Spheroid Aggregation

Spheroid aggregation is the formation of three-dimensional, multicellular clusters through the coordinated assembly and compaction of cells, providing a model of tissue organization beyond flat cell cultures. In nonadherent or low-attachment conditions, reduced substrate adhesion allows cell-cell interactions, extracellular matrix production, and adhesion molecules to draw cells into compact spheroids. In neuroscience, neural spheroids can reproduce aspects of cellular heterogeneity, network development, and tissue architecture, supporting studies of neurodevelopment and disease. This approach also enables analysis of cell behavior, neuronal connectivity, toxicity, and therapeutic responses in a physiologically relevant three-dimensional environment.

Spheroid Aggregation - Related Videos

Research

JoVE Journal - Biology

An Efficient and Flexible Cell Aggregation Method for 3D Spheroid Production

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Cited by 67 •

2017

Here, we describe a rapid and flexible protocol for the formation of 3D cell spheroids through cell aggregation. This is easily adapted to multiple cell types and is suitable for use in a variety of applications including cell migration, invasion, or anoikis assays, and for imaging and quantifying cell-matrix interactions.

Splitting Spheroids for Sub-culturing and Shipping: A Procedure for Propagating and Transferring Spheroids from Small Bowel Neuroendocrine Tumor

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2023

This video demonstrates a strategy to split and propagate spheroids developed from small bowel neuroendocrine tumor cells. These spheroids have small bowel neuroendocrine tumor markers and can be propagated and further used to test anti-cancer drugs.

Embedding 3D Spheroids in Agarose Gel Drops: A Technique to Preserve Spheroids for Downstream Analysis

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2023

This video describes the technique to embed 3D spheroids in agarose gel drops for preservation. The embedded 3D spheroids can be further used for downstream analysis.

Extracellular Flux Assay in 3D Spheroids: A Method for Measuring the Metabolic Activity of Pancreatic Tumor Spheroids

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2023

This protocol describes the technique for performing extracellular flux assay on 3D spheroids generated from the co-culture of pancreatic cancer cells (Patu8902) and activated pancreatic fibroblasts (PS1) to measure the two major energy-producing pathways, glycolysis and mitochondrial respiration.

Preparation of Cancer Spheroid Blocks by Flash Freezing: A Procedure To Preserve Cancer Spheroids in Frozen Matrix Blocks

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2023

This video demonstrates the preparation of cancer spheroid blocks by flash freezing, a technique in which a tissue sample of interest is frozen to an ultracold temperature, restraining the spheroids inside the matrix.

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