PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2022

Recent progress on polymer scaffolds production: Methods, main results, advantages and disadvantages

Authors

Montanheiro, Thaís Larissa Do Amaral
Schatkoski, Vanessa Modelski
de Menezes, Beatriz Rossi Canuto
Pereira, Raissa Monteiro
Ribas, Renata Guimarães
de Freitas, Amanda de Sousa Martinez
Lemes, Ana Paula
Fernandes, Maria Helena Figueira Vaz

Express Polymer Letters , vol. 16 , no. 2 , pp. 197-219

ISSN: 1788618X

33
Citations
9
Authors

Abstract

© BME-PT.Porous polymeric scaffolds provide a physical substrate for cells to attach and proliferate, allowing the formation of new tissue. These materials are broadly used in the tissue engineering field due to their ability to mimic native tissue. Each application requires specific morphologies and resistance, among other several features. To accomplish these requirements, various techniques are available, each one with its advantages and disadvantages. Among the most relevant techniques are salt leaching, solvent casting, gas foaming, thermally induced phase separation, freeze-drying, electrospinning, thermally induced self-agglomeration, and three-dimensional (3D) printing. In this review, a brief and simple explanation of each method is described, along with some recent results and each technique’s advantages and disadvantages. It is expected that this review will bring important guidance in the production of polymer scaffolds for tissue engineering.

Keywords

3D scaffold Biocompatible polymers Polymer scaffold Production techniques Tissue engineering

Chemical Engineering (all) (CENG) Physical and Theoretical Chemistry (CHEM) Polymers and Plastics (MATE) Organic Chemistry (CHEM) Materials Chemistry (MATE)
: Scopus
Last Update: 2026-06-25
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