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Contact Dermatitis 2019-Jun

Unexpected positive patch test reactions to sesquiterpene lactones in patients sensitized to the glucose sensor FreeStyle Libre.

يمكن للمستخدمين المسجلين فقط ترجمة المقالات
الدخول التسجيل فى الموقع
يتم حفظ الارتباط في الحافظة
Anne Herman
Martin Mowitz
Olivier Aerts
Jeroen Pyl
Laurence de Montjoye
An Goossens
Magnus Bruze
Marie Baeck

الكلمات الدالة

نبذة مختصرة

Most diabetic patients sensitized to FreeStyle Libre react to isobornyl acrylate (IBOA), with a considerable number of them also showing unexpected positive patch test reactions to sesquiterpene lactone (SL) mix (SLM) tested in the baseline series.To compile patch test results of subjects affected, and provide potential explanations for this association.Fifty-three Freestyle Libre-allergic patients were patch tested with IBOA and/or SLM, and several were also patch tested with the components of SLM. Chromatographic analyses were performed on the glucose sensor, IBOA, and the components of SLM.Thirty-three patients reacted positively to the components of SLM, and 11 of 27 patients reacted positively to alantolactone, in particular. Gas chromatography-mass spectrometry (GC-MS) analyses did not detect these chemicals in the different parts of the glucose sensor, or in IBOA.Significant co-sensitizations between SLs on the one hand and the glucose sensor FreeStyle Libre and/or isobornyl acrylate on the other hand exist, without evidence of the presence of SLs via GC-MS analysis. Cross-reactions between them seem improbable. As a possible hypothesis, a common precursor for both, such as camphene, may exist.Of the diabetic patients sensitized to the glucose sensor FreeStyle Libre and/or IBOA, 62.3% reacted positively to SLM. Cross-reactions between IBOA and the three components of SLM (alantolactone, costunolide, and dehydrocostus lactone) seem unlikely, because of their different spatial structures. Co-sensitization between IBOA and SLS can be explained by the fact that there is a common precursor, such as camphene, between these two molecules.

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