Nanofiber Scaffolds

Nanofiber scaffolds are three-dimensional biomaterial structures composed of fibers with nanoscale diameters that support cell growth, organization, and tissue formation. Their high surface-area-to-volume ratio and interconnected porosity provide sites for cell attachment and influence the transport of nutrients, oxygen, and signaling molecules; fabrication methods such as electrospinning can tune fiber alignment, diameter, and composition. In bioengineering, these scaffolds help replicate aspects of the extracellular matrix for tissue engineering, regenerative medicine, and drug delivery. By adjusting their physical and biochemical properties, researchers can guide cell behavior and develop materials suited to specific tissues and therapeutic applications.

Nanofiber Scaffolds - Related Videos

Research

JoVE Journal - Bioengineering

Electrospun Nanofiber Scaffolds with Gradations in Fiber Organization

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Cited by 5 •

2015

Here, we present a protocol to fabricate electrospun nanofiber scaffolds with gradated organization of fibers and explore their applications in regulating cell morphology/orientation. Gradients with regard to physical and chemical properties of the nanofiber scaffolds offer a wide variety of applications in the biomedical field.

Expansion of Two-dimension Electrospun Nanofiber Mats into Three-dimension Scaffolds

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Cited by 6 •

2019

This article demonstrates the technique of expanding a traditional, two-dimension (2D) electrospun nanofiber mat into a three-dimension (3D) scaffold through the depressurization of subcritical CO2 fluid. These augmented scaffolds are 3D, closely mimic cellular nanotopographic cues, and preserve the functions of biologic molecules encapsulated within the nanofibers.

Procedure for Fabricating Biofunctional Nanofibers

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Cited by 1 •

2012

An efficient approach for preparing nanofibers decorated with functional groups capable of specifically interacting with proteins is described. The approach first requires the preparation of a polymer functionalized with the appropriate functional group. The functional polymer is fabricated into nanofibers by electrospinning. The effectiveness of the binding of the nanofibers with a protein is studied by confocal microscopy.

Research

JoVE Journal - Neuroscience
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The Culture of Primary Motor and Sensory Neurons in Defined Media on Electrospun Poly-L-lactide Nanofiber Scaffolds

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Cited by 33 •

2011

Aligned electrospun fibers direct the growth of neurons in vitro and are a potential component of nerve regeneration scaffolds. We describe a procedure for preparing electrospun fiber substrates and the serum-free culture of primary rat E15 sensory (DRG) and motor neurons. Visualization of neurons by immunocytochemistry is also included.

Synthesis of Keratin-based Nanofiber for Biomedical Engineering

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Cited by 12 •

2016

Electrospun nanofibers have a high surface area to weight ratio, excellent mechanical integrity, and support cell growth and proliferation. These nanofibers have a wide range of biomedical applications. Here we fabricate keratin/ PCL nanofibers, using the electrospinning technique, and characterize the fibers for possible applications in tissue engineering.

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