Spheroid Phenotype Characterization

Spheroid phenotype characterization is the systematic assessment of three-dimensional, multicellular aggregates to determine their structure, viability, organization, and functional state. In bioengineering, researchers combine imaging, size and morphology measurements, viability assays, and molecular or immunostaining analyses to evaluate how cells interact, establish gradients, and develop tissue-like phenotypes within the spheroid. These measurements reveal responses to culture conditions, biomaterials, mechanical cues, drugs, or other treatments that may not appear in two-dimensional cultures. Characterization therefore supports the development and quality control of tissue models, organoid-based systems, regenerative medicine strategies, and physiologically relevant platforms for disease research and therapeutic testing.

Spheroid Phenotype Characterization - Related Videos

Research

JoVE EoE - Neuropathology

Characterization of Small Bowel Neuroendocrine Tumor Spheroids Using Immunofluorescence

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2025

Source: Ear, P. H., et. al. Establishment and Characterization of Small Bowel Neuroendocrine Tumor Spheroids. J. Vis. Exp. (2019)This video demonstrates the immunofluorescence staining of small bowel neuroendocrine tumor spheroids. The spheroids are fixed, permeabilized, and blocked and are then incubated with primary and secondary antibodies. A dye is added to stain nuclei before mounting and visualizing them under a fluorescent microscope.

Multipronged Phenotyping Approaches to Characterize Sugarcane Root Systems

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Cited by 1 •

2022

Characterizing root system traits is one of the areas of research that is still in its infancy, particularly in sugarcane. Integrating multiple approaches to precisely phenotype sugarcane roots leads to comprehensive and holistic results, enabling the utilization of identified traits and mechanisms for conventional and molecular breeding.

Research

JoVE Journal - Neuroscience
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Why Quantification Matters: Characterization of Phenotypes at the Drosophila Larval Neuromuscular Junction

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Cited by 4 •

2016

Morphology, size and location of intracellular organelles are evolutionarily conserved and appear to directly affect their function. Understanding the molecular mechanisms underlying these processes has become an important goal of modern biology. Here we show how these studies can be facilitated by the application of quantitative techniques.

A Barcoding Assay for Phenotypic and Functional Characterization of Immune Cells

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2025

This video highlights a single-cell proteomic method that employs heavy-metal-conjugated antibodies for distinct cell barcoding. Subsequently, immunostaining and mass cytometry are applied to evaluate immune phenotypic and functional alterations in human whole blood-derived immune cells.

Phenotypic Characterization of Macrophages from Rat Kidney by Flow Cytometry

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Cited by 37 •

2016

This manuscript describes a detailed protocol for phenotypic and quantitative analysis of resident macrophages from rat kidneys by flow cytometry. The resulting stained cells can be also used for other applications, including cell sorting, gene expression analysis or functional studies, thus increasing the information obtained in the experimental model.

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