3d Organoids

3D organoids are self-organizing, three-dimensional cell cultures that model key structural and functional features of tissues, making them valuable for studying cancer in a physiologically relevant setting. They form when stem or progenitor cells proliferate and differentiate within supportive conditions, often including an extracellular matrix and defined growth factors that guide tissue-like architecture. In cancer research, tumor-derived organoids can preserve characteristics of patient tumors and enable investigation of tumor development, cell behavior, treatment response, and drug resistance. These models complement conventional two-dimensional cultures and animal studies, supporting more predictive drug screening and the development of personalized treatment strategies.

3d Organoids - Related Videos

Research

JoVE EoE - Colorectal Cancer

CRC Organoid Culture: A Method to Obtain 3D Organoids from Colorectal Cancer Cells

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2023

This video describes the detailed protocol for generating 3D organoids from murine-model derived colorectal cancer cells by propagating them on artificial extracellular matrix coated plates. These CRC organoids can be used as a model to study the primary growth of human tumor cells and metastasis.

Preparing Organoids from Tumors: A 3D In Vitro Tumor Model

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2023

Organoids derived from tumors are a type of 3D cell culture model that can maintain the pathological features and organ-specific cell lineage of tumors. In the example protocol, we will see scientists generate organoids from a prostate tumor from a genetically engineered mouse model.

Research

JoVE Journal - Medicine
Free Sample

Standardization and Maintenance of 3D Canine Hepatic and Intestinal Organoid Cultures for Use in Biomedical Research

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Cited by 32 •

2022

Experimental methods to harvest adult stem cells from canine intestinal and hepatic tissues to establish 3D organoid cultures are described. Furthermore, the laboratory techniques to ensure consistent growth and provide standard operating procedures to harvest, biobank, and revive canine intestinal and hepatic organoid cultures are discussed.

Modeling Oral-Esophageal Squamous Cell Carcinoma in 3D Organoids

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Cited by 10 •

2022

This protocol describes the key steps to generate and characterize murine oral-esophageal 3D organoids that represent normal, preneoplastic, and squamous cell carcinoma lesions induced via chemical carcinogenesis.

A High-Throughput Platform for Culture and 3D Imaging of Organoids

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Cited by 4 •

2022

This paper presents a fabrication protocol for a new type of culture substrate with hundreds of microcontainers per mm2, in which organoids can be cultured and observed using high-resolution microscopy. The cell seeding and immunostaining protocols are also detailed.

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