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Nutrigenomski učinki omega-3 maščobnih kislin
ID Rutar, Anja (Author), ID Jamnik, Polona (Mentor) More about this mentor... This link opens in a new window

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Abstract
Diplomsko delo obravnava področje nutrigenomike omega-3 maščobnih kislin in pojasnjuje, kako le-te vplivajo na izražanje genov in posledično bolezni kot so rak, srčno-žilne bolezni, vnetja in druge. Nutrigenomika nam omogoča globje razumevanje povezave med bioaktivnimi komponentami hrane in boleznimi že na ravni molekul in celičnih procesov. Omega-3 maščobne kisline so povezane z manjšim tveganjem za nekatere vrste raka, kar je povezano s citotoksičnim delovanjem na rakave celice, v katerih sprožijo proces apoptoze ali piroptoze, inducirajo oksidativni stres in povzročijo poškodbe DNA. Zmanjšujejo migracijo, invazijo in proliferacijo rakavih celic. V primeru vnetja pripomorejo k razrešitvi le-tega, saj zmanjšajo izražanje vnetnih, hkrati pa povečajo izražanje protivnetnih genov. Prav tako zmanjšajo znotrajcelično raven reaktivnih kisikovih zvrsti in so prekurzorji lipidnih mediatorjev s protivnetnim delovanjem, kar ugodno deluje na bolezni, kjer je vnetje podlaga le-teh (srčno-žilne bolezni, debelost in druge).

Language:Slovenian
Keywords:nutrigenomika, genetika, prehranska genetika, prehranska genomika, omega-3 maščobne kisline, kronične nenalezljive bolezni
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:BF - Biotechnical Faculty
Publisher:[A. Rutar]
Year:2019
PID:20.500.12556/RUL-110491 This link opens in a new window
UDC:612.3:575:641.1:613.2:547.915
COBISS.SI-ID:5098360 This link opens in a new window
Publication date in RUL:15.09.2019
Views:2087
Downloads:372
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Secondary language

Language:English
Title:Nutrigenomic effects of omega-3 fatty acids
Abstract:
The thesis addresses nutrigenomic effects of omega-3 fatty acids and explains how they affect the expression of genes and consequently affect many diseases such as cancer, cardiovascular disease, inflammation and others. Nutrigenomics gives us a deeper understanding of the link between bioactive food components and diseases at the level of molecules and cellular processes. Omega-3 fatty acids are associated with a lower risk for certain types of cancer as they have a cytotoxic effect on cancer cells in which they induce the process of apoptosis or pyroptosis, induce oxidative stress and cause DNA damage. They reduce migration, invasion and proliferation of cancerous cells. When it comes to inflammation, omega-3 fatty acids are involved in resolution of inflammation as they reduce the expression of inflammatory and in the same time increase the expression of anti-inflammatory genes. They also reduce intracellular levels of reactive oxygen species and are precursors of lipid mediators with anti-inflammatory actions, termed eicosanoids. Therefore they help in treatment of inflammation-associated diseases, such as cardiovascular disease, obesity and others.

Keywords:nutrigenomics, genetics, nutritional genetics, nutritional genomics, omega-3 fatty acids, chronic noncommunicable diseases

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