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July 14, 2015SHILAP Revista de lepidopterología299 citationsOpen Access

Hydrogels for Engineering of Perfusable Vascular Networks

JLJuan LiuHZHuaiyuan ZhengPPPatrina S. P. Poh

Key Points

  • To review the hydrogel biomaterials, necessary physical properties, and fabrication techniques used to engineer perfusable vascular networks within 3D cell-laden constructs.
  • Assessed hydrogel biomaterials based on water content, biocompatibility, and biodegradability in 3D cell culture systems.
  • Surveyed biofabrication and engineering methodologies applied to integrate perfusable vascular networks into thick hydrogel matrices.
  • Confirmed that the limited diffusion of oxygen and nutrients strictly restricts the maximum size and cell density of unvascularized hydrogel scaffolds.
  • Identified critical hydrogel requirements, such as tailored degradation rates and mechanical fidelity, essential for sustaining lumen formation and fluid perfusion.
  • Summarized emerging fabrication strategies to support the translation of complex, vascularized engineered tissues toward clinical implantation.

Abstract

Hydrogels are commonly used biomaterials for tissue engineering. With their high-water content, good biocompatibility and biodegradability they resemble the natural extracellular environment and have been widely used as scaffolds for 3D cell culture and studies of cell biology. The possible size of such hydrogel constructs with embedded cells is limited by the cellular demand for oxygen and nutrients. For the fabrication of large and complex tissue constructs, vascular structures become necessary within the hydrogels to supply the encapsulated cells. In this review, we discuss the types of hydrogels that are currently used for the fabrication of constructs with embedded vascular networks, the key properties of hydrogels needed for this purpose and current techniques to engineer perfusable vascular structures into these hydrogels. We then discuss directions for future research aimed at engineering of vascularized tissue for implantation.

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Cite This Study

Liu et al. (2015) studied this question.

synapsesocial.com/papers/69d96224f20ef26330684b52https://doi.org/10.3390/ijms160715997
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