Design, Synthesis and Actual Applications of the Polymers Containing Acidic P-OH Fragments: Part 1. Polyphosphodiesters

Int J Mol Sci. 2022 Nov 28;23(23):14857. doi: 10.3390/ijms232314857.

Abstract

Among natural and synthetic polymers, main-chain phosphorus-containing polyacids (PCPAs) (polyphosphodiesters), stand in a unique position at the intersection of chemistry, physics, biology and medicine. The structural similarity of polyphosphodiesters PCPAs to natural nucleic and teichoic acids, their biocompatibility, mimicking to biomolecules providing the 'stealth effect', high bone mineral affinity of polyphosphodiesters resulting in biomineralization at physiological conditions, and adjustable hydrolytic stability of polyphosphodiesters are the basis for various biomedical, industrial and household applications of this type of polymers. In the present review, we discuss the synthesis, properties and actual applications of polyphosphodiesters.

Keywords: biocompatibility; biodegradable polymers; biomineralization; drug delivery; metathesis polymerization; phosphodiesters; poly(phosphodiester)s; polycondensation; polymer composites; polyphosphates; polyphosphonates; ring-opening polymerization.

Publication types

  • Review

MeSH terms

  • Acids* / chemistry
  • Polymerization
  • Polymers* / chemistry

Substances

  • Polymers
  • Acids