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Biosurfactants as Anticancer Agents: Glycolipids Affect Skin Cells in a Differential Manner Dependent on Chemical
Simms A Adu1, Matthew S Twigg2, Patrick J Naughton1
1The Nutrition Innovation Centre for Food and Health (NICHE), Faculty of Life and Health Sciences, School of Biomedical Sciences, Ulster University, Coleraine BT52 1SA, UK.
Abstract:
Melanomas account for 80% of skin cancer deaths. Due to the strong relationship between melanomas and U.V. radiation, sunscreens have been recommended for use as a primary preventative measure. However, there is a need for targeted, less invasive treatment strategies. Glycolipids such as sophorolipids and rhamnolipids are microbially derived biosurfactants possessing bioactive properties such as antimicrobial, immunomodulatory and anticancer effects. This study aimed to ascertain the differing effects of glycolipids on skin cells. Highly purified and fully characterized preparations of sophorolipids and rhamnolipids were used to treat spontaneously transformed human keratinocyte (HaCaT) and the human malignant melanocyte (SK-MEL-28) cell lines. Cell viability and morphological analyses revealed that glycolipids have differential effects on the skin cells dependent on their chemical structure. Lactonic sophorolipids and mono-rhamnolipids were shown to have a significantly detrimental effect on melanoma cell viability compared to healthy human keratinocytes. These glycolipids were shown to induce cell death via necrosis. Additionally, sophorolipids were shown to significantly inhibit SK-MEL-28 cell migration. These findings suggest that glycolipids could be used as bioactive agents with selective inhibitory effects. As such, glycolipids could be a substitute for synthetically derived surfactants in sunscreens to provide additional benefit and have the potential as novel anti-skin-cancer therapies.
Insights
Microbial biosurfactants like sophorolipids and rhamnolipids show selective anticancer effects. Certain glycolipids harm melanoma cells more than healthy skin cells, suggesting potential for novel skin cancer therapies.
Area of Science:
- Dermatology and Oncology
- Microbiology and Biochemistry
Background:
- Melanoma is a deadly skin cancer strongly linked to UV radiation.
- Sunscreens are preventative, but targeted, less invasive treatments are needed.
- Microbial biosurfactants (glycolipids) possess anticancer properties.
Purpose of the Study:
- To investigate the differential effects of sophorolipids and rhamnolipids on skin cells.
- To evaluate glycolipids as potential anti-skin-cancer agents.
Main Methods:
- Treatment of human keratinocyte (HaCaT) and melanoma (SK-MEL-28) cell lines with purified glycolipids.
- Cell viability, morphology, and migration assays were performed.
Main Results:
- Glycolipids exhibited differential effects based on chemical structure.
- Lactonic sophorolipids and mono-rhamnolipids selectively reduced melanoma cell viability.
- These glycolipids induced cell death via necrosis and inhibited melanoma cell migration.
Conclusions:
- Glycolipids demonstrate selective inhibitory effects on melanoma cells.
- They offer potential as novel anti-skin-cancer therapies and sunscreen additives.

