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Culture of Bladder Cancer Organoids as Precision Medicine Tools
Published on: December 28, 2021
Sarcoma Spheroids and Organoids-Promising Tools in the Era of Personalized Medicine
Gianluca Colella1, Flavio Fazioli2, Michele Gallo3
1Division of Orthopedic Surgery, Department of Human Health, Federico II University of Naples, 80133 Naples, Italy. glc.colella@gmail.com.
Abstract:
Cancer treatment is rapidly evolving toward personalized medicine, which takes into account the individual molecular and genetic variability of tumors. Sophisticated new in vitro disease models, such as three-dimensional cell cultures, may provide a tool for genetic, epigenetic, biomedical, and pharmacological research, and help determine the most promising individual treatment. Sarcomas, malignant neoplasms originating from mesenchymal cells, may have a multitude of genomic aberrations that give rise to more than 70 different histopathological subtypes. Their low incidence and high level of histopathological heterogeneity have greatly limited progress in their treatment, and trials of clinical sarcoma are less frequent than trials of other carcinomas. The main advantage of 3D cultures from tumor cells or biopsy is that they provide patient-specific models of solid tumors, and they overcome some limitations of traditional 2D monolayer cultures by reflecting cell heterogeneity, native histologic architectures, and cell-extracellular matrix interactions. Recent advances promise that these models can help bridge the gap between preclinical and clinical research by providing a relevant in vitro model of human cancer useful for drug testing and studying metastatic and dormancy mechanisms. However, additional improvements of 3D models are expected in the future, specifically the inclusion of tumor vasculature and the immune system, to enhance their full ability to capture the biological features of native tumors in high-throughput screening. Here, we summarize recent advances and future perspectives of spheroid and organoid in vitro models of rare sarcomas that can be used to investigate individual molecular biology and predict clinical responses. We also highlight how spheroid and organoid culture models could facilitate the personalization of sarcoma treatment, provide specific clinical scenarios, and discuss the relative strengths and limitations of these models.
Insights
Three-dimensional (3D) cell cultures, including spheroids and organoids, offer patient-specific models for rare sarcoma research. These advanced in vitro models aid in personalized cancer medicine and predicting treatment responses.
Area of Science:
- Oncology
- Biomedical Engineering
- Cancer Research
Background:
- Personalized medicine is revolutionizing cancer treatment by considering tumor-specific molecular and genetic variations.
- Sarcomas, a diverse group of rare cancers, present treatment challenges due to their heterogeneity and low incidence.
- Traditional 2D cell cultures have limitations in replicating the complex tumor microenvironment.
Purpose of the Study:
- To review recent advancements and future directions of spheroid and organoid in vitro models for rare sarcomas.
- To explore the potential of these 3D models in investigating sarcoma molecular biology and predicting clinical outcomes.
- To highlight how these models can facilitate personalized sarcoma treatment strategies.
Main Methods:
- Utilizing three-dimensional (3D) cell culture techniques, including spheroids and organoids, derived from patient tumor cells or biopsies.
- Analyzing the ability of these models to reflect tumor heterogeneity, architecture, and cell-extracellular matrix interactions.
- Evaluating their utility in drug testing, studying metastasis, and dormancy mechanisms.
Main Results:
- 3D cell cultures provide patient-specific in vitro models that better mimic native solid tumors than 2D cultures.
- These models can bridge the gap between preclinical research and clinical application for rare cancers like sarcomas.
- Spheroid and organoid models show promise for personalized drug screening and understanding tumor biology.
Conclusions:
- Spheroid and organoid models represent a significant advancement for studying rare sarcomas.
- These patient-specific 3D cultures are crucial tools for advancing personalized sarcoma treatment.
- Future improvements, such as incorporating vasculature and the immune system, will further enhance their predictive power.
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