FP7Индивидуална стипендия2013–2015

Obesity and Light · Bringing Obesity to Light - Do obesogenic chemicals affect lipid metabolism through changes in circadian rhythm?

7РП — „Хора“ (Действия „Мария Кюри“)

Период
2013-01-15 → 2015-01-14
Финансиране от ЕС
183 806 €
Участници
1
Схема
MC-IEF

Линиите свързват координатора с партньорите.

Накратко на български

Химикали от околната среда и промените в циркадните ритми се изследват за влиянието им върху метаболизма на мазнините, като се използват зебрни рибки. Това помага да се разберат механизмите, които водят до затлъстяване, диабет и хипертония.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Bringing Obesity to Light - Do obesogenic chemicals affect lipid metabolism through changes in circadian rhythm?

The incidence of obesity and its associated metabolic abnormalities like diabetes and hypertension have grown to epidemic proportions worldwide (Finucane et al., 2011). Nevertheless there is still much uncertainty about underlying physiological mechanisms and the current incidence of obesity cannot be fully explained by genetic, socio-economic factors or nutrition. Increasing evidence indicates that also environmental factors contribute to the etiology of obesity, including disturbance of circadian rhythms (Gooley and Chua, 2014) and exposure to environmental chemicals (Janesick and Blumberg, 2011). Circadian rhythms, endogenously driven cycles of roughly 24 hours, time biological clocks and coordinate biochemical, physiological and behavioral processes according to the organisms’ active periods. Also genes which regulate lipid synthesis and fatty acid oxidation are clock controlled (Gooley and Chua, 2014). Though disturbing circadian clocks has profound implications for human health, little is known about chemically induced alterations in clock activity and how they affect metabolic aspects like lipid accumulation and adipogenesis. The zebrafish (Danio rerio) is an established model for analyzing obesogenic and circadian effects. We could show that under continuous light but not under shifted light dark cycles a 7 fold higher number of zebrafish larvae developed adipocytes, even more than zebrafish larvae which were fed with hypercaloric diet. This could be due to altered expression of light driven clock genes that are linked to genes involved in adipogeneis. Adipogenesis is mainly regulated by three isoforms of the peroxisomal proliferator activated receptors (Ppars) and pparβδ shows several binding sites for the clock gene Rev-erbα. Thus, the regulatory pathways of circadian clocks and adipogenesis might be linked via these genes. The newly observed co-localization in zebrafish adipocytes of Rev-erbα and Pparγ, which can be activated by Pparβδ, is emphasizing a direct interplay. Furthermore, we demonstrated that environmental chemicals with obesogenic potential disturb circadian clocks and vice versa: exposure of zebrafish larvae to endocrine disrupting chemicals not only increased lipid accumulation remarkably but also affected core clock activity while exposure to known clock modulating chemicals increased lipid accumulation. Our data clearly strengthened the bidirectional link between circadian clocks and lipid metabolism and moreover revealed a novel mechanism of action of environmental obesogens. This first described effect widens the potential health implications of exposure. As the circadian clock regulates a wide variety of physiological processes, information about environmental compounds that disturb the biological clock may provide also important insights on the environmentally induced development of cancer, metabolic diseases or sleeping disorders. Furthermore, it might provide possible explanations for the increasing number of people suffering from obesity and might even offer new treatment approaches.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Bringing light to obesity will elucidate the interconnecting steps of two important signaling pathways i.e. circadian signaling and lipid metabolism. An increase in serum cholesterol level in shift workers indicates this link. Also obesogenic chemicals might influence lipid metabolism through changes in circadian rhythm.Research on obesity has gained in importance as the number of affected patients increases world-wide. The WHO lists five European countries in the top 23 states regarding obesity incidence. Moreover, the mounting healthcare costs turn obesity research to a hot topic. With OBELIX and EUCLOCK the EU already funds projects on obesity and circadian rhythm. This proposal joins both topics and links them to toxicology.The main goal is to study the role of circadian rhythm in lipid metabolism and obesogenic effects of chemicals. To elucidate the signaling pathway of environmentally induced obesity the zebrafish a model for genetic and physiological studies will be used.How do alterations in circadian rhythmicity influence lipid metabolism? How do the clock gene rev-erbα and the peroxisome proliferator activated receptors connect circadian and metabolic signaling pathways? Do obesogenic chemicals influence lipid metabolism through changes in circadian rhythm? A multidisciplinary approach will be made using toxicological, physiological, molecular biological and genetic methods in wildtype and transgenic zebrafish larvae and cells.The project will be done at Dr. Juliette Legler’s lab at the Institute of Environmental Studies at the VU University Amsterdam. Dr. Legler already proved to be an expert in ecotoxicological studies in particular regarding obesogenic chemicals. In addition her broad experience in project management and scientific supervision will allow the applicant to reach her scientific goals like enhancing scientific skills and gaining research experience which will be essential to reach professional maturity.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз