Phase Equilibria and Structure Formation in the Polylactic-co-Glycolic Acid/Tetraglycol/Water Ternary System

Author:

Algebraistova Polina Yu.1,Basko Andrey V.2ORCID,Ilyasova Anna N.2,Lebedeva Tatyana N.2,Mironov Anton V.1ORCID,Pochivalov Konstantin V.23ORCID,Popov Vladimir K.1ORCID

Affiliation:

1. Institute of Photonic Technologies, Federal Scientific Research Center “Crystallography and Photonics”, Russian Academy of Sciences, Pionerskaya 2, Troitsk, Moscow 108840, Russia

2. G.A. Krestov Institute of Solution Chemistry, Russian Academy of Sciences, Akademicheskaya 1, Ivanovo 153045, Russia

3. Institute of Macromolecular Compounds, Russian Academy of Sciences, Bolshoi Prospekt 31, St. Petersburg 199004, Russia

Abstract

This paper concerns a detailed study of the phase separation and structure formation processes that occur in solutions of highly hydrophobic polylactic-co-glycolic acid (PLGA) in highly hydrophilic tetraglycol (TG) upon their contact with aqueous media. In the present work, cloud point methodology, high-speed video recording, differential scanning calorimetry, and both optical and scanning electron microscopy were used to analyze the behavior of PLGA/TG mixtures differing in composition when they are immersed in water (the so-called “harsh” antisolvent) or in a nonsolvent consisting of equal amounts of water and TG (a “soft” antisolvent). The phase diagram of the ternary PLGA/TG/water system was designed and constructed for the first time. The PLGA/TG mixture composition with which the polymer undergoes glass transition at room temperature was determined. Our data enabled us to analyze in detail the structure evolution process taking place in various mixtures upon their immersion in “harsh” and “soft” antisolvent baths and gain an insight into the peculiarities of the structure formation mechanism active in the course of antisolvent-induced phase separation in PLGA/TG/water mixtures. This provides intriguing opportunities for the controlled fabrication of a wide variety of bioresorbable structures—from polyester microparticles, fibers, and membranes to scaffolds for tissue engineering.

Funder

Ministry of Science and Higher Education within the State assignment FSRC “Crystallography and Photonics” RAS

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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