Matrine-induced nephrotoxicity via GSK-3β/nrf2-mediated mitochondria-dependent apoptosis

Tianyang Wang1, Jian Zhang1, Haokai Wei1

  • 1School of Medicine, Yichun University, 576 XueFu Road, Yuanzhou District, Yichun, 336000, PR China.

Abstract

Insights

Matrine causes kidney toxicity through oxidative stress and mitochondrial dysfunction. Inhibiting GSK-3β or activating Nrf2 may protect against this damage.

Area of Science:

  • Toxicology
  • Mitochondrial Biology
  • Cellular Signaling

Background:

  • Matrine (MT), derived from Sophora flavescens, is linked to nephrotoxicity from prolonged exposure.
  • The precise mechanisms of MT-induced kidney injury are not fully understood.
  • This study investigates the roles of oxidative stress and mitochondria in MT toxicity.

Purpose of the Study:

  • To elucidate the mechanisms of Matrine-induced kidney toxicity.
  • To explore the involvement of oxidative stress and mitochondrial dysfunction.
  • To identify potential therapeutic targets for mitigating Matrine nephrotoxicity.

Main Methods:

  • In vivo study: Mice exposed to Matrine for 20 days.
  • In vitro study: NRK-52E cells treated with Matrine, LiCl (GSK-3β inhibitor), t-BHQ (Nrf2 activator), or siRNA.
  • Assessment of reactive oxygen species (ROS), mitochondrial function, apoptosis markers, and key protein expressions.

Main Results:

  • Matrine induced nephrotoxicity, increased ROS, and impaired mitochondrial function.
  • MT upregulated GSK-3β activity, released cytochrome c, and activated caspase-3.
  • MT decreased Nrf2 activity and reduced antioxidant enzyme expression (HO-1, NQO-1), promoting apoptosis.
  • GSK-3β inhibition or Nrf2 activation attenuated Matrine's toxic effects.

Conclusions:

  • Matrine-induced apoptosis contributes to kidney toxicity.
  • GSK-3β and Nrf2 are identified as potential nephroprotective targets against Matrine injury.