Related Experiment Video
Updated: Jul 18, 2025

Using Human Induced Pluripotent Stem Cell-derived Hepatocyte-like Cells for Drug Discovery
Published on: May 19, 2018
STA9090 as a Potential Therapeutic Agent for Liver Fibrosis by Modulating the HSP90/TβRII/Proteasome Interplay: Novel
Osama A Mohammed1, Mustafa Ahmed Abdel-Reheim2,3, Mohannad Mohammad S Alamri4
1Department of Clinical Pharmacology, College of Medicine, University of Bisha, Bisha 61922, Saudi Arabia.
Abstract:
Liver fibrosis is a progressive condition characterized by the build-up of fibrous tissue resulting from long-term liver injury. Although there have been advancements in research and treatment, there is still a need for effective antifibrotic medication. HSP90 plays a crucial role in the development of fibrosis. It acts as a molecular chaperone that assists in the proper folding and stability of TβRII, potentially regulating the signaling of TGF-β1. It has been established that TβRII can be degraded through the proteasome degradation system, either via ubiquitination-dependent or -independent pathways. In the present study, STA9090 demonstrated promising effects in both in vitro and in vivo models. It reduced LDH leakage, prolonged the survival rate of hepatocytes in rats with liver fibrosis, and improved liver function. Importantly, STA9090 exerted pleiotropic effects by targeting proteins involved in limiting collagen production, which resulted in improved microscopic features of the rat livers. Our findings suggest that STA9090-induced inhibition of HSP90 leads to the degradation of TβRII, a fibrogenic client protein of HSP90, through the activation of the 20S proteasomal degradation system. We also revealed that this degradation mechanism is not dependent on the autophagy-lysosomal pathway. Additionally, STA9090 was found to destabilize HIF-1α and facilitate its degradation, leading to the reduced transcription of VEGF. Moreover, STA9090's ability to deactivate the NFκB signaling pathway highlights its potential as an anti-inflammatory and antifibrotic agent. However, further research is necessary to fully elucidate the underlying mechanisms and fully capitalize on the therapeutic benefits of targeting HSP90 and associated pathways.
Insights
STA9090, a novel drug, shows promise in treating liver fibrosis by inhibiting HSP90. This leads to the degradation of key fibrotic proteins and improved liver function in preclinical models.
Area of Science:
- Hepatology
- Molecular Biology
- Pharmacology
Background:
- Liver fibrosis is a chronic condition with limited effective treatments.
- Heat shock protein 90 (HSP90) is implicated in liver fibrosis progression.
- Targeting HSP90 offers a potential therapeutic strategy for liver fibrosis.
Purpose of the Study:
- To investigate the antifibrotic effects of STA9090, an HSP90 inhibitor.
- To elucidate the molecular mechanisms underlying STA9090's action in liver fibrosis.
- To evaluate STA9090's therapeutic potential in preclinical liver fibrosis models.
Main Methods:
- In vitro and in vivo studies using liver fibrosis models.
- Assessment of hepatocyte viability and liver function markers.
- Analysis of protein degradation pathways (proteasomal and autophagy-lysosomal).
- Evaluation of signaling pathways including TGF-β1, HIF-1α, and NFκB.
Main Results:
- STA9090 reduced LDH leakage and improved hepatocyte survival in fibrotic rat livers.
- STA9090 treatment led to improved liver function and reduced collagen deposition.
- STA9090 induced the proteasomal degradation of TβRII and HIF-1α, independent of autophagy.
- STA9090 deactivated NFκB signaling and reduced VEGF transcription.
Conclusions:
- STA9090 exhibits significant antifibrotic and anti-inflammatory effects.
- The mechanism involves HSP90 inhibition, leading to TβRII and HIF-1α degradation.
- STA9090 demonstrates therapeutic potential for liver fibrosis treatment.
- Further research is warranted to explore clinical applications.
More Related Videos
08:04Isolation of Primary Mouse Hepatocytes for Nascent Protein Synthesis Analysis by Non-radioactive L-azidohomoalanine Labeling Method
Published on: October 23, 2018
00:06An Oncogenic Hepatocyte-Induced Orthotopic Mouse Model of Hepatocellular Cancer Arising in the Setting of Hepatic Inflammation and Fibrosis
Published on: September 12, 2019
Related Concept Videos
Liver Regeneration
Cells of Liver
The liver comprises four major types of cells— hepatocytes, stellate, Kupffer, and sinusoidal endothelial cells. The hepatocytes are...
iPS Cell Differentiation