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Hyaluronic Acid: The Influence of Molecular Weight on Structural, Physical, Physico-Chemical, and Degradable Properties of Biopolymer

Polymers · 2020 · Vol. 12(8) · pp. 1800–1800
Petr SnetkovKseniia ZakharovaС. Н. МорозкинаRoman O. OlekhnovichM. V. Uspenskaya

Abstract

Hyaluronic acid, as a natural linear polysaccharide, has attracted researchers' attention from its initial detection and isolation from tissues in 1934 until the present day. Due to biocompatibility and a high biodegradation of hyaluronic acid, it finds wide application in bioengineering and biomedicine: from biorevitalizing skin cosmetics and endoprostheses of joint fluid to polymeric scaffolds and wound dressings. However, the main properties of aqueous polysaccharide solutions with different molecular weights are different. Moreover, the therapeutic effect of hyaluronic acid-based preparations directly depends on the molecular weight of the biopolymer. The present review collects the information about relations between the molecular weight of hyaluronic acid and its original properties. Particular emphasis is placed on the structural, physical and physico-chemical properties of hyaluronic acid in water solutions, as well as their degradability.

Proteoglycans and glycosaminoglycans researchPolysaccharides Composition and ApplicationsHydrogels: synthesis, properties, applicationsHyaluronic acidBiopolymerBiocompatibilityChemistryPolymerAqueous solutionPolysaccharideCosmeticsChemical engineeringPolymer science

Funding

  • Russian Foundation for Basic Research
  • Ministry of Science and Higher Education of the Russian Federation
Citations
505
FWCI
24.06
field-weighted impact
References
143
Percentile
100%
vs. same field & year
Citations per year
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