In Vitro Sphere Formation

In vitro sphere formation is a 3D cell-culture method in which cells grow as free-floating, multicellular spheres rather than as a flat adherent layer, providing a model of cell organization and behavior. Under nonadherent or low-attachment conditions, often with serum-free medium and defined growth factors, individual cells survive, aggregate, and proliferate into spheroids or sphere-like colonies. In biology, researchers use sphere formation to assess clonogenicity and self-renewal, enrich or characterize stem-like and tumor cell populations, and evaluate responses to treatments. Sphere size, number, and serial-forming capacity can provide comparative measures of cellular state and function.

In Vitro Sphere Formation - Related Videos

Research

JoVE EoE - Pancreatic Cancer

Sphere Formation Assay: An In Vitro Method to Identify Pancreatic Cancer Stem Cells and Screen Therapies

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2023

This video demonstrates the protocol for developing pancreatic cancer stem cell spheroids in vitro. The assay can serve as a screening tool to identify compounds that potentially target cancer stem cells.

Generating 3D Co-culture Spheres of Astrocytes and Neurons to Induce Synapse Formation

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2025

This video demonstrates a procedure for co-culturing the astrocytes and neurons to form 3D spheres. These 3D spheres provide a distinct platform for examining synapse formation and neural network integration, thereby serving as a potential model for research in developmental neuroscience, neurodegenerative diseases, and neuropharmacological interventions.

Endothelial Cell Tube Formation Assay for the In Vitro Study of Angiogenesis

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Cited by 345 •

2014

The tube formation assay is a fast, quantifiable method for measuring in vitro angiogenesis. Endothelial cells are combined with conditioned media and plated on basement membrane extract. Tube formation occurs within hours and newly formed tubules easily quantified.

An In Vitro Method for the Differentiation of Megakaryocytes and Platelet Formation

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2025

This video demonstrates a technique for the differentiation of megakaryocytes and the formation of platelets. Hematopoietic stem progenitor cells — isolated from human umbilical cord blood — differentiate into mature megakaryocytes in the presence of thrombopoietin. The mature megakaryocytes produce cytoplasmic extensions termed proplatelets, which give rise to individual platelets.

Research

JoVE Journal - Immunology and Infection
Free Sample

In vitro Biofilm Formation in an 8-well Chamber Slide

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Cited by 62 •

2011

This article describes the procedure for the formation and visualization of a bacterial biofilm grown within an 8-well chamber...

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