Ingá University Center, Uningá, Paraná, Brazil.
Department of Biochemistry and Molecular Biology, University of Miami Miller School of Medicine, Miami, FL, USA.
Int J Biol Macromol. 2024 Nov;281(Pt 3):135915. doi: 10.1016/j.ijbiomac.2024.135915. Epub 2024 Sep 27.
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.
本研究评估了不同尺寸(22-G 和 25-G)套管通过后各种透明质酸(HA)凝胶的流变性能。分析了五种商业品牌的高度交联 HA 填充剂:(A)Rennova®Ultra Deep、(B)Restylane®Lyft、(C)Hialurox®-Ultra Lift、(D)Belotero®Volume 和(E)E.P.T.Q S500。使用自动控制应变速率流变仪进行流变特性分析。在通过套管前后评估填充剂的流变特性。由对商业品牌不知情的研究人员对每个填充剂品牌和套管尺寸进行了三次测试。对于数据分析,使用了 0.1、0.5 和 2 Hz 的频率。与基线测量值(无套管)相比,不同尺寸(22-G 和 25-G)套管通过后,高交联 HA 填充剂的流变特性(储能模量[G']和损耗模量[G"])没有变化(p>0.109)。此外,所有填充物在低频和应变幅度(<10%)下均表现出理想的固态、体积填充行为。在皮肤和面部应用的生理相关条件下,套管尺寸不会改变高交联 HA 填充剂的流变特性。