Related Experiment Video
Updated: Dec 18, 2025

Molecular Modulation by Lentivirus-Delivered Specific shRNAs in Endoplasmic Reticulum Stressed Neurons
Published on: April 24, 2021
Methamphetamine induces GSDME-dependent cell death in hippocampal neuronal cells through the endoplasmic reticulum
Yi Liu1, Di Wen1, Jingqi Gao1
1College of Forensic Medicine, Hebei Medical University, Hebei Key Laboratory of Forensic Medicine, Collaborative Innovation Center of Forensic Medical Molecular Identification, Shijiazhuang, PR China.
Abstract:
Methamphetamine (METH) is an illegal amphetamine-typed psychostimulant that is abused worldwide and causes serious public health problems. METH exposure induces apoptosis and autophagy in neuronal cells. However, the role of pyroptosis in METH-induced neurotoxicity is still unclear. Here, we investigate whether pyroptosis is involved in METH-induced hippocampal neurotoxicity and the potential mechanisms of Endoplasmic reticulum (ER) stress in hippocampal neuronal cells. For this purpose, the expression levels of pyroptosis-related proteins, GSDMD and GSDME, were analyzed by immunoblotting and immunohistochemistry in the hippocampal neuron cell line HT-22. Next, we explored METH-induced pyroptosis in HT-22 using immunoblotting, LDH assays and SYTOX green acid staining. Further, the relationship between pyroptosis and ER stress in METH-induced hippocampal neuron damage was studied in HT-22 cells using inhibitors including TUDCA, a specific inhibitor of ER stress, GSK-2656157, a PERK pathway inhibitor and STF-0803010, an inhibitor of IRE1α endoribonuclease activity. This relationship was also studied using siRNAs, including siTRAF2, an siRNA against IRE1α kinase activity and siATF6 against the ATF6 pathway, which were analyzed by immunoblotting, LDH assays and SYTOX green acid staining. GSDME but not GSDMD was found to be expressed in HT-22 cells. METH treatment induced the upregulation of cleaved GSDME-NT and LDH release, as well as the increase of SYTOX green positive cells in HT-22 cells, which was partly reversed by inhibitors and siRNAs, indicating that the ER stress signaling pathway was involved in GSDME-dependent cell death induced by METH. In summary, these results revealed that METH induced ER stress that mediated GSDME-dependent cell death in hippocampal neuronal cells. These findings provide novel insight into the mechanisms of METH-induced neurotoxicity.
Insights
Methamphetamine (METH) causes neurotoxicity by inducing pyroptosis, a form of programmed cell death, in hippocampal neurons. Endoplasmic reticulum stress mediates this GSDME-dependent cell death, offering new insights into METH
Area of Science:
- Neuroscience
- Cell Biology
- Toxicology
Background:
- Methamphetamine (METH) abuse causes significant public health issues, inducing neurotoxicity through apoptosis and autophagy.
- The role of pyroptosis, a distinct inflammatory cell death pathway, in METH-induced neurotoxicity remains largely uncharacterized.
- Understanding METH's impact on hippocampal neurons is crucial for addressing its neurological consequences.
Purpose of the Study:
- To investigate the involvement of pyroptosis in METH-induced hippocampal neurotoxicity.
- To elucidate the potential mechanisms of Endoplasmic reticulum (ER) stress in METH-induced hippocampal neuronal cell death.
- To determine the specific pyroptosis pathway activated by METH in hippocampal neurons.
Main Methods:
- Analyzed pyroptosis-related proteins (GSDMD, GSDME) in HT-22 hippocampal cells using immunoblotting and immunohistochemistry.
- Assessed METH-induced pyroptosis via immunoblotting, lactate dehydrogenase (LDH) assays, and SYTOX green staining.
- Investigated the interplay between pyroptosis and ER stress using specific inhibitors (TUDCA, GSK-2656157, STF-0803010) and siRNAs (siTRAF2, siATF6).
Main Results:
- GSDME, but not GSDMD, was expressed in HT-22 cells.
- METH treatment upregulated cleaved GSDME-N-terminus (GSDME-NT), increased LDH release, and elevated SYTOX green positive cells.
- ER stress inhibitors and siRNAs partially reversed METH-induced GSDME-dependent cell death, indicating ER stress pathway involvement.
Conclusions:
- Methamphetamine induces pyroptosis in hippocampal neurons, specifically via the GSDME pathway.
- Endoplasmic reticulum stress is a key mediator of METH-induced GSDME-dependent cell death in hippocampal neurons.
- These findings reveal a novel mechanism underlying METH neurotoxicity, highlighting the ER stress-pyroptosis axis.

