Poly(aspartic acid) in Biomedical Applications: From Polymerization, Modification, Properties, Degradation, and Biocompatibility to Applications.

Hossein Adelnia, Huong D N Tran, Peter J Little, Idriss Blakey, Hang T Ta

Journal: ACS biomaterials science & engineering 2021;7(6):2083-2105

PMID: 33797239

Abstract

Poly(aspartic acid) (PASP) is an anionic polypeptide that is a highly versatile, biocompatible, and biodegradable polymer that fulfils key requirements for use in a wide variety of biomedical applications. The derivatives of PASP can be readily tailored via the amine-reactive precursor, poly(succinimide) (PSI), which opens up a large window of opportunity for the design and development of novel biomaterials. PASP also has a strong affinity with calcium ions, resulting in complexation, which has been exploited for bone targeting and biomineralization. In addition, recent studies have further verified the biocompatibility and biodegradability of PASP-based polymers, which is attributed to their protein-like structure. In light of growing interest in PASP and its derivatives, this paper presents a comprehensive review on their synthesis, characterization, modification, biodegradation, biocompatibility, and applications in biomedical areas.

Address: Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, Queensland 4072, Australia.; Queensland Micro- and Nanotechnology, Griffith University, Nathan, Queensland 4111, Australia.; School of Pharmacy, Pharmacy Australia Centre of Excellence, The University of Queensland, Woolloongabba, Queensland 4012, Australia.; Sunshine Coast Health Institute, University of the Sunshine Coast, Birtinya, Queensland 4575, Australia.; Centre for Advanced Imaging, University of Queensland, Brisbane, Queensland 4067, Australia.; School of Environment and Science, Griffith University, Nathan, Queensland 411, Australia.

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