Oliva Aprill Kee, Bejaoui Meriem, Hirano Atsushi, Arimura Takashi, Linh Tran Ngoc, Uchiage Eriko, Nukaga Sachiko, Tominaga Kenichi, Nozaki Hiroyuki, Isoda Hiroko
Research and & Development Center for Tailor-Made QOL Program, University of Tsukuba, Tsukuba City 305-8550, Japan.
Alliance for Research on the Mediterranean and North Africa (ARENA), University of Tsukuba, Tsukuba City 305-8572, Japan.
Biomedicines. 2022 May 20;10(5):1186. doi: 10.3390/biomedicines10051186.
A person's quality of life can be adversely affected by hair loss. Microalgae are widely recognized for their abundance and rich functional components. Here, we evaluated the hair growth effect of a green alga, (), in vitro using hair follicle dermal papilla cells (HFDPCs). We isolated two types of cells from -green and orange cells, obtained from two different culture conditions. Microarray and real time-PCR results revealed that both cell types stimulated the expression of several pathways and genes associated with different aspect of the hair follicle cycle. Additionally, we demonstrated ' effect on collagen and keratin synthesis and inflammation reduction. We successfully isolated a novel compound, methylated-meijicoccene (me-meijicoccene), and C32 botryococcene from to validate their promising effects. Our study revealed that treatment with the two compounds had no cytotoxic effect on HFDPCs and significantly enhanced the gene expression levels of hair growth markers at low concentrations. Our study provides the first evidence of the underlying hair growth promoting effect of and its novel compound, me-meijicoccene, and C32 botryococcene.
脱发会对人的生活质量产生不利影响。微藻因其丰富的数量和丰富的功能成分而被广泛认可。在此,我们使用毛囊真皮乳头细胞(HFDPCs)在体外评估了一种绿藻()的毛发生长效果。我们从两种不同培养条件下获得的绿色和橙色细胞中分离出两种类型的细胞。微阵列和实时PCR结果显示,这两种细胞类型均刺激了与毛囊周期不同方面相关的几种信号通路和基因的表达。此外,我们证明了其对胶原蛋白和角蛋白合成以及炎症减轻的作用。我们成功地从 中分离出一种新型化合物,甲基化美吉球烯(me-美吉球烯)和C32葡萄藻烯,以验证它们的显著效果。我们的研究表明,这两种化合物处理对HFDPCs没有细胞毒性作用,并且在低浓度下显著提高了毛发生长标志物的基因表达水平。我们的研究首次证明了 及其新型化合物me-美吉球烯和C32葡萄藻烯具有潜在的促进毛发生长的作用。