3d Stem Cell Culture

3D stem cell culture is a laboratory method for growing stem cells within three-dimensional aggregates, hydrogels, scaffolds, or tissue-like environments rather than on flat surfaces. It matters because spatial organization, cell-cell interactions, and extracellular matrix signals can more closely reproduce conditions that influence cell survival, differentiation, and tissue formation. In practice, cells self-organize or are guided by biomaterials and culture cues, while gradients of nutrients, oxygen, and signaling molecules develop within the construct. In neuroscience, this approach supports neural organoids and other complex models for studying brain development, disease mechanisms, drug responses, and cellular interactions.

3d Stem Cell Culture - Related Videos

Research

JoVE Journal - Bioengineering

Preparation of 3D Fibrin Scaffolds for Stem Cell Culture Applications

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Cited by 52 •

2012

This work details the preparation of 3D fibrin scaffolds for culturing and differentiating plutipotent stem cells. Such scaffolds can be used to screen the effects of various biological compounds on stem cell behavior as well as modified to contain drug delivery systems.

Alginate Microcapsule as a 3D Platform for Propagation and Differentiation of Human Embryonic Stem Cells (hESC) to Different Lineages

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Cited by 20 •

2012

We have optimized a microencapsulation technique as an effective 3D platform for propagation and differentiation of embryonic stem cells to endoderm and dopaminergic (DA) neurons. It also provides an opportunity for immune-isolation of cells from the host during transplantation. This platform can be adapted for other cell types.

Research

JoVE Journal - Developmental Biology
Free Sample

Culturing Human Pluripotent and Neural Stem Cells in an Enclosed Cell Culture System for Basic and Preclinical Research

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Cited by 3 •

2016

Here is a protocol to grow pluripotent stem cells (PSC) and neural stem cells (NSC) in an enclosed cell culture system that permits maximum sterility and reproducibility, replacing the traditional biosafety cabinet and incubator. This equipment meets clinical good manufacturing practice (cGMP) and clinical good lab practice (cGLP) guidelines.

Differentiating Human Neuronal Stem Cells into 3D Culture Using a Porous Scaffold

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2025

This video showcases the development and differentiation of human neural stem cells within a three-dimensional scaffold. A laminin coating on the scaffold promotes cell attachment, while a growth factor-free neural medium induces cell differentiation into neural progenitor cells, which extend their processes within a porous architecture in multiple directions, forming a three-dimensional...

Education

JoVE Science Education - Advanced Biology

Embryonic Stem Cell Culture and Differentiation

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2023

Culturing embryonic stem (ES) cells requires conditions that maintain these cells in an undifferentiated state to preserve their capacity for self-renewal and pluripotency. Stem cell biologists are continuously optimizing methods to improve the efficiency of ES cell culture, and are simultaneously trying to direct the differentiation of ES cells into specific cell types that could be used in regenerative medicine. This video describes the basic principles of ES cell culture, and demonstrates a...

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