Spheroid Bioprinting

Spheroid bioprinting is a biofabrication technique that arranges multicellular spheroids, or three-dimensional cell aggregates, into controlled tissue-like architectures. During printing, spheroids serve as living building blocks and are positioned within a supportive bioink or scaffold, where cell adhesion, fusion, and extracellular matrix production help form cohesive constructs. In cancer research, this approach creates tumor models that better reproduce cell-cell interactions, tissue organization, and gradients of oxygen, nutrients, and drugs than conventional two-dimensional cultures. These models support studies of tumor growth, invasion, metastasis, and treatment response, while enabling more physiologically relevant drug screening and potentially improving personalized cancer research.

Spheroid Bioprinting - Related Videos

Research

JoVE Journal - Bioengineering

Creation of Cardiac Tissue Exhibiting Mechanical Integration of Spheroids Using 3D Bioprinting

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Cited by 55 •

2017

This protocol describes 3D bioprinting of cardiac tissue without the use of biomaterials. 3D bioprinted cardiac patches exhibit mechanical integration of component spheroids and are highly promising in cardiac tissue regeneration and as 3D models of heart disease.

Magnetically Bioprinted 3D Spheroid Co-cultures: A Method for Co-culturing Cancerous Cells and Fibroblasts

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2023

This video explains the 3D magnetic bioprinting of co-cultured pancreatic cancer cells and fibroblasts. Pancreatic cancer cells and activated pancreatic fibroblast cells are co-cultured and magnetized using a biocompatible nanoparticle assembly, to generate spheroids, under the influence of magnetic forces.

Bioprinting Cellularized Constructs Using a Tissue-specific Hydrogel Bioink

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Cited by 59 •

2016

We describe a set of protocols that together provide a tissue-mimicking hydrogel bioink with which functional and viable 3-D tissue constructs can be bioprinted for use in in vitro screening applications.

Direct Bioprinting of 3D Multicellular Breast Spheroids onto Endothelial Networks

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Cited by 7 •

2020

The goal of this protocol is to directly bioprint breast epithelial cells as multicellular spheroids onto pre-formed endothelial networks to rapidly create 3D breast-endothelial co-culture models which can be used for drug screening studies.

A Method for 3D Bioprinting Murine Cortical Astrocytes

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2025

The video demonstrates the process of creating a 3D bioprinted construct using astrocytes suspended in a bioink solution. The bioprinted construct, after crosslinking, facilitates astrocyte adhesion and their spreading, forming neural-like tissue.

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