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Physiologic Patient Derived 3D Spheroids for Anti-neoplastic Drug Screening to Target Cancer Stem Cells
Published on: July 5, 2019
Three dimensional in vitro culture systems in anticancer drug discovery targeted on cancer stem cells
Anna Radajewska1,2, Oskar Przybyszewski1, Fathi Emhemmed3
1Department of Basic Medical Sciences, Wroclaw Medical University Wroclaw, Poland.
Abstract:
Worldwide, tumors are one of the most common causes of death. Every year 3.7 million new cases occur in Europe and more than 1.9 million patients die (WHO data). Most of the fields of research are focused on developing new therapeutic strategies that will be effective in eliminating the tumor, preventing its remission, and avoiding or reducing the side effects of therapy. In the past, generally classical 2D cell cultures or immunodeficient animal models had been used to cultivate and test drugs on human cancer cell lines. Nowadays, there are increasing interests in three-dimensional (3D) cell cultures, a method with significant differences from flat cultured cells, both considering gene expressions and cell-cell interactions. Various evidence suggests that high tumorigenic properties might be dependent on the occurrence of a small cell population, pointed out to be responsible for metastasis and recurrence. This population is called cancer stem cells (CSCs), hinted to have a lot of similarities with normal stem cells. CSCs are the main reason for chemotherapy failure as well as multi-drug resistance (MDR). CSCs can also interact through the cytokine network, with other cells like the macrophages of the inflammatory system. The big advantage of a 3D culture is the possibility to isolate and investigate the CSCs population surrounded by its environment. This article aims to sum up known 3D cell cultures, especially in the field of CSCs research due to the importance of the tumor's environment on stem cell's markers expression and their development.
Insights
Three-dimensional (3D) cell cultures offer a better way to study cancer stem cells (CSCs) and their environment. This approach helps understand tumor growth, metastasis, and drug resistance, paving the way for new cancer therapies.
Area of Science:
- Oncology
- Cell Biology
- Biotechnology
Background:
- Tumors are a leading cause of death globally, with millions of new cases and deaths annually.
- Traditional 2D cell cultures and animal models have limitations in mimicking the complex tumor microenvironment.
- Cancer stem cells (CSCs) are implicated in tumor recurrence, metastasis, and therapeutic resistance.
Purpose of the Study:
- To review current three-dimensional (3D) cell culture models.
- To highlight the importance of 3D cultures in cancer stem cell (CSC) research.
- To emphasize the influence of the tumor microenvironment on CSC characteristics.
Main Methods:
- Review of existing literature on 3D cell culture techniques.
- Analysis of studies focusing on cancer stem cells (CSCs) within 3D models.
- Discussion of CSC interactions within their native microenvironment.
Main Results:
- 3D cell cultures better replicate in vivo conditions compared to 2D cultures, including gene expression and cell-cell interactions.
- 3D models facilitate the isolation and study of cancer stem cells (CSCs) in a more physiologically relevant context.
- The tumor microenvironment significantly impacts CSC marker expression and behavior.
Conclusions:
- Three-dimensional (3D) cell culture systems are crucial for advancing cancer stem cell (CSC) research.
- Understanding CSCs in their microenvironment is key to overcoming challenges like metastasis and drug resistance.
- 3D cultures represent a significant improvement for preclinical drug testing and therapeutic strategy development.

