Literature DB >> 30191323

Engineered 3D tumour model for study of glioblastoma aggressiveness and drug evaluation on a detachably assembled microfluidic device.

Jingyun Ma1,2, Na Li1,2, Yachen Wang1,2, Liang Wang1,2, Wenjuan Wei1,2, Liming Shen1,2, Yu Sun1,2, Yang Jiao1,2, Weigong Chen1,2, Jing Liu3,4.   

Abstract

3D models of tumours have emerged as an advanced technique in pharmacology and tumour cell biology, in particular for studying malignant tumours such as glioblastoma multiforme (GBM). Herein, we developed a 3D GBM model on a detachably assembled microfluidic device, which could be used to study GBM aggressiveness and for anti-GBM drug testing. Fundamental characteristics of the GBM microenvironment in terms of 3D tissue organisation, extracellular matrices and blood flow were reproduced in vitro by serial manipulations in the integrated microfluidic device, including GBM spheroid self-assembly, embedding in a collagen matrix, and continuous perfusion culture, respectively. We could realize multiple spheroids parallel manipulation, whilst, compartmentalized culture, in a highly flexible manner. This method facilitated investigations into the viability, proliferation, invasiveness and phenotype transition of GBM in a 3D microenvironment and under continuous stimulation by drugs. Anti-invasion effect of resveratrol, a naturally isolated polyphenol, was innovatively evaluated using this in vitro 3D GBM model. Temozolomide and the combination of resveratrol and temozolomide were also evaluated as control. This scalable model enables research into GBM in a more physiologically relevant microenvironment, which renders it promising for use in translational or personalised medicine to examine the impact of, or identify combinations of, therapeutic agents.

Entities:  

Keywords:  3D tumour model; Glioblastoma multiforme (GBM); Invasion; Microfluidic; Resveratrol

Mesh:

Year:  2018        PMID: 30191323     DOI: 10.1007/s10544-018-0322-4

Source DB:  PubMed          Journal:  Biomed Microdevices        ISSN: 1387-2176            Impact factor:   2.838


  5 in total

Review 1.  Microfluidics for 3D Cell and Tissue Cultures: Microfabricative and Ethical Aspects Updates.

Authors:  Tania Limongi; Francesco Guzzi; Elvira Parrotta; Patrizio Candeloro; Stefania Scalise; Valeria Lucchino; Francesco Gentile; Luca Tirinato; Maria Laura Coluccio; Bruno Torre; Marco Allione; Monica Marini; Francesca Susa; Enzo Di Fabrizio; Giovanni Cuda; Gerardo Perozziello
Journal:  Cells       Date:  2022-05-20       Impact factor: 7.666

2.  Magnetic hyperthermia therapy in glioblastoma tumor on-a-Chip model.

Authors:  Javier Bustamante Mamani; Bruna Souto Marinho; Gabriel Nery de Albuquerque Rego; Mariana Penteado Nucci; Fernando Alvieri; Ricardo Silva Dos Santos; João Victor Matias Ferreira; Fernando Anselmo de Oliveira; Lionel Fernel Gamarra
Journal:  Einstein (Sao Paulo)       Date:  2020-01-10

Review 3.  Organ-on-a-Chip Platforms for Drug Screening and Delivery in Tumor Cells: A Systematic Review.

Authors:  Inês M Gonçalves; Violeta Carvalho; Raquel O Rodrigues; Diana Pinho; Senhorinha F C F Teixeira; Ana Moita; Takeshi Hori; Hirokazu Kaji; Rui Lima; Graça Minas
Journal:  Cancers (Basel)       Date:  2022-02-13       Impact factor: 6.639

Review 4.  Three-Dimensional in vitro Models of Healthy and Tumor Brain Microvasculature for Drug and Toxicity Screening.

Authors:  Marie Piantino; Agathe Figarol; Michiya Matsusaki
Journal:  Front Toxicol       Date:  2021-05-04

Review 5.  The Advances in Glioblastoma On-a-Chip for Therapy Approaches.

Authors:  Arielly H Alves; Mariana P Nucci; Javier B Mamani; Nicole M E Valle; Eduarda F Ribeiro; Gabriel N A Rego; Fernando A Oliveira; Matheus H Theinel; Ricardo S Santos; Lionel F Gamarra
Journal:  Cancers (Basel)       Date:  2022-02-09       Impact factor: 6.639

  5 in total

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