Deleting the MAD2L1 gene is tolerated in certain mouse cancer models.
48 citations
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June 2000 in “Japanese Journal of Cancer Research” Dimethylarsinic acid speeds up skin tumor growth in certain mice.
January 2005 in “Enlighten: Publications (The University of Glasgow)” Melanocyte pathology requires keratinocyte hyperplasia and regulation dysfunction.
Gamma radiation enhances the antioxidant properties of Hibiscus rosa-sinensis extract without causing toxicity.
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January 2005 in “Photochemistry and Photobiology” Protein kinase C epsilon may increase skin cancer risk by affecting nearby cells.
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November 2016 in “Human & Experimental Toxicology” Maternal exposure to artificial food coloring may increase skin disease risk in rat offspring.
July 2012 in “European journal of cancer” MPA increases cancer spread by boosting Eph A2 activity.
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May 2023 in “Nanomaterials” Titanium dioxide nanoparticles may harm the male reproductive system.
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May 1985 in “Environmental Health Perspectives” Chlorinated compounds like TCDD can cause skin issues and chloracne by affecting cell behavior.
The document concludes that the development of certain tumors is influenced by genetic background and that a specific gene modification can lead to tumor regression and reduced growth.
June 2020 in “Zenodo (CERN European Organization for Nuclear Research)” The DNMT3B -579G>T polymorphism may increase the risk of colorectal cancer.
2 citations
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July 2023 in “Water” Tradescantia plants can effectively test for the toxicity of harmful algae.
June 2018 in “Journal of Dermatological Science” UV radiation may cause DNA changes in skin, certain UVB therapy helps psoriasis, a new gene mutation is linked to mild piebaldism, different immune cells affect psoriasis, a drug promotes hair growth, and some cancer drugs could treat skin barrier issues.
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August 2023 in “Trends in Cell Biology” Controlling cellular changes can enable safe rejuvenation without cancer risk.
May 2024 in “LA Referencia (Red Federada de Repositorios Institucionales de Publicaciones Científicas)” Certain gene combinations may affect prostate cancer risk, and GSTP1 methylation is linked to tumor aggressiveness.
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September 2001 in “American Journal Of Pathology” Inhibiting ODC can prevent UV-induced skin cancer.
Loss of Dnmt3a and Dnmt3b increases aggressive skin tumors by affecting PPAR-γ.
January 2014 in “edoc (University of Basel)” Anabolic steroids and inflammation can disrupt androgen metabolism, potentially causing health issues.
Toxins can disrupt skin stem cell balance, causing skin overgrowth or ulceration.
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January 2017 in “Intestinal Research” Genotyping for NUDT15 p.Arg139Cys can help predict thiopurine side effects in Japanese IBD patients.
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July 2017 in “Annals of Oncology” Chemotherapy toxicity might be reduced by using DNA neutralizing agents.
June 2026 in “Scholarly review .” Endocrine-disrupting chemicals cause irreversible harm to children's development, increasing disease risk.
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January 2013 in “Journal of skin cancer” PKC ε increases hair follicle stem cell turnover and may raise skin cancer risk.
July 2017 in “Cancer Research” Polyamines help repair DNA breaks and may influence cancer development.
May 2022 in “The journal of investigative dermatology/Journal of investigative dermatology” Loss of TET2 increases the risk of skin and oral cancer.
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January 1998 in “PubMed” Sun exposure and genetics increase skin cancer risk from precancerous lesions.
December 2009 in “Expert review of dermatology” Vitamin D may help protect against nonmelanoma skin cancer.
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October 2020 in “Environmental health perspectives” Five preservatives may disrupt hormone function and need more health and environmental risk assessment.
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April 2006 in “PubMed” EGFR-targeting cancer drugs can cause skin rashes and other side effects.
July 2025 in “Archives of Toxicology” The new skin model can predict how chemicals might cause skin allergies.