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提取物和提取物复合物对头发状况的影响。

Effects of the Complex of Extract and Extract on Hair Condition.

机构信息

Epibiotech Co., Ltd., Incheon 21984, Republic of Korea.

Life Science Research Institute, Novarex Co., Ltd., Cheongju 28220, Republic of Korea.

出版信息

Nutrients. 2023 Oct 18;15(20):4411. doi: 10.3390/nu15204411.

Abstract

Proso millet ( L.) and common wheat ( L.) have been used as major crops in multiple regions since ancient times, and they contain various nutrients that can affect human hair health. This study investigated the various biological effects of a complex of millet extract and wheat extract (MWC) on hair health. Human immortalized dermal papilla cells (iDPCs) for an in vitro study and an anagen-synchronized mouse model for an in vivo study were employed. These findings revealed that the application of the MWC in vitro led to an increase in the mRNA levels of antioxidant enzymes (catalase and SOD1), growth factors (IGF-1, VEGF, and FGF7), and factors related to hair growth (wnt10b, β-catenin) while decreasing inflammatory cytokine mRNA levels (IL-6 and TNFα). The mRNA levels of hair follicles (HFs) in the dorsal skin of the mouse model in the early and late telogen phases were also measured. The mRNA levels in the in vivo study showed a similar alteration tendency as in the in vitro study in the early and late telogen phases. In this model, MWC treatment elongated the anagen phase of the hair cycle. These findings indicate that the MWC can suppress oxidative stress and inflammation and may elongate the anagen phase by enhancing the growth factors involved in the wnt10b/β-catenin signaling pathway. This study suggests that the MWC might have significant potential as a functional food for maintaining hair health.

摘要

黍米( Proso millet )和普通小麦( Common wheat )自古以来就在多个地区被用作主要作物,它们含有各种营养物质,可以影响人类的头发健康。本研究调查了黍米提取物和小麦提取物复合物(MWC)对头发健康的多种生物学影响。采用体外人永生化真皮乳头细胞(iDPCs)和体内毛发生长同步化小鼠模型进行研究。这些发现表明,MWC 在体外应用可增加抗氧化酶(过氧化氢酶和 SOD1)、生长因子(IGF-1、VEGF 和 FGF7)和与毛发生长相关的因子(wnt10b、β-catenin)的 mRNA 水平,同时降低炎症细胞因子的 mRNA 水平(IL-6 和 TNFα)。还测量了早期和晚期退行期小鼠模型背部皮肤中毛囊(HFs)的 mRNA 水平。体内研究的 mRNA 水平在早期和晚期退行期与体外研究表现出相似的变化趋势。在该模型中,MWC 处理可延长毛发生长周期的生长期。这些发现表明,MWC 可以抑制氧化应激和炎症,并通过增强涉及 wnt10b/β-catenin 信号通路的生长因子来延长生长期。本研究表明,MWC 作为一种维持头发健康的功能性食品可能具有重要的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c34/10609892/d40c930195f3/nutrients-15-04411-g001.jpg

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