Sandra Lage
Stockholm University
25 Papers
85 Citations
Sandra Lage is an academic researcher from Stockholm University. The author has contributed to research in topics: Biology & Shellfish poisoning. The author has an hindex of 10, co-authored 22 publications. Previous affiliations of Sandra Lage include Instituto Português do Mar e da Atmosfera & University of Gdańsk.
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Papers
Diatoms: a novel source for the neurotoxin BMAA in aquatic environments.
Liying Jiang,Johan Eriksson,Sandra Lage,Sara Jonasson,Shiva Shams,Martin Mehine,Leopold L. Ilag,Ulla Rasmussen +7 more
TL;DR: It is demonstrated that diatoms – eukaryotic organisms – also produce BMAA, and the use of filter and suspension feeders as livestock fodder dramatically increases the risk of human exposure to BMAA-contaminated food.
BMAA in shellfish from two Portuguese transitional water bodies suggests the marine dinoflagellate Gymnodinium catenatum as a potential BMAA source
TL;DR: This work reveals for the first time the presence of BMAA in shellfish from Atlantic transitional water bodies and consubstantiate evidences of G. catenatum as one of the main sources ofBMAA in these ecosystems.
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Algal Biomass from Wastewater and Flue Gases as a Source of Bioenergy
TL;DR: In this review, special focus is given to the algal capacity to remove contaminants from wastewater and flue gases, and the consequences when converting this biomass into different types of biofuels.
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Microalgal growth, nitrogen uptake and storage, and dissolved oxygen production in a polyculture based-open pond fed with municipal wastewater in northern Sweden
TL;DR: In this article, the authors evaluated the factors affecting the production of microalgae biomass on pilot-scale open raceway ponds under Northern Sweden's summer conditions with the help of a mathematical model.
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BMAA extraction of cyanobacteria samples: which method to choose?
Sandra Lage,Alfred Burian,Ulla Rasmussen,Pedro Reis Costa,Heléne Annadotter,Anna Godhe,Sara Rydberg +6 more
TL;DR: The method validation guidelines for analysing cyanotoxins, the TCA protein precipitation method, followed by AQC derivatization and LC-MS/MS analysis is now validated for extracting protein-bound and free BMAA from cyanobacteria matrix.
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