Hyaluronic Acid Scaffold

Hyaluronic acid scaffolds are hydrated biomaterial matrices that mimic aspects of the extracellular environment and provide a temporary framework for tissue repair and regeneration. In bioengineering, hyaluronic acid chains are commonly crosslinked into three-dimensional hydrogels, producing networks whose mechanical properties, porosity, and degradation behavior can be adjusted for different cell and tissue requirements; interactions with cell-surface receptors can also influence adhesion, migration, and signaling. These scaffolds support cell culture, controlled delivery of therapeutic molecules, wound healing, and engineered tissue formation. Their tunability and biological compatibility make them useful platforms for studying cell behavior and developing regenerative therapies.

Hyaluronic Acid Scaffold - Related Videos

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JoVE EoE - Neuronal Culture Techniques

A Hyaluronic Acid-Based Hydrogel for 3-Dimensional Culture of Glioblastoma Cells

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2025

This video demonstrates how gliomaspheres, derived from brain tumors, are separated into single cells and encapsulated in a hyaluronic acid-based hydrogel. This process promotes cell-cell interactions, forming a structured, three-dimensional glioblastoma model.

Micropatterned Surfaces to Study Hyaluronic Acid Interactions with Cancer Cells

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Cited by 11 •

2010

A novel approach that allows the high-resolution analysis of cancer cell interactions with exogenous hyaluronic acid (HA) is described. Patterned surfaces are fabricated by combining carbodiimide chemistry and microcontact printing.

Research

JoVE Journal - Bioengineering
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Elastomeric PGS Scaffolds in Arterial Tissue Engineering

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Cited by 21 •

2011

Elastomeric PGS scaffolds with vascular smooth muscle cells cultured in a pulsatile flow bioreactor may lead to promising small-diameter arterial constructs with native ECM production in a relatively short culture period.

Electrospinning Fibrous Polymer Scaffolds for Tissue Engineering and Cell Culture

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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.

A Facile and Eco-friendly Route to Fabricate Poly(Lactic Acid) Scaffolds with Graded Pore Size

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Cited by 18 •

2016

In this work, poly(lactic acid)/polyethylene glycol (PLA/PEG) scaffolds were prepared by using a combination of melt mixing and selective leaching. The method herein discussed permitted to develop three-layer scaffolds by highly controlling both porosity and pore size. The mechanical properties were also evaluated in a physiological environment.

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