Pular para o conteúdo principal

Starving prostate cancer with what you eat: Apple peels, red grapes, turmeric

When you dine on curry and baked apples, enjoy the fact that you are eating something that could play a role starving -- or even preventing -- cancer.

New research from The University of Texas at Austin identifies several natural compounds found in food, including turmeric, apple peels and red grapes, as key ingredients that could thwart the growth of prostate cancer, the most common cancer afflicting U.S. men.

Published online this week in Precision Oncology, the new paper uses a novel analytical approach to screen numerous plant-based chemicals instead of testing a single agent as many studies do, discovering specific combinations that shrink prostate cancer tumors.

"After screening a natural compound library, we developed an unbiased look at combinations of nutrients that have a better effect on prostate cancer than existing drugs," says corresponding author Stefano Tiziani, assistant professor in the Department of Nutritional Sciences and Dell Pediatric Research Institute at UT Austin. "The beauty of this study is that we were able to inhibit tumor growth in mice without toxicity."

During the past decade, some cancer research has highlighted the potential therapies found in plants, including chemicals found in foods such as turmeric, apple peels and green tea. These compounds minimize one of the risk factors for cancer, inflammation within the body. People who have chronic inflammation because of chronic infection, autoimmune disease or conditions such as obesity have a higher cancer risk because of damage to normal cells.

The researchers first tested 142 natural compounds on mouse and human cell lines to see which inhibited prostate cancer cell growth when administered alone or in combination with another nutrient. The most promising active ingredients were then tested on model animals: ursolic acid, a waxy natural chemical found in apple peels and rosemary; curcumin, the bright yellow plant compound in turmeric; and resveratrol, a natural compound common to red grapes or berries.

"These nutrients have potential anti-cancer properties and are readily available," says Tiziani. "We only need to increase concentration beyond levels found in a healthy diet for an effect on prostate cancer cells."

The new research paper also demonstrates how the plant-based chemicals work together. Combining ursolic acid with either curcumin or resveratrol prevents cancer cells from gobbling something that they need to grow, glutamine. This is a neat solution: blocking the uptake of a nutrient needed by prostate cancer cells with nutrients that are commonly in the human diet.

Source: https://www.sciencedaily.com/releases/2017/06/170606112750.htm

Postado por David Araripe

Comentários

Postagens mais visitadas deste blog

Transferring skills beyond the lab

Launching a nonresearch career doesn’t mean leaving behind everything you learned as a scientist. The skills you developed as you dove into your projects and communicated your results are valuable in many jobs. If you’re not convinced, read on for some specific examples of how Ph.D.-holders put their skills to use outside the lab. Learning new fields Kenneth Gibbs Jr. , Program director in the Division of Training, Workforce Development, and Diversity at the National Institute of General Medical Sciences Learning new fields is a skill I developed in graduate school that I continue to use now as I manage research grants in scientific areas that are outside my previous expertise. When I was a graduate student, I was very interested in stem cells and the signals that regulate them. At the time I didn't have a background in the topic, so I had to read lots of literature—where I encountered unfamiliar terms—to orient myself to the field, and then I would identify knowledgea...

Plásticos: Para produzir ou dar sumiço, chame as bactérias

Bactéria que produz plástico Pesquisadores da USP encontraram uma bactéria capaz de produzir um  biopolímero  - um polímero, ou plástico, produzido por um processo biotecnológico. Rotas biotecnológicas podem fabricar bioplásticos - e depois sumir com eles, degradando-os completamente.  A  Methylobacterium rhodesianum , que transforma o metano em um tipo de polímero ainda não caracterizado, foi identificada nas águas turvas e poluídas do Sistema Estuarino de Santos, no litoral de São Paulo. A equipe também encontrou a  Methylobacterium extorquens , que já se sabia ser produtora de PHB, ou polihidroxibutirato, um polímero da família dos polihidroxialcanoatos (PHA) com características físicas e mecânicas semelhantes às de resinas sintéticas como o polipropileno. "Ainda não caracterizamos o polímero produzido pela bactéria, mas nossas análises indicam que é bem diferente dos relatados na literatura científica," disse Elen Aquino Perpétuo, coordenadora d...

Mais uma doutora formada no BioMol-Lab

Dia 27 de Outubro de 2017 formou-se mais uma Doutora no BioMol-Lab. A aluna Antônia Simoni de Oliveira, orientada pela professora Kyria Santiago do Nascimento e co-orientada pelo professor Benildo Sousa Cavada, defendeu sua tese intitulada: "Produção e caracterização físico-química e biológica da cadeia alfa da lectina recombinante de Canavalia brasiliensis" A defesa aconteceu no auditório do Departamento de Bioquímica e Biologia Molecular, 907, da UFC. Declarada a aprovação, o BioMol-Lab agora conta com 50 mestres e 52 doutores formados no laboratório. Parabéns à Simoni, aos orientadores Kyria Santiago do Nascimento, Benildo Sousa Cavada e à todos envolvidos!