Spheroid Morphology Disruption

Spheroid morphology disruption is the alteration of size, shape, compactness, or structural integrity in three-dimensional cell aggregates, providing a visible indicator of tissue-like damage or remodeling. In immunology and infection research, pathogens or immune effectors can disturb cell-cell adhesion, viability, cytoskeletal organization, or extracellular matrix interactions, causing spheroids to become irregular, loosen, fragment, or collapse. Researchers use these morphological changes to evaluate host-pathogen interactions, immune-mediated injury, and cellular responses to antimicrobial or immunomodulatory treatments. Quantifying spheroid integrity can complement viability and molecular assays, helping reveal how infection and inflammation affect multicellular organization in physiologically relevant models.

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JoVE EoE - Neuroimaging

Morphological and Physiological Monitoring of Tumor Spheroids Using Optical Coherence Tomography

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2025

Source: Huang, Y. et. al., Longitudinal Morphological and Physiological Monitoring of Three-dimensional Tumor Spheroids Using Optical Coherence Tomography. J. Vis. Exp. (2019)This video demonstrates the use of optical coherence tomography (OCT) to monitor tumor spheroids in a multi-well plate by capturing high-resolution cross-sectional images. By analyzing light reflections from cellular structures, OCT constructs 3D models to assess morphological features like size and shape while also...

Advancements in the Metabolic Profiling of Three-Dimensional Brain Tumor Spheroids for Drug Screening

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Cited by 1 •

2025

Here, we establish a metabolic profiling platform integrating three-dimensional (3D) glioma spheroids and imaging-based normalization via extracellular flux analysis. This approach enables more accurate assessment of tumor metabolic responses to drug treatments and provides insights into potential mechanisms of resistance.

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.

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.

Generation of a Three-Dimensional Spheroid Model of Tumor Cell Invasion

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2025

Source: Guyon, J., et al. A 3D Spheroid Model for Glioblastoma. J. Vis. Exp. (2020)The video demonstrates the generation of a three-dimensional spheroid model of tumor cell invasion. Spheroids are formed from human brain tumor cells and embedded in a collagen matrix. The tumor cells at the spheroid periphery adopt an invasive phenotype, secreting proteases to degrade the collagen and advancing to invade the surrounding matrix.

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