Ryu Hyo-Jeong, Kwak Seong-Sung, Rhee Chang-Hoon, Yang Gi-Hyeok, Yun Hwi-Yeol, Kang Won-Ho
Gwangkyo R & D Center, Medytox Inc., Suwon 16506, Korea.
College of Pharmacy, Chungnam National University, Daejeon 34134, Korea.
Pharmaceutics. 2021 Jan 21;13(2):133. doi: 10.3390/pharmaceutics13020133.
Dermal fillers are gel-type substances for nonsurgical medical-device use to achieve facial rejuvenation. Currently, the most widely used skin fillers are hyaluronic-acid-based dermal fillers. This study aimed to explain the change in the volume of injected dermal fillers by developing a mathematical kinetic model for various dermal fillers. The kinetics of the injected fillers were separated by a biphasic phenomenon. We attributed an increase in filler volume to the hydration of hyaluronic acid molecules and injection-site reaction and a decrease in volume to enzyme-mediated degradation. To explain these in vivo characteristics of dermal fillers, we proposed a two-compartment model, divided into a depot compartment (where the filler was injected) and a subcutaneous compartment (an observation compartment where the fillers swell and degrade), assuming that the swelling and degradation occurred in accordance with the swelling and degradation rate constants, respectively. The model was developed using five hyaluronic-acid-based dermal fillers and NONMEM. We determined that the rate-limiting step for the complete degradation of the dermal fillers in vivo was the swelling phase, as described by the swelling rate constant (). This study could enable scientists developing novel dermal fillers to predict the in vivo behavior of fillers.
真皮填充剂是用于非手术医疗设备的凝胶类物质,用于实现面部年轻化。目前,使用最广泛的皮肤填充剂是基于透明质酸的真皮填充剂。本研究旨在通过为各种真皮填充剂建立数学动力学模型来解释注射真皮填充剂体积的变化。注射填充剂的动力学表现为双相现象。我们将填充剂体积的增加归因于透明质酸分子的水合作用和注射部位反应,而体积的减少归因于酶介导的降解。为了解释真皮填充剂的这些体内特性,我们提出了一个双室模型,分为储存室(填充剂注射部位)和皮下室(填充剂肿胀和降解的观察室),假设肿胀和降解分别按照肿胀和降解速率常数发生。该模型使用五种基于透明质酸的真皮填充剂和非线性混合效应模型(NONMEM)开发。我们确定,如肿胀速率常数()所描述的,体内真皮填充剂完全降解的限速步骤是肿胀阶段。这项研究可以使开发新型真皮填充剂的科学家预测填充剂的体内行为。