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Updated: May 24, 2026

Optimization of a Multiplex RNA-based Expression Assay Using Breast Cancer Archival Material
Published on: August 1, 2018
An atlas of histone deacetylase expression in breast cancer: fluorescence methodology for comparative
Abstract:
The histone deacetylase inhibitors, suberoylanilide hydroxamic acid (Vorinostat, Zolinza™) and depsipeptide (Romidepsin, Istodax™) have been approved by the US Food and Drug Administration for the treatment of refractory cutaneous T-cell lymphoma. Numerous histone deacetylase inhibitors are currently undergoing clinical trials, predominantly in combination with other cancer modalities, for the treatment of various haematological and solid malignancies. Most of the traditional compounds are known as broad-spectrum or pan-histone deacetylase inhibitors, possessing activity against a number of the 11 metal-dependent enzymes. One of the main questions in the field is whether class- or isoform-specific compounds would offer a therapeutic benefit compared to broad-spectrum inhibitors. Therefore, analysis of the relative expression of the different histone deacetylase enzymes in cancer cells and tissues is important to determine whether there are specific targets. We used a panel of antibodies directed against the 11 known mammalian histone deacetylases to determine expression levels in MCF7 breast cancer cells and in tissue representative of invasive ductal cell carcinoma and ductal carcinoma in situ. Firstly, we utilized a semi-quantitative method based on immunofluorescence staining to examine expression of the different histone deacetylases in MCF7 cells. Our findings indicate high expression levels of HDAC1, 3 and 6 in accordance with findings from others using RT-PCR and immunoblotting. Following validation of our approach we examined the expression of the different isoforms in representative control and breast cancer tissue. In general, our findings indicate higher expression of class I histone deacetylases compared to class II enzymes in breast cancer tissue. Analysis of individual cancer cells in the same tissue indicated marked heterogeneity in the expression of most class I enzymes indicating potential complications with the use of class- or isoform-specific compounds. Overall, our approach can be utilized to rapidly compare, in an unbiased semi-quantitative manner, the differential levels of expression of histone deacetylase enzymes in cells and tissues using widely available imaging software. It is anticipated that such analysis will become increasingly important as class- or isoform-specific histone deacetylase inhibitors become more readily available.
Insights
Histone deacetylase (HDAC) inhibitors are used to treat certain cancers. This study analyzed HDAC expression in breast cancer cells and tissues, finding heterogeneity that may complicate targeted therapies.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- Histone deacetylase (HDAC) inhibitors, such as Vorinostat and Romidepsin, are FDA-approved for cutaneous T-cell lymphoma.
- Numerous HDAC inhibitors are in clinical trials for various cancers, often in combination therapies.
- A key question is whether class- or isoform-specific HDAC inhibitors offer advantages over broad-spectrum ones.
Purpose of the Study:
- To analyze the relative expression of different histone deacetylase (HDAC) enzymes in breast cancer cells and tissues.
- To determine if specific HDAC targets exist for potential therapeutic benefit.
- To evaluate the utility of immunofluorescence staining for semi-quantitative analysis of HDAC expression.
Main Methods:
- Utilized a panel of antibodies against 11 mammalian HDACs.
- Employed immunofluorescence staining for semi-quantitative expression analysis in MCF7 breast cancer cells and patient tissues (invasive ductal carcinoma, ductal carcinoma in situ).
- Validated the approach using imaging software for unbiased comparison of differential HDAC expression levels.
Main Results:
- High expression of HDAC1, HDAC3, and HDAC6 was observed in MCF7 cells, consistent with previous studies.
- Breast cancer tissues generally showed higher expression of class I HDACs compared to class II enzymes.
- Significant heterogeneity in the expression of most class I HDACs was noted within individual cancer cells in the same tissue.
Conclusions:
- The study highlights significant heterogeneity in HDAC expression within breast cancer, potentially challenging the efficacy of class- or isoform-specific inhibitors.
- The developed immunofluorescence-based approach provides a rapid, unbiased method for analyzing differential HDAC expression in cells and tissues.
- As specific HDAC inhibitors become more available, this type of expression analysis will be crucial for guiding therapeutic strategies.

