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  • Wiemerslage, LyleUppsala universitet,Funktionell farmakologi (author)

An obesity-associated risk allele within the FTO gene affects human brain activity for areas important for emotion, impulse control and reward in response to food images

  • Article/chapterEnglish2016

Publisher, publication year, extent ...

  • 2016-02-21
  • Wiley,2016
  • printrdacarrier

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  • LIBRIS-ID:oai:DiVA.org:uu-297286
  • https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-297286URI
  • https://doi.org/10.1111/ejn.13177DOI

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  • Language:English
  • Summary in:English

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  • Subject category:ref swepub-contenttype
  • Subject category:art swepub-publicationtype

Notes

  • Understanding how genetics influences obesity, brain activity and eating behaviour will add important insight for developing strategies for weight-loss treatment, as obesity may stem from different causes and as individual feeding behaviour may depend on genetic differences. To this end, we examined how an obesity risk allele for the FTO gene affects brain activity in response to food images of different caloric content via functional magnetic resonance imaging (fMRI). Thirty participants homozygous for the rs9939609 single nucleotide polymorphism were shown images of low-or high-calorie food while brain activity was measured via fMRI. In a whole-brain analysis, we found that people with the FTO risk allele genotype (AA) had increased activity compared with the non-risk (TT) genotype in the posterior cingulate, cuneus, precuneus and putamen. Moreover, higher body mass index in the AA genotype was associated with reduced activity to food images in areas important for emotion (cingulate cortex), but also in areas important for impulse control (frontal gyri and lentiform nucleus). Lastly, we corroborate our findings with behavioural scales for the behavioural inhibition and activation systems. Our results suggest that the two genotypes are associated with differential neural processing of food images, which may influence weight status through diminished impulse control and reward processing.

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  • Nilsson, Emil K.Uppsala universitet,Funktionell farmakologi(Swepub:uu)emini542 (author)
  • Dahlberg, Linda SolstrandUppsala universitet,Funktionell farmakologi(Swepub:uu)linda227 (author)
  • Ence-Eriksson, FiaUppsala universitet,Funktionell farmakologi (author)
  • Castillo, SandraUppsala universitet,Funktionell farmakologi (author)
  • Larsen, Anna L.Uppsala universitet,Funktionell farmakologi (author)
  • Bylund, Simon B. A.Uppsala universitet,Funktionell farmakologi(Swepub:uu)simby110 (author)
  • Hogenkamp, Pleunie S.Uppsala universitet,Funktionell farmakologi(Swepub:uu)pleha931 (author)
  • Olivo, GaiaUppsala universitet,Funktionell farmakologi(Swepub:uu)oliga193 (author)
  • Bandstein, MarcusUppsala universitet,Funktionell farmakologi(Swepub:uu)marba701 (author)
  • Titova, Olga E.Uppsala universitet,Funktionell farmakologi(Swepub:uu)olgti128 (author)
  • Larsson, Elna-MarieUppsala universitet,Radiologi(Swepub:uu)elnla305 (author)
  • Benedict, ChristianUppsala universitet,Funktionell farmakologi(Swepub:uu)chrbe136 (author)
  • Brooks, Samantha J.Uppsala universitet,Funktionell farmakologi,Univ Cape Town, Dept Psychiat, Old Groote Schuur Hosp, ZA-7925 Cape Town, South Africa.(Swepub:uu)sambr210 (author)
  • Schiöth, Helgi B.Uppsala universitet,Funktionell farmakologi(Swepub:uu)helgschi (author)
  • Uppsala universitetFunktionell farmakologi (creator_code:org_t)

Related titles

  • In:European Journal of Neuroscience: Wiley43:9, s. 1173-11800953-816X1460-9568

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