Related Experiment Video
Updated: May 6, 2026

Ex Vivo Treatment Response of Primary Tumors and/or Associated Metastases for Preclinical and Clinical Development of Therapeutics
Published on: October 2, 2014
Plant-Based HSP90 Inhibitors in Breast Cancer Models: A Systematic Review
Ilham Zarguan1, Sonia Ghoul2, Lamiae Belayachi1
1Center for Research on Health Sciences (CReSS), International Faculty of Medicine, College of Health Sciences, International University of Rabat, Technopolis Parc, Rocade of Rabat-Salé, Sala-Al Jadida 11100, Morocco.
Abstract:
Breast cancer, the most invasive cancer in women globally, necessitates novel treatments due to prevailing limitations of therapeutics. Search of news anticancer targets is more necessary than ever to tackle this pathology. Heat-Shock Protein 90 (HSP90), a chaperone protein, is implicated in breast cancer pathogenesis, rendering it an appealing target. Looking for alternative approach such as Plant-based compounds and natural HSP90 inhibitors offer promising prospects for innovative therapeutic strategies. This study aims to identify plant-based compounds with anticancer effects on breast cancer models and elucidate their mechanism of action in inhibiting the HSP90 protein. A systematic review was conducted and completed in January 2024 and included in vitro, in vivo, and in silico studies that investigated the effectiveness of plant-based HSP90 inhibitors tested on breast cancer models. Eleven studies were included in the review. Six plants and 24 compounds from six different classes were identified and proved to be effective against HSP90 in breast cancer models. The studied plant extracts showed a dose- and time-dependent decrease in cell viability. Variable IC50 values showed antiproliferative effects, with the plant Tubocapsicum anomalum demonstrating the lowest value. Withanolides was the most studied class. Fennel, Trianthema portulacastrum, and Spatholobus suberectus extracts were shown to inhibit tumor growth and angiogenesis and modulate HSP90 expression as well as its cochaperone interactions in breast cancer mouse models. The identified plant extracts and compounds were proven effective against HSP90 in breast cancer models, and this inhibition showed promising effects on breast cancer biology. Collectively, these results urge the need of further studies to better understand the mechanism of action of HSP90 inhibitors using comparable methods for preclinical observations.
Insights
Natural compounds targeting Heat-Shock Protein 90 (HSP90) show promise for breast cancer treatment. This review identifies plant-based HSP90 inhibitors with significant anticancer effects, highlighting their potential for novel therapeutic strategies.
Area of Science:
- Oncology
- Pharmacology
- Natural Product Chemistry
Background:
- Breast cancer remains a leading global health concern, with existing therapies facing limitations.
- Heat-Shock Protein 90 (HSP90) is a crucial protein in breast cancer development, making it a viable therapeutic target.
- Plant-derived compounds offer a promising avenue for developing novel anticancer agents, particularly as natural inhibitors of HSP90.
Purpose of the Study:
- To identify plant-based compounds with anticancer properties against breast cancer models.
- To elucidate the mechanism of action of these compounds in inhibiting HSP90.
- To review the effectiveness of natural HSP90 inhibitors in preclinical breast cancer research.
Main Methods:
- A systematic review of in vitro, in vivo, and in silico studies was conducted.
- Studies published up to January 2024 were included.
- Effectiveness of plant-based HSP90 inhibitors on breast cancer models was analyzed.
Main Results:
- Six plants yielded 24 compounds from six classes demonstrating efficacy against HSP90 in breast cancer models.
- Plant extracts exhibited dose- and time-dependent reduction in cell viability with variable IC50 values.
- Specific extracts like Tubocapsicum anomalum, Fennel, Trianthema portulacastrum, and Spatholobus suberectus showed significant antiproliferative and tumor-inhibiting effects.
Conclusions:
- Plant-derived compounds are effective inhibitors of HSP90 in breast cancer models, impacting tumor growth and angiogenesis.
- The identified natural compounds show significant promise for developing innovative breast cancer therapeutics.
- Further research with standardized methods is recommended to fully understand the mechanisms of these HSP90 inhibitors for preclinical applications.
Related Concept Videos
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Mouse Models of Cancer Study
The development of transgenic, knockout, and knock-in mice has led to an exponential increase in their use as model organisms in research,...

