Yang Fan, Wang Hua, Luo Dan, Deng Jun, Hu Yawen, Liu Zhi, Liu Wei
College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
Research & Development Center, Mageline Biology Tech Co., Ltd., Wuhan 430000, China.
Pharmaceutics. 2025 Jul 24;17(8):956. doi: 10.3390/pharmaceutics17080956.
: Sialic acid (SA), a naturally occurring compound abundantly found in birds' nests, holds immense promise for skincare applications owing to its remarkable biological properties. However, its low bioavailability, poor stability, and limited skin permeability have constrained its widespread application. : To overcome these challenges, SA was encapsulated within nanoliposomes (NLPs) by the high-pressure homogenization technique to develop an advanced and efficient transdermal drug delivery system. The skincare capabilities of this novel system were comprehensively evaluated across multiple experimental platforms, including in vitro cell assays, 3D skin models, in vivo zebrafish studies, and clinical human trials. : The SA-loaded NLPs (SA-NLPs) substantially improved the transdermal penetration and retention of SA, facilitating enhanced cellular uptake and cell proliferation. Compared to free SA, SA-NLPs demonstrated a 246.98% increase in skin retention and 1.8-fold greater cellular uptake in HDF cells. Moreover, SA-NLPs protected cells from oxidative stress-induced damage, stimulated collagen synthesis, and effectively suppressed the secretion of matrix metalloproteinases, tyrosinase activity, and melanin production. Additionally, zebrafish-based assays provided in vivo evidence of the skincare efficacy of SA-NLPs. Notably, clinical evaluations demonstrated that a 56-day application of the SA-NLPs-containing cream resulted in a 4.20% increase in L*, 7.87% decrease in b*, 8.45% decrease in TEWL, and 4.01% reduction in wrinkle length, indicating its superior brightening, barrier-repair, and anti-aging effects. : This multi-level, systematic investigation strongly suggests that SA-NLPs represent a highly promising transdermal delivery strategy, capable of significantly enhancing the anti-aging, barrier-repair, and skin-brightening properties of SA, thus opening new avenues for its application in the fields of dermatology and cosmeceuticals.
唾液酸(SA)是一种在燕窝中大量存在的天然化合物,因其卓越的生物学特性,在护肤品应用方面具有巨大潜力。然而,其低生物利用度、稳定性差和皮肤渗透性有限等问题限制了其广泛应用。为克服这些挑战,采用高压均质技术将SA包裹于纳米脂质体(NLPs)中,以开发一种先进且高效的透皮给药系统。该新型系统的护肤能力在多个实验平台上进行了全面评估,包括体外细胞试验、3D皮肤模型、体内斑马鱼研究和临床人体试验。负载SA的NLPs(SA-NLPs)显著提高了SA的透皮渗透率和滞留率,促进了细胞摄取和细胞增殖增强。与游离SA相比,SA-NLPs在人皮肤成纤维细胞(HDF细胞)中的皮肤滞留率提高了246.98%,细胞摄取量增加了1.8倍。此外,SA-NLPs保护细胞免受氧化应激诱导的损伤,刺激胶原蛋白合成,并有效抑制基质金属蛋白酶的分泌、酪氨酸酶活性和黑色素生成。此外,基于斑马鱼的试验提供了SA-NLPs护肤功效的体内证据。值得注意的是,临床评估表明,连续56天使用含SA-NLPs的乳膏,可使L值增加4.20%,b值降低7.87%,经皮水分流失(TEWL)降低8.45%,皱纹长度减少4.01%,表明其具有卓越的提亮、屏障修复和抗皱效果。这项多层次、系统性的研究有力地表明,SA-NLPs代表了一种极具前景的透皮给药策略,能够显著增强SA的抗皱、屏障修复和亮肤特性,从而为其在皮肤病学和药妆领域的应用开辟新途径。