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Published on: August 25, 2023
Therapeutic potential of targeting Nrf2 by panobinostat in pituitary neuroendocrine tumors
Yijun Cheng1, Yuting Dai2, Hao Tang1
1Department of Neurosurgery, Center of Pituitary Tumor, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, 197# Ruijin er road, Shanghai, 200025, China.
Abstract:
We aimed to identify the druggable cell-intrinsic vulnerabilities and target-based drug therapies for PitNETs using the high-throughput drug screening (HTS) and genomic sequencing methods. We examined 9 patient-derived PitNET primary cells in HTS. Based on the screening results, the potential target genes were analyzed with genomic sequencing from a total of 180 PitNETs. We identified and verified one of the most potentially effective drugs, which targeted the Histone deacetylases (HDACs) both in in vitro and in vivo PitNET models. Further RNA sequencing revealed underlying molecular mechanisms following treatment with the representative HDACs inhibitor, Panobinostat. The HTS generated a total of 20,736 single-agent dose responses which were enriched among multiple inhibitors for various oncogenic targets, including HDACs, PI3K, mTOR, and proteasome. Among these drugs, HDAC inhibitors (HDACIs) were, on average, the most potent drug class. Further studies using in vitro, in vivo, and isolated PitNET primary cell models validated HDACIs, especially Panobinostat, as a promising therapeutic agent. Transcriptional surveys revealed substantial alterations to the Nrf2 signaling following Panobinostat treatment. Moreover, Nrf2 is highly expressed in PitNETs. The combination of Panobinostat and Nrf2 inhibitor ML385 had a synergistic effect on PitNET suppression. The current study revealed a class of effective anti-PitNET drugs, HDACIs, based on the HTS and genomic sequencing. One of the representative compounds, Panobinostat, may be a potential drug for PitNET treatment via Nrf2-mediated redox modulation. Combination of Panobinostat and ML385 further enhance the effectiveness for PitNET treatment.
Insights
Histone deacetylase inhibitors (HDACIs), particularly Panobinostat, show promise as effective drug therapies for pituitary tumors (PitNETs). Combining Panobinostat with an Nrf2 inhibitor synergistically enhances its anti-PitNET effects by modulating Nrf2 signaling.
Area of Science:
- Oncology
- Pharmacology
- Genomics
Background:
- Pituitary tumors (PitNETs) represent a significant clinical challenge with limited targeted therapies.
- Identifying cell-intrinsic vulnerabilities is crucial for developing effective PitNET treatments.
Purpose of the Study:
- To identify druggable cell-intrinsic vulnerabilities in PitNETs.
- To discover novel target-based drug therapies for PitNETs using high-throughput screening and genomic analysis.
Main Methods:
- High-throughput drug screening (HTS) of 9 patient-derived PitNET primary cells.
- Genomic sequencing of 180 PitNET samples to identify potential drug targets.
- In vitro, in vivo, and primary cell model validation of identified drug candidates, including RNA sequencing for mechanism elucidation.
Main Results:
- HTS identified multiple drug classes targeting oncogenic pathways, with HDAC inhibitors (HDACIs) showing the highest potency.
- Panobinostat, a representative HDACI, demonstrated significant efficacy in preclinical PitNET models.
- Panobinostat treatment altered Nrf2 signaling, which is highly expressed in PitNETs; combination therapy with an Nrf2 inhibitor (ML385) showed synergistic anti-PitNET effects.
Conclusions:
- HDAC inhibitors represent a promising class of drugs for PitNET treatment.
- Panobinostat is a potential therapeutic agent for PitNETs, acting via Nrf2-mediated redox modulation.
- Combination therapy with Panobinostat and ML385 offers enhanced efficacy for PitNET treatment.
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