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Silibinin and non-melanoma skin cancers
Ram Raj Prasad1, Sandeep Paudel1, Komal Raina2
1Department of Pharmaceutical Sciences, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of Colorado Denver-Anschutz Medical Campus, Aurora, CO, 80045, USA.
Abstract:
Skin is the largest human organ that shields the inner body from contact with xenobiotic and genotoxic agents, and in this process, the skin's cellular genome faces continuous stress due to direct exposure to these noxious factors. Accumulation of genetic stress results in genomic alterations leading to undesirable gene or protein alteration/expression in skin cells, which eventually causes the formation of non-melanoma skin cancers (NMSCs). Ultraviolet B (UVB) radiation from sun is the most prominent factor contributing to ∼5 million skin cancer cases (which are mostly NMSCs) in the United States (US) and western countries. UVB exposure causes aberrations in a range of biochemical and molecular pathways such as: thymine dimer formation, DNA damage, oxidative stress, inflammatory responses, altered cellular signaling, which ultimately contribute to the development of NMSCs. The focus of this review is to summarize the protective and preventive potential of silymarin and/or silibinin against UVB-induced NMSC in pre-clinical skin cancer studies. Over two decades of research has shown the strong potential of silibinin, a biologically active flavonolignan (crude form Silymarin) derived from milk thistle plant, against a wide range of cancers, including NMSCs. Silibinin protects against UVB-induced thymine dimer formation and in turn promotes DNA repair and/or initiates apoptosis in damaged cells via an increase in p53 levels. Additionally, silibinin has shown strong efficacy against NMSCs via its potential to target aberrant signaling pathways, and induction of anti-inflammatory responses. Overall, completed comprehensive studies suggest the potential use of silibinin to prevent and/or manage NMSCs in humans.
Insights
Silymarin, derived from milk thistle, shows potential in preventing non-melanoma skin cancers (NMSCs) by protecting against UVB damage. It promotes DNA repair and apoptosis, offering a promising avenue for NMSC management.
Area of Science:
- Dermatology and Oncology
- Photobiology
- Natural Product Chemistry
Background:
- Skin cancer, particularly non-melanoma skin cancers (NMSCs), is a significant health concern, with UVB radiation as a primary cause.
- UVB exposure induces DNA damage, oxidative stress, and inflammatory responses, contributing to NMSC development.
- Silymarin, a compound from milk thistle, has demonstrated anti-cancer properties in various studies.
Purpose of the Study:
- To review the protective and preventive effects of silymarin and its active component, silibinin, against UVB-induced NMSCs.
- To summarize findings from pre-clinical studies investigating silibinin's efficacy in skin cancer prevention.
- To highlight silibinin's molecular mechanisms in combating UVB-induced skin damage.
Main Methods:
- Review of pre-clinical research on silymarin and silibinin in skin cancer models.
- Analysis of studies focusing on UVB-induced DNA damage, thymine dimer formation, and apoptosis.
- Investigation of silibinin's impact on cellular signaling pathways and inflammatory responses.
Main Results:
- Silibinin effectively protects against UVB-induced thymine dimer formation, promoting DNA repair and apoptosis.
- It increases p53 levels, crucial for managing DNA damage and preventing cancer.
- Silibinin demonstrates efficacy in targeting aberrant signaling pathways and reducing inflammation associated with NMSCs.
Conclusions:
- Silibinin, derived from silymarin, exhibits significant potential for preventing and managing non-melanoma skin cancers.
- Its mechanisms include DNA repair promotion, apoptosis induction, and modulation of key signaling pathways.
- Further research supports the consideration of silibinin for human NMSC prevention and treatment strategies.
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