Preparation and properties of EDC/NHS mediated crosslinking poly (gamma-glutamic acid)/epsilon-polylysine hydrogels

Mater Sci Eng C Mater Biol Appl. 2016 Apr 1:61:879-92. doi: 10.1016/j.msec.2016.01.001. Epub 2016 Jan 6.

Abstract

In this paper, a novel pH-sensitive poly (amino acid) hydrogel based on poly γ-glutamic acid (γ-PGA) and ε-polylysine (ε-PL) was prepared by carbodiimide (EDC) and N-hydroxysuccinimide (NHS) mediated polymerization. The influence of PGA/PL molar ratio and EDC/NHS concentration on the structure and properties was studied. Fourier transform infrared spectroscopy (FT-IR) and X-ray photoelectron spectroscopy (XPS) proved that hydrogels were crosslinked through amide bond linkage, and the conversion rate of a carboxyl group could reach 96%. Scanning electron microscopy (SEM) results showed a regularly porous structure with 20 μm pore size in average. The gelation time in the crosslink process of PGA/PL hydrogels was within less than 5 min. PGA/PL hydrogels had excellent optical performance that was evaluated by a novel optotype method. Furthermore, PGA/PL hydrogels were found to be pH-sensitive, which could be adjusted to the pH of swelling media intelligently. The terminal pH of swelling medium could be controlled at 5 ± 1 after equilibrium when the initial pH was within 3-11. The swelling kinetics was found to follow a Voigt model in deionized water but a pseudo-second-order model in normal saline and phosphate buffer solution, respectively. The differential swelling degrees were attributed to the swelling theory based on the different ratio of -COOH/-NH2 and pore size in hydrogels. The results of mechanical property indicated that PGA/PL hydrogels were soft and elastic. Moreover, PGA/PL hydrogels exhibited excellent biocompatibility by cell proliferation experiment. PGA/PL hydrogels could be degraded in PBS solution and the degradation rate was decreased with the increase of the molar ratio of PL. Considering the simple preparation process and pH-sensitive property, these PGA/PL hydrogels might have high potential for use in medical and clinical fields.

Keywords: Biocompatibility; Hydrogel; Poly γ-glutamic acid; Swelling kinetics; ε-Polylysine.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Biocompatible Materials / chemistry
  • Biocompatible Materials / pharmacology
  • Cell Adhesion / drug effects
  • Cell Line
  • Cell Proliferation / drug effects
  • Ethyldimethylaminopropyl Carbodiimide / chemistry
  • Hydrogels / chemistry*
  • Hydrogen-Ion Concentration
  • Mice
  • Microscopy, Electron, Scanning
  • Photoelectron Spectroscopy
  • Polyglutamic Acid / analogs & derivatives*
  • Polyglutamic Acid / chemistry
  • Polylysine / chemistry*
  • Porosity
  • Spectroscopy, Fourier Transform Infrared
  • Succinimides / chemistry

Substances

  • Biocompatible Materials
  • Hydrogels
  • Succinimides
  • poly(gamma-glutamic acid)
  • Polylysine
  • Polyglutamic Acid
  • N-hydroxysuccinimide
  • Ethyldimethylaminopropyl Carbodiimide