Complex coacervate‐based materials for biomedicine

Материалы на основе сложных коацерватов для биомедицины
Whitney Blocher, Sarah L. Perry
2016-11-04

biomaterial encapsulationbiomedical adhesivescomplex coacervatesdrug deliverypolyelectrolyte complexation
There has been increasing interest in complex coacervates for deriving and transporting biomaterials. Complex coacervates are a dense, polyelectrolyte-rich liquid that results from the electrostatic complexation of oppositely charged macroions. Coacervates have long been used as a strategy for encapsulation, particularly in food and personal care products. More recent efforts have focused on the utility of this class of materials for the encapsulation of small molecules, proteins, RNA, DNA, and other biomaterials for applications ranging from sensing to biomedicine. Furthermore, coacervate-related materials have found utility in other areas of biomedicine, including cartilage mimics, tissue culture scaffolds, and adhesives for wet, biological environments. Here, we discuss the self-assembly of complex coacervate-based materials, current challenges in the intelligent design of these materials, and their utility applications in the broad field of biomedicine. WIREs Nanomed Nanobiotechnol 2017, 9:e1442. doi: 10.1002/wnan.1442 For further resources related to this article, please visit the WIREs website.
1
Biomedical applications extend beyond delivery to sensing, cartilage-mimetic materials, tissue-culture scaffolds, and adhesives for wet biological environments.
2
Coacervate-based materials can encapsulate and transport diverse biomaterials, including small molecules, proteins, RNA, and DNA.
3
Complex coacervates are dense, polyelectrolyte-rich liquids formed through electrostatic complexation of oppositely charged macroions.
4
The review identifies self-assembly mechanisms and challenges in intelligently designing complex coacervate-based materials for biomedical use.

complex coacervate-based materials for biomedical applications

self-assembly, encapsulation and transport of biomaterials, and biomedical functionality of complex coacervate-based materials

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2016-11-04
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Whitney Blocher
Sarah L. Perry
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