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Items: 7


Analytical and clinical performance of thyroglobulin autoantibody assays in thyroid cancer follow-up.

Katrangi W, Grebe SKG, Algeciras-Schimnich A.

Clin Chem Lab Med. 2017 Oct 26;55(12):1987-1994. doi: 10.1515/cclm-2017-0034.


Interactions of linoleic and alpha-linolenic acids in the development of fatty acid alterations in cystic fibrosis.

Katrangi W, Lawrenz J, Seegmiller AC, Laposata M.

Lipids. 2013 Apr;48(4):333-42. doi: 10.1007/s11745-013-3768-4. Epub 2013 Feb 27.


DHA and EPA reverse cystic fibrosis-related FA abnormalities by suppressing FA desaturase expression and activity.

Njoroge SW, Laposata M, Katrangi W, Seegmiller AC.

J Lipid Res. 2012 Feb;53(2):257-65. doi: 10.1194/jlr.M018101. Epub 2011 Nov 16.


Increased Δ5- and Δ6-desaturase, cyclooxygenase-2, and lipoxygenase-5 expression and activity are associated with fatty acid and eicosanoid changes in cystic fibrosis.

Njoroge SW, Seegmiller AC, Katrangi W, Laposata M.

Biochim Biophys Acta. 2011 Jul-Aug;1811(7-8):431-40. doi: 10.1016/j.bbalip.2011.05.002. Epub 2011 May 13.


Increased elongase 6 and Δ9-desaturase activity are associated with n-7 and n-9 fatty acid changes in cystic fibrosis.

Thomsen KF, Laposata M, Njoroge SW, Umunakwe OC, Katrangi W, Seegmiller AC.

Lipids. 2011 Aug;46(8):669-77. doi: 10.1007/s11745-011-3563-z. Epub 2011 May 5.


A mechanism accounting for the low cellular level of linoleic acid in cystic fibrosis and its reversal by DHA.

Al-Turkmani MR, Andersson C, Alturkmani R, Katrangi W, Cluette-Brown JE, Freedman SD, Laposata M.

J Lipid Res. 2008 Sep;49(9):1946-54. doi: 10.1194/jlr.M800035-JLR200. Epub 2008 May 14.


Cell culture models demonstrate that CFTR dysfunction leads to defective fatty acid composition and metabolism.

Andersson C, Al-Turkmani MR, Savaille JE, Alturkmani R, Katrangi W, Cluette-Brown JE, Zaman MM, Laposata M, Freedman SD.

J Lipid Res. 2008 Aug;49(8):1692-700. doi: 10.1194/jlr.M700388-JLR200. Epub 2008 Apr 25.

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