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Updated: May 11, 2026

Measuring Real-time Drug Response in Organotypic Tumor Tissue Slices
Published on: May 2, 2020
Breast cancer tissue slices as a model for evaluation of response to rapamycin
Stana Helena Giorgi Grosso1, Maria Lucia Hirata Katayama, Rosimeire Aparecida Roela
1Instituto Brasileiro de Controle do Câncer, Av. Alcântara Machado 2576, CEP 03102-002, São Paulo, SP, Brasil.
Abstract:
Rapamycin is a selective inhibitor of the mammalian target of rapamycin (mTOR), a regulator kinase that integrates growth factors signaling via the phosphoinositide-3-kinase pathway and that has emerged as a novel therapeutic modality in breast cancer (BC). We propose a pre-clinical "ex-vivo" personalized organotypic culture of BC that preserves the microenvironment to evaluate rapamycin-mediated gene expression changes. Freshly excised ductal invasive BC slices, 400 μm thick (n=30), were cultured in the presence or absence (control) of rapamycin (20 nM) for 24 h. Some slices were formalin-fixed for immunohistochemical determinations and some were processed for microarray analysis. Control slices in culture retained their tissue morphology and tissue viability (detected by BrdU uptake). The percentage of proliferating cells (assessed by Ki67) did not change up to 24 h of treatment. Immunohistochemical evaluation of p-AKT, p-mTOR, p-4EBP1 and p-S6K1 indicated that AKT/mTOR pathway activation was maintained during cultivation. For microarray analysis, slices were divided into two groups, according to the presence/absence of epidermal growth factor receptor-type 2 and analyzed separately. Limited overlap was seen among differentially expressed genes after treatment (P<0.01) in both groups suggesting different responses to rapamycin between these BC subtypes. Ontology analysis indicated that genes involved in biosynthetic processes were commonly reduced by rapamycin. Our network analysis suggested that concerted expression of these genes might distinguish controls from treated slices. Thus, breast carcinoma slices constitute a suitable physiological tool to evaluate the short-term effects of rapamycin on the gene profile of individual BC samples.
Insights
This study shows that ex-vivo breast cancer slices can model short-term rapamycin effects on gene expression. Personalized organotypic cultures reveal distinct rapamycin responses in breast cancer subtypes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Mammalian target of rapamycin (mTOR) is a key regulator kinase in breast cancer (BC) signaling.
- Rapamycin, an mTOR inhibitor, shows therapeutic potential in BC.
- Evaluating rapamycin's effects requires models that preserve the tumor microenvironment.
Purpose of the Study:
- To develop and validate a pre-clinical ex-vivo organotypic culture of BC.
- To assess rapamycin-mediated gene expression changes in personalized BC samples.
- To investigate the short-term effects of rapamycin on BC subtypes.
Main Methods:
- Ex-vivo culture of 400 μm thick invasive ductal BC slices (n=30) with or without rapamycin (20 nM) for 24 hours.
- Immunohistochemistry for proliferation (Ki67) and pathway activation (p-AKT, p-mTOR, p-4EBP1, p-S6K1).
- Microarray analysis of gene expression, stratified by HER2 status.
Main Results:
- Organotypic cultures maintained BC morphology, viability, and pathway activation (AKT/mTOR) for 24 hours.
- Rapamycin treatment led to limited overlap in differentially expressed genes between HER2-positive and HER2-negative BC subtypes.
- Genes involved in biosynthetic processes were commonly downregulated by rapamycin.
Conclusions:
- Ex-vivo breast carcinoma slices are a suitable physiological model for evaluating short-term rapamycin effects.
- Personalized BC cultures can reveal subtype-specific responses to rapamycin.
- Rapamycin primarily impacts genes involved in biosynthetic processes in BC.

