Does cannula's size alter rheological properties of hyaluronic acid filler?

International journal of biological macromolecules 2024 Vol.281(Pt 3) p. 135915

Sisnando AL, Nayak VV, Câmara-Sousa MB, Morphy ON, Furtado GRD, Witek L, Carbone AC, Rizzatti-Barbosa CM, De la Torre Canales G

관련 도메인

Abstract

This study evaluated the rheological properties of various hyaluronic acid (HA) gels after passing through different-sized cannulas (22-G and 25-G). Five commercial brands of highly crosslinked HA fillers were analyzed: (A) Rennova® Ultra Deep, (B) Restylane® Lyft, (C) Hialurox® - Ultra Lift, (D) Belotero® Volume, and (E) E.P.T.Q S500. Rheological characterization was conducted using an automated controlled stress rheometer. The rheological properties of the fillers were assessed both before and after passing through the cannulas. Each filler brand and cannula size was tested three times by a researcher who was blinded to the commercial brands. For data analysis, frequencies of 0.1, 0.5, and 2 Hz were employed. The rheological properties (storage modulus [G'] and loss modulus [G"]) of the high-crosslink HA fillers did not change after being passed through cannulas of different sizes (22-G and 25-G) (p > 0.109) compared to baseline measurements (no cannula). Furthermore, all fillers displayed desirable solid-like, volumizing behavior at low frequencies and strain amplitudes (<10 %). Under physiologically relevant conditions for skin and facial applications, the cannula size did not alter the rheological properties of high crosslink HA fillers.

추출된 의학 개체 (NER)

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

MeSH Terms

Hyaluronic Acid; Rheology; Cannula; Dermal Fillers; Gels; Humans

🔗 함께 등장하는 도메인

이 논문이 속한 카테고리와 같은 논문에서 자주 함께 다뤄지는 카테고리들

관련 논문