
3D Bioprinting in Cancer Applications
by Fahima Dilnawaz, Tripti Sharma, Sanjeeb K. Sahoo, Shantibhusan Senapati
1st Edition
Publisher: Academic Press
Book Details
| Print ISBN | 9780443265181 |
| eText ISBN | 9780443265198 |
| Publisher | Academic Press |
| Publishing Year | 2025 |
| Edition | 1st Edition |
| Language | English |
| Pages | 392 |
The 1st Edition of 3D Bioprinting in Cancer Applications provides biofabrication principles and practical protocols for constructing biomimetic 3D cell culture models for cancer research. Written for researchers in biosciences and oncology, this volume explains specialized tissue engineering methodologies. Academic Press published the 392-page paperback volume in June 2025 under the editorial direction of Fahima Dilnawaz, Tripti Sharma, Sanjeeb K. Sahoo, and Shantibhusan Senapati.
The content spans thematic clusters dedicated to three-dimensional bioprinted platforms engineered for antiangiogenic drug screening and the study of cancer metastasis. Additional topics address hydrogel-microfluidic devices, hydrogel-patterning techniques, and bioinformatics approaches used to validate functional analyses of three-dimensional cancer models.
A key feature details scaffold-based cellular architectures developed using cellulose nanofibrils alongside multidimensional liquid patterning techniques. The collection supplies focused procedural directions to support laboratory specialists executing advanced drug validation studies.
Table of Contents
Chapter 1: Hydrogel-microfluidic devices for 3D cell culture
Chapter 2: Hydrogel-patterning technique for 3D cell culture
Chapter 3: Scaffold-based 3D cellular models in cancer tissue engineering
Chapter 4: Bioinformatics approaches for the validation of functional analysis of 3D cancer models
Chapter 5: Multidimensional liquid patterning for 3D microtissue engineering
Chapter 6: Injection-molded plastic array three-dimensional universal culture platform for various biological applications
Chapter 7: 3D cell-culture microfluidic devices for tumor microenvironment biomarker profiling
Chapter 8: 3D bioprinting for recapitulation of tumor microenvironment
Chapter 9: 3D bioprinted models for antiangiogenic drug screening and validation
Chapter 10: 3D bioprinting technology in cancer management: Applications, challenges, and future perspectives
Chapter 11: Three dimensional bioprinted models for drug screening cancer metastasis and prognosis study
Chapter 12: 3D bioprinted cancer model for anticancer drug testing
Chapter 13: 3D-printed scaffolds using cellulose nanofibrils
Chapter 14: Integration of 3D bioprinting and microfluidics
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