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Updated: Sep 13, 2025

Ex Vivo Treatment Response of Primary Tumors and/or Associated Metastases for Preclinical and Clinical Development of Therapeutics
Published on: October 2, 2014
Hsp90 pan and Isoform-Selective Inhibitors as Sensitizers for Cancer Immunotherapy
Shiying Jia1, Neeraj Maurya2, Brian S J Blagg2,3
1Department of Biological Sciences, Boler-Parseghian Center for Rare Diseases, Harper Cancer Research Institute, University of Notre Dame, Notre Dame, IN 46556, USA.
Abstract:
The 90 kDa heat shock proteins (Hsp90) are molecular chaperones that regulate the stability and maturation of numerous client proteins implicated in the regulation of cancer hallmarks. Despite the potential of pan-Hsp90 inhibitors as anticancer therapeutics, their clinical development has been hindered by on-target toxicities, particularly ocular and cardiotoxic effects, as well as the induction of pro-survival, compensatory heat shock responses. Together, these and other complications have prompted the development of isoform-selective Hsp90 inhibitors. In this review, we discuss the molecular bases for Hsp90 function and inhibition and emphasize recent advances in isoform-selective targeting. Importantly, we highlight how Hsp90 inhibition can sensitize tumors to cancer immunotherapy by enhancing antigen presentation, reducing immune checkpoint expression, remodeling the tumor microenvironment, and promoting innate immune activation. Special focus is given to Hsp90β-selective inhibitors, which modulate immunoregulatory pathways without eliciting the deleterious effects observed with pan-inhibition. Preclinical and early clinical data support the integration of Hsp90 inhibitors with immune checkpoint blockade and other immunotherapeutic modalities to overcome resistance mechanisms in immunologically cold tumors. Therefore, the continued development of isoform-selective Hsp90 inhibitors offers a promising avenue to potentiate cancer immunotherapy with improved efficacy.
Insights
Isoform-selective Hsp90 inhibitors show promise for cancer therapy by enhancing immunotherapy and avoiding toxicities associated with pan-Hsp90 inhibitors. These targeted drugs can overcome resistance in tumors and improve treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Heat shock protein 90 (Hsp90) is crucial for cancer hallmark regulation.
- Pan-Hsp90 inhibitors face challenges due to toxicity and compensatory responses.
- Isoform-selective Hsp90 inhibitors are being developed to mitigate these issues.
Purpose of the Study:
- To review Hsp90 function, inhibition, and advances in isoform-selective targeting.
- To highlight the potential of Hsp90 inhibition in sensitizing tumors to cancer immunotherapy.
- To focus on Hsp90β-selective inhibitors for immune modulation without adverse effects.
Main Methods:
- Review of molecular mechanisms of Hsp90 function and inhibition.
- Analysis of recent advancements in isoform-selective Hsp90 inhibitors.
- Examination of preclinical and clinical data on Hsp90 inhibitors combined with immunotherapy.
Main Results:
- Hsp90 inhibition enhances tumor antigen presentation and immune activation.
- Isoform-selective inhibitors, particularly Hsp90β-selective ones, modulate immune pathways effectively.
- Combination therapy with Hsp90 inhibitors and immunotherapy shows potential against resistant and cold tumors.
Conclusions:
- Isoform-selective Hsp90 inhibitors offer a safer therapeutic strategy than pan-Hsp90 inhibitors.
- Targeting Hsp90 can potentiate cancer immunotherapy by overcoming resistance mechanisms.
- Further development of these inhibitors is a promising approach to improve cancer treatment efficacy.
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