported the efficacy of Stachybotrys microspora triprenyl phenol-44D (SMTP-44D) for DN through its potential antioxidant and anti-inflammatory activities. However, the mechanisms underlying the antioxidant and anti-inflammatory activities of SMTP-44D remain unclear. The present study aimed to explore the mechanism of these effects of SMTP-44D in regard to its inhibition of soluble epoxide hydrolase (sEH) in immortalized mouse Schwann cells (IMS32) following high glucose treatment. IMS32 cells were incubated in a high glucose medium for 48 h and then treated with SMTP-44D for 48 h. After incubation, the ratio of epoxyeicosatrienoic acids (EETs) to dihydroxyeicosatrienoic acids (DHETs), oxidative stress markers, such as NADPH oxidase-1 and malondialdehyde, inflammatory factors, such as the ratio of nuclear to cytosolic levels of NF-κB and the levels of IL-6, MCP-1, MMP-9, the receptor for the advanced glycation end product (RAGE), and apoptosis, were evaluated. SMTP-44D treatment considerably increased the ratio of EETs to DHETs and mitigated oxidative stress, inflammation, RAGE induction, and apoptosis after high glucose treatment. In conclusion, SMTP-44D can suppress the induction of apoptosis by exerting antioxidant and anti-inflammatory effects, possibly through sEH inhibition. SMTP-44D can be a potential therapeutic agent against DN.

Keywords: IMS32; SMTP; SMTP-44D; Schwann cell; anti-inflammatory; antioxidant; diabetic neuropathy; epoxyeicosatrienoic acid; soluble epoxide hydrolase.

MeSH terms

  • Animals
  • Anti-Inflammatory Agents / pharmacology
  • Anti-Inflammatory Agents / therapeutic use
  • Antioxidants* / pharmacology
  • Antioxidants* / therapeutic use
  • Diabetic Neuropathies* / drug therapy
  • Epoxide Hydrolases
  • Glucose
  • Mice
  • Phenol
  • Phenols / pharmacology
  • Schwann Cells
  • Stachybotrys

Substances

  • Anti-Inflammatory Agents
  • Antioxidants
  • Phenols
  • Phenol
  • Epoxide Hydrolases
  • Glucose

Supplementary concepts

  • Stachybotrys microspora

Grants and funding

This research was supported by the Showa University Research Grant for Young Researchers at Showa University, Japan.