Transcriptome Profiling of Human Follicle Dermal Papilla Cells in response to Porphyra-334 Treatment by RNA-Seq

Author:

Kim Su Yeon12,Cho Won Kyong3ORCID,Kim Hye-In2,Paek Seung Hye2,Jang Sung Joo2,Jo Yeonhwa3ORCID,Choi Hoseong3ORCID,Lee Jeong Hun2,Moh Sang Hyun2ORCID

Affiliation:

1. Department of Bio Cosmetics, Sungkyunkwan University, Suwon 16419, Republic of Korea

2. Anti-aging Research Institute of BIO-FD&C Co., Ltd., Incheon 21990, Republic of Korea

3. Research Institute of Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Republic of Korea

Abstract

Porphyra-334 is a kind of mycosporine-like amino acid absorbing ultraviolet-A. Here, we characterized porphyra-334 as a potential antiaging agent. An in vitro assay revealed that porphyra-334 dramatically promoted collagen synthesis in fibroblast cells. The effect of porphyra-334 on cell proliferation was dependent on the cell type, and the increase of cell viability by porphyra-334 was the highest in keratinocyte cells among the three tested cell types. An in vivo clinical test with 22 participants demonstrated the possible role of porphyra-334 in the improvement of periorbital wrinkles. RNA-sequencing using human follicle dermal papilla (HFDP) cells upon porphyra-334 treatment identified the upregulation of metallothionein- (MT-) associated genes, confirming the antioxidant role of porphyra-334 with MT. Moreover, the expression of genes involved in nuclear chromosome segregation and the encoding of components of kinetochores was upregulated by porphyra-334 treatment. Furthermore, we found that several genes associated with the hair follicle cycle, the hair follicle structure, the epidermal structure, and stem cells were upregulated by porphyra-334 treatment, suggesting the potential role of porphyra-334 in hair follicle growth and maintenance. In summary, we provided several new pieces of evidence of porphyra-334 as a potential antiaging cosmetic agent and elucidated the expression network in HFDP cells upon porphyra-334.

Funder

Ministry of Oceans and Fisheries

Publisher

Hindawi Limited

Subject

Complementary and alternative medicine

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