4.6 Article

Ethanolic Fenugreek Extract: Its Molecular Mechanisms against Skin Aging and the Enhanced Functions by Nanoencapsulation

期刊

PHARMACEUTICALS
卷 15, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/ph15020254

关键词

fenugreek; rutin; anti-collagenase; anti-aging; collagen production; liponiosomes; nanoencapsulation; lipid particles; transdermal delivery; sustained release

资金

  1. National Nanotechnology Platform (NPT) [P1551300, P1651121, P1851708, P1952244]

向作者/读者索取更多资源

This research demonstrates that fenugreek extract has inhibitory activity against collagenase and nanoencapsulation can enhance its bioactivities. The formulated liponiosome encapsulating fenugreek extract (LNF) exhibits sustained release, improved skin penetration, and molecular mechanisms against skin aging. It could potentially be used as an innovative ingredient for the prevention of skin aging.
Fenugreek, or Trigonella foenum-graecum L. (family Leguminosae) seeds, are typically used as food supplements to increase postnatal lactation. Fenugreek extract displays antioxidative and anti-inflammatory properties, but its mechanisms against skin aging have not been exploited. In this research, we are the first to define an in vitro collagenase inhibitory activity of fenugreek extract (IC50 = 0.57 +/- 0.02 mg/mL), which is 2.6 times more potent than vitamin C (IC50 = 1.46 mg/mL). Nanoencapsulation has been applied to improve the extract stability, and subsequently enhanced its bioactivities. Liponiosome encapsulating fenugreek extract (LNF) was prepared using a high-speed homogenizer, resulting in homogeneous spherical nanoparticles with sizes in the range of 174.7 +/- 49.2 nm, 0.26 +/- 0.04 in PdI, and 46.6 +/- 7.4% of entrapment efficiency. LNF formulation significantly facilitated a sustained release and significantly enhanced skin penetration over the extracts, suggesting a potential use of LNF for transdermal delivery. The formulated LNF was highly stable, not toxic to human fibroblast, and was able to enhance cell viability, collagen production, and inhibit MMP1, MMP9, IL-6, and IL-8 secretions compared to the extract in the co-cultured skin model. Therefore, ethanolic fenugreek extract and its developed LNF display molecular mechanisms against skin aging and could potentially be used as an innovative ingredient for the prevention of skin aging.

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