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Dive into the research topics where Andrea Preuss is active.

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Featured researches published by Andrea Preuss.


Colloids and Surfaces B: Biointerfaces | 2011

The effect of surface properties on the strength of attachment of fungal spores using AFM perpendicular force measurements

Kathryn A. Whitehead; Ted Deisenroth; Andrea Preuss; Christopher M. Liauw; Joanna Verran

Polymeric substrata may be biodegraded by fungal species resulting in damaged, weakened and unsightly materials. This process typically begins with fungal spore attachment to the surface. In order to better understand the processes that precedes a biofouling event, fungal spore attachment to a range of surfaces, was determined using perpendicular force measurements. This was carried out using atomic force microscope cantilevers modified with fungal spores from Aspergillus niger 1957 (5μm diameter, non-wettable, spherical), Aspergillus niger 1988 (5μm diameter non-wettable, spikey) or Aureobasidium pullulans (5μm-10μm sized, wettable, ellipsoidal). The strength of attachment of the spores was determined in combination with seven surfaces (nitric acid cleaned glass, cast poly(methylmethacrylate) sheet [c-PMMA], polytetrafluoroethylene [PTFE], silicon wafers spin coated with poly(3-methacryloxypropyltrimethoxy silane (γ-MPS)-co-methylmethacrylate (MMA)) [p(γ-MPS-co-MMA)], poly (γ-MPS-co-lauryl methacrylate) [p(γ-MPS-co-LMA)] [both in a ratio of 10-90], PMMA dissolved in a solvent [PMMAsc] and silicon wafers). Perpendicular force measurements could not be related to the R(a) values of the surfaces, but surface wettability was shown to have an effect. All three spore types interacted comparably with the surfaces. All spores attached strongly to c-PMMA and glass (wettable surfaces), and weakly to PTFE, (p(γ- MPS-co-LMA)) (non-wettable) and (p(γ-MPS-co-MMA)). Spore shape also affected the strength of attachment. Aureobasidium pullulans spores attached with the widest range of forces whilst A. niger 1957 attached with the smallest. Findings will inform the selection of surfaces for use in environments where biofouling is an important consideration.


Archive | 2007

Polymeric anti-microbial agents

Xinyu Huang; Ted Deisenroth; Andrea Preuss; Sophie Marquais-Bienewald; Carmen Hendricks-Guy; John Jennings


Archive | 2008

Substrates with biocidal coating

Ted Deisenroth; Carmen Hendricks-Guy; Andreas Muehlebach; Andrea Preuss; Werner Hoelzl; Xinyu Huang


Archive | 2008

Antimicrobial plastics and coatings

Andrea Preuss; Barbara Stodden; Wolfgang Peter; I-Chyang Lin


Archive | 2003

4-Aminopyrimidines and their use for the antimicrobial treatment of surfaces

Sophie Marquais-Bienewald; Werner Hölzl; Wolfgang Haap; Andrea Preuss; Andreas Mehlin


Archive | 2006

Oligo-and poly-carbonates terminated with silicon containing groups as surface modifiers

Fabien Jean Brand; Archana Kishore Desai; Michèle Gerster; Shrirang Bhikaji Hindalekar; Suhas Dattatraya Sahasrabudhe; Paragkumar Nathalal Thanki; Michael Tinkl; Andrea Preuss; Jürgen Wiethan; Kishor Prabhakar Kumbhar


Archive | 2004

Use of substituted 2,4-bis (alkylamino) pyrimidines or -quinazolines as antimicrobials

Sophie Marquais-Bienewald; Werner Hölzl; Andrea Preuss; Andreas Mehlin


Archive | 2007

ANTIMICROBIAL ACIDS AND SALTS

Werner Hölzl; Andrea Preuss


Archive | 2006

Carboxylic acid esters of zosteric acid for prevention of biofouling

Stewart Todd Elder; Fadi Khawam; Andrea Preuss; Jürgen Wiethan


Archive | 2003

Benzyl alcohol derivatives

Werner Hölzl; Jürgen Koppold; Sophie Marquais-Bienewald; Andrea Preuss

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Werner Hölzl

Ciba Specialty Chemicals

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Andreas Mehlin

Ciba Specialty Chemicals

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Ted Deisenroth

Ciba Specialty Chemicals

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Werner Hoelzl

Ciba Specialty Chemicals

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Wolfgang Haap

Ciba Specialty Chemicals

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Xinyu Huang

Ciba Specialty Chemicals

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