Three-dimensional culture models: emerging platforms for screening the antitumoral efficacy of nanomedicines.

Larissa Bueno Tofani, Marcela Tavares Luiz, Jessyca Aparecida Paes Dutra, Juliana Palma Abriata, Marlus Chorilli

Journal: Nanomedicine (London, England) 2023;18(7):633-647

PMID: 37183804

Abstract

Nanomedicines have been investigated for delivering drugs to tumors due to their ability to accumulate in the tumor tissues. 2D cell culture has been used to investigate the antitumoral potential of nanomedicines. However, a 2D model cannot adequately mimic the tissue conditions because of the lack of cell-cell interaction, a gradient of nutrients and the expression of genes. To overcome this limitation, 3D cell culture models have emerged as promising platforms that better replicate the complexity of native tumors. For this purpose, different techniques can be used to produce 3D models, including scaffold-free, scaffold-based and microfluidic-based models. This review addresses the principles, advantages and limitations of these culture methods for evaluating the antitumoral efficacy of nanomedicines.

Address: School of Pharmaceutical Science of Ribeirao Preto, University of Sao Paulo (USP), Ribeirao Preto, Sao Paulo, 14040-903, Brazil.; School of Pharmaceutical Science of Sao Paulo State University (UNESP), Araraquara, Sao Paulo, 14800-903, Brazil.

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