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Progress in Conductive Polyaniline-Based Nanocomposites for Biomedical Applications: A Review
Authors
B. Ashtari
P. Makvandi
+4 more
A. Motahari
G. Perale
F. Rossi
E.N. Zare
Publication date
1 January 2020
Publisher
'American Chemical Society (ACS)'
Abstract
Inherently conducting polymers (ICPs) are a specific category of synthetic polymers with distinctive electro-optic properties, which involve conjugated chains with alternating single and double bonds. Polyaniline (PANI), as one of the most well-known ICPs, has outstanding potential applications in biomedicine because of its high electrical conductivity and biocompatibility caused by its hydrophilic nature, low-toxicity, good environmental stability, and nanostructured morphology. Some of the limitations in the use of PANI, such as its low processability and degradability, can be overcome by the preparation of its blends and nanocomposites with various (bio)polymers and nanomaterials, respectively. This review describes the state-of-the-art of biological activities and applications of conductive PANI-based nanocomposites in the biomedical fields, such as antimicrobial therapy, drug delivery, biosensors, nerve regeneration, and tissue engineering. The latest progresses in the biomedical applications of PANI-based nanocomposites are reviewed to provide a background for future research. © 2019 American Chemical Society
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eprints Iran University of Medical Sciences
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Last time updated on 05/09/2020