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Development of a high-throughput screening system for identification of novel reagents regulating DNA damage in human dermal fibroblasts

Authors :
SEUNGHEE BAE
IN-SOOK AN
SUNGKWAN AN
SEUNGHEE BAE
IN-SOOK AN
SUNGKWAN AN
Source :
Acta Pharmaceutica; ISSN 1330-0075 (Print); ISSN 1846-9558 (Online); Volume 65; Issue 3
Publication Year :
2015

Abstract

Ultraviolet (UV) radiation is a major inducer of skin aging and accumulated exposure to UV radiation increases DNA damage in skin cells, including dermal fibroblasts. In the present study, we developed novel DNA repair regulating material discovery (DREAM) system for the high-throughput screening and identification of putative materials regulating DNA repair in skin cells. First, we established a modified lentivirus expressing the luciferase and hypoxanthine phosphoribosyl transferase (HPRT) genes. Then, human dermal fibroblast WS-1 cells were infected with the modified lentivirus, and selected with puromycin to establish cells that stably expressed luciferase and HPRT (DREAM-F cells). The first step in the DREAM protocol was a 96-well-based screening procedure, involving the analysis of cell viability and luciferase activity after pretreatment of DREAM-F cells with reagents of interest and post-treatment with UVB radiation, and vice versa. In the second step, we validated certain effective reagents identified in the first step by analyzing the cell cycle, evaluating cell death, and performing HPRT-DNA sequencing in DREAM-F cells treated with these reagents and UVB. This DREAM system is scalable and forms a time-saving high-throughput screening system for identifying novel anti-photoaging reagents regulating DNA damage in dermal fibroblasts.

Details

Database :
OAIster
Journal :
Acta Pharmaceutica; ISSN 1330-0075 (Print); ISSN 1846-9558 (Online); Volume 65; Issue 3
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn916231475
Document Type :
Electronic Resource