Polymer Scaffold Culture

Polymer scaffold culture is a three-dimensional cell-culture approach that grows cells within or on a polymer matrix, creating a structured environment that better models tissue organization than flat culture alone. The scaffold provides adhesion sites and interconnected spaces for cell attachment, migration, nutrient and oxygen diffusion, while its composition, porosity, stiffness, and degradation rate influence cell behavior. In neuroscience, researchers use these cultures to study neuronal growth, neurite extension, glial responses, and cell-network formation in controlled tissue-engineering models. They can support investigations of neural injury, disease mechanisms, biomaterial compatibility, and potential regenerative strategies.

Polymer Scaffold Culture - Related Videos

Research

JoVE Journal - Biology

Electrospinning Fibrous Polymer Scaffolds for Tissue Engineering and Cell Culture

0 Views •

Cited by 38 •

2009

The process of electrospinning polymers for tissue engineering and cell culture is addressed in this article. Specifically, the electrospinning of photoreactive macromers with additional processing capabilities of photopatterning and multi-polymer electrospinning is described.

Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold

0 Views •

Cited by 33 •

2015

Scaffolds capable of fitting within cranio-maxillofacial (CMF) bone defects while exhibiting osteoconductivity and bioactivity are of interest. This protocol describes the preparation of a shape memory scaffold based on polycaprolactone diacrylate (PCL-DA) using a solvent-casting particulate-leaching (SCPL) method employing a fused salt template and application of a bioactive polydopamine coating.

Self-reporting Scaffolds for 3-Dimensional Cell Culture

0 Views •

Cited by 7 •

2013

Biocompatible pH responsive sol-gel nanosensors can be incorporated into poly(lactic-co-glycolic acid) (PLGA) electrospun scaffolds. The produced self-reporting scaffolds can be used for in situ monitoring of microenvironmental conditions whilst culturing cells upon the scaffold. This is beneficial as the 3D cellular construct can be monitored in real-time without disturbing the experiment.

Shape Memory Polymers for Active Cell Culture

0 Views •

Cited by 25 •

2011

A method for developing cell culture substrates with the ability to change topography during culture is described. The method makes use of smart materials known as shape memory polymers that have the ability to memorize a permanent shape. This concept is adaptable to a wide range of materials and applications.

Research

JoVE Journal - Bioengineering
Free Sample

3D Hydrogel Scaffolds for Articular Chondrocyte Culture and Cartilage Generation

0 Views •

Cited by 38 •

2015

Cartilage repair represents an unmet medical challenge and cell-based approaches to engineer human articular cartilage are a promising solution. Here, we describe three-dimensional (3D) biomimetic hydrogels as an ideal tool for the expansion and maturation of human articular chondrocytes.

View All Results

FAQs

Related Topics