Novel Chitosan Dermal Filler with Enhanced Moldability and Elasticity.

Macromolecular bioscience 2022 Vol.22(8) p. e2200081

Kim JY, Kim SH, Choi MH, Lee SH, Cha M, Park JU

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Abstract

Currently, dermal fillers are largely based on commercialized cross-linked hyaluronic acid (HA) injections, which require a large injection force. Additionally, HA can be easily decomposed by enzymes, and HA-treated tissues present a risk of developing granuloma. In this study, a chitosan-based dermal filler is presented that operates on a liquid-to-gel transition and allows the injection force to be kept ≈4.7 times lower than that required for HA injections. Evaluation of the physical properties of the chitosan filler indicates high viscoelasticity and recovery rate after gelation at 37 °C. Furthermore, in an in vivo evaluation, the liquid injection-type chitosan filler transitions to a gel state within 5 min after injection into the body, and exhibits a compressive strength that is ≈2.4 times higher than that of cross-linked HA. The filler also exhibits higher moldability and maintains a constant volume in the skin for a longer time than the commercial HA filler. Therefore, it is expected that the chitosan filler will be clinically applicable as a novel material for dermal tissue restoration and supplementation.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
재료 ha 히알루론산 dict 6
시술 filler 필러 주입술 dict 4
시술 dermal filler 필러 주입술 dict 2
시술 ha filler 필러 주입술 dict 1
재료 hyaluronic acid 히알루론산 dict 1

MeSH Terms

Biocompatible Materials; Chitosan; Dermal Fillers; Elasticity; Hyaluronic Acid

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