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Matti Narkia

Marijuana Damages DNA And May Cause Cancer, New Test Reveals - 0 views

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    ScienceDaily (June 15, 2009) - Using a highly sensitive new test, scientists in Europe are reporting "convincing evidence" that marijuana smoke damages the genetic material DNA in ways that could increase the risk of cancer.
Matti Narkia

Watercress supplementation in diet reduces lymphocyte DNA damage and alters blood antio... - 0 views

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    Watercress supplementation in diet reduces lymphocyte DNA damage and alters blood antioxidant status in healthy adults. Gill CI, Haldar S, Boyd LA, Bennett R, Whiteford J, Butler M, Pearson JR, Bradbury I, Rowland IR. Am J Clin Nutr. 2007 Feb;85(2):504-10. PMID: 17284750
Matti Narkia

Glucose restriction can extend normal cell lifespan and impair precancerous cell growth... - 1 views

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    Glucose restriction can extend normal cell lifespan and impair precancerous cell growth through epigenetic control of hTERT and p16 expression. Li Y, Liu L, Tollefsbol TO. FASEB J. 2009 Dec 17. [Epub ahead of print] PMID: 20019239 doi: 10.1096/fj.09-149328 Cancer cells metabolize glucose at elevated rates and have a higher sensitivity to glucose reduction. However, the precise molecular mechanisms leading to different responses to glucose restriction between normal and cancer cells are not fully understood. We analyzed normal WI-38 and immortalized WI-38/S fetal lung fibroblasts and found that glucose restriction resulted in growth inhibition and apoptosis in WI-38/S cells, whereas it induced lifespan extension in WI-38 cells. Moreover, in WI-38/S cells glucose restriction decreased expression of hTERT (human telomerase reverse transcriptase) and increased expression of p16(INK4a). Opposite effects were found in the gene expression of hTERT and p16 in WI-38 cells in response to glucose restriction. The altered gene expression was partly due to glucose restriction-induced DNA methylation changes and chromatin remodeling of the hTERT and p16 promoters in normal and immortalized WI-38 cells. Furthermore, glucose restriction resulted in altered hTERT and p16 expression in response to epigenetic regulators in WI-38 rather than WI-38/S cells, suggesting that energy stress-induced differential epigenetic regulation may lead to different cellular fates in normal and precancerous cells. Collectively, these results provide new insights into the epigenetic mechanisms of a nutrient control strategy that may contribute to cancer therapy as well as antiaging approaches.
Matti Narkia

Spinach Knocks Out Cancer and Boosts Brain Power - 0 views

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    Scientists in Japan recently studied some of the glyconutrients from spinach and found they inhibited destruction of DNA, cancer cell growth, and tumor growth. They used the nutrients to suppress the growth of colon adenocarcinoma in mice. After a two week period of ingesting the nutrients, a 56.1% decrease in solid tumor volume occurred without any side effects. And the nutrients reduced the ability of tumors to supply themselves with blood which they need to fuel their growth. Markers of cell proliferation were drastically reduced. (Lipids, August, 2008)
Matti Narkia

Watercress latest super food to fight cancer - Telegraph - 0 views

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    Watercress was declared the latest super food yesterday for being packed with a higher than usual amount of nutrients found in vegetables. Research has shown that eating a packet of raw watercress a day, or a bowl full, for eight weeks increased the ability of cells to resist damage to their DNA, helping to protect against the cell changes that lead to cancer.
thomasm2015

Human herpesvirus 2 - 0 views

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    Herpesviridae is a large family of DNA viruses that cause diseases in animals, including humans. The members of this family are also known as herpesviruses. The family name is derived from the Greek word herpein ("to creep"), referring to the latent, recurring infections typical of this group of viruses. Herpesviridae can cause latent or lytic infections.
creativebiolabs

Mutagenesis Services,A Helper Appears Right in Time - 0 views

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    Nowadays, mutagenesis has become a widely used approach in DNA functional research and testing. Biologists in this field are devoting themselves to study and create new mutant genes that are beneficial to human development. The problems, however, still remain to be solved.
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