COSMAX BTI, R&I Center, Seongnam 13486, Gyeonggi, Korea.
Department of Oriental Medicine Biotechnology, College of Life Science, Kyung Hee University, Yongin 17104, Gyeonggi, Korea.
Molecules. 2022 Aug 12;27(16):5136. doi: 10.3390/molecules27165136.
The skin tissue of the scalp is unique from other skin tissues because it coexists with hair, and many differences in microbial composition have been confirmed. In scalp tissues, hair loss occurs due to a combination of internal and external factors, and several studies are being conducted to counteract this. However, not many studies have addressed hair loss from the perspective of the microbiome. In this study, subjects with hair loss and those with normal scalps were set as experimental and control groups, respectively. In the experimental group, hair loss had progressed, and there was a large difference in microbiome composition compared to the group with normal scalps. In particular, differences in , , and were found. From Cicaria, two active components were isolated as a result of repeated column chromatography. Spectroscopic data led to the determination of chemical structures for adenosine and biotin. Fractions were obtained, and ex vivo tests were conducted using hair follicles derived from human scalp tissue. When the microbiome adenosine-treated group was compared to the control group, hair follicle length was increased, and hair root diameter was maintained during the experimental periods. In addition, the Cicaria culture medium and the microbial adenosine- and biotin-treated groups maintained the anagen phase, reducing progression to the catagen phase in the hair growth cycle. In conclusion, it was confirmed that the Cicaria culture medium and the microbial adenosine and biotin derived from the culture were effective in inhibiting hair loss.
头皮的皮肤组织与其他皮肤组织不同,因为它与头发共存,并且已经确认了许多微生物组成的差异。在头皮组织中,由于内部和外部因素的结合,会发生脱发,并且正在进行几项研究来对抗这种情况。然而,很少有研究从微生物组的角度来研究脱发。在这项研究中,脱发患者和正常头皮患者分别作为实验组和对照组。在实验组中,脱发已经进展,与正常头皮组相比,微生物组组成有很大差异。特别是 、 和 存在差异。从 Cicaria 中,经过反复柱层析分离出两种活性成分。根据光谱数据确定了腺苷和生物素的化学结构。得到了馏分,并对来源于人头皮组织的毛囊进行了离体试验。当比较微生物腺苷处理组与对照组时,在实验期间,毛囊长度增加,发根直径保持不变。此外,Cicaria 培养基和微生物腺苷和生物素处理组维持着生长期,减少了头发生长周期中向退行期的进展。总之,证实了 Cicaria 培养基和微生物腺苷和生物素在抑制脱发方面是有效的。