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Biochemical impact of solar radiation exposure on human keratinocytes monitored by Raman spectroscopy; effects of cell culture environment

Research Output:
Contribution to journal
Article
Peer-review

Open access

Sustainable Development Goals

  • SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well

Publication metrics

Metrics

Scopus
Citations
SciVal
FWCI
0.06
SciVal
Author count
3
SciVal
Paper percentile
22
SciVal
Citations
3

Abstract

Understanding and amelioration of the effects of solar radiation exposure are critical in preventing the occurrence of skin cancer. Towards this end, many studies have been conducted in 2D cell culture models under simplified and unrealistic conditions. 3D culture models better capture the complexity of in vivo physiology, although the effects of the 3D extracellular matrix have not been well studied. Monitoring the instantaneous and resultant cellular responses to exposure, and the influence of the 3D environment, could provide an enhanced understanding of the fundamental processes of photocarcinogenesis. This work presents an analysis of the biochemical impacts of simulated solar radiation (SSR) occurring in immortalised human epithelial keratinocytes (HaCaT), in a 3D skin model, compared to 2D culture. Cell viability was monitored using the Alamar Blue colorimetric assay (AB), and the impact of the radiation exposure, at the level of the biomolecular constituents (nucleic acids and proteins), were evaluated through the combination of Raman microspectroscopy and multivariate statistical analysis. The results suggest that SSR exposure induces alterations of the conformational structure of DNA as an immediate impact, whereas changes in the protein signature are primarily seen as a subsequent response.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

e202100058

Pages from-to (Number of pages)

Pages e202100058

Journal (Volume, Issue Number)

Journal of Biophotonics (Volume 14, Issue 7)

Publication milestones

  • Published - 07/2021

Publication status

Published - 07/2021

ISSN

1864-063X

Publication IDs

  • Scopus: 85105179485
  • PubMed: 33871950
  • ORCID: /0000-0003-0597-2493/work/141460969
  • Scopus: 85105179485

Funding Details

Ulises Lopez‐Gonzalez was funded by Consejo Nacional de Ciencias y Tecnologia (CONACYT), Mexico. Open access funding provided by IReL.
FundersFunding numbers
Consejo Nacional de Ciencias y Tecnologia
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