Axel Rosenhahn
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Explore the profile of Axel Rosenhahn including associated specialties, affiliations and a list of published articles.
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93
Citations
440
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Recent Articles
1.
Karthauser J, Ademmer K, Zimmermann R, Rosenhahn A
ACS Appl Mater Interfaces
. 2025 Feb;
17(10):16145-16155.
PMID: 40019159
Zwitterions consisting of positively and negatively charged groups confer hydrophilicity while retaining overall charge neutrality. Both properties were identified as decisive prerequisites for protein-resistant coatings. In this work, we studied...
2.
Karthauser J, Hansen J, Smajlji A, Hunsucker K, Yeshi T, Braga C, et al.
Langmuir
. 2025 Feb;
41(7):4545-4559.
PMID: 39957142
Polyzwitterions have great potential as fouling-resistant materials for biomedical and environmental products, in particular, in the form of hydrogel coatings. While typically these are soft materials, for many applications it...
3.
Steinbrueck A, Reback M, Rumancev C, Siegmund D, Garrevoet J, Falkenberg G, et al.
Chemistry
. 2025 Jan;
31(11):e202404147.
PMID: 39757433
New, asymmetric quinizarin-Au(I)-NHC complexes were designed, isolated, and fully characterised including by single crystal X-ray crystallography. Cytotoxicity studies showed effective growth inhibition in HeLa cervical cancer cells with IC values...
4.
Zaghari P, Ozcan O, Islam M, Black B, Liu S, Shovon S, et al.
Biofouling
. 2024 Dec;
40(10):1012-1025.
PMID: 39654354
This study investigates the micro-topographic surfaces as a benign anti-fouling/fouling-release method. The bio-inspired engineered surfaces were manufactured by controlling the viscoelastic instabilities of carbon nanotubes (CNTs) and polydimethylsiloxane (PDMS) nanocomposites...
5.
Karthauser J, Gruhn D, Martinez Guajardo A, Kopecz R, Babel N, Stervbo U, et al.
Front Bioeng Biotechnol
. 2024 Aug;
12:1403654.
PMID: 39086500
The fouling resistance of zwitterionic coatings is conventionally explained by the strong hydrophilicity of such polymers. Here, the biocompatibility of a set of systematically varied amphiphilic, zwitterionic copolymers is investigated....
6.
Hilpert K, Rumancev C, Gani J, Collis D, Lopez-Perez P, Garamus V, et al.
Front Pharmacol
. 2023 Aug;
14:1141785.
PMID: 37533629
The opportunistic yeast is the most common cause of candidiasis. With only four classes of antifungal drugs on the market, resistance is becoming a problem in the treatment of fungal...
7.
Krause L, Manderfeld E, Gnutt P, Vogler L, Wassick A, Richard K, et al.
Biofouling
. 2023 Mar;
39(1):64-79.
PMID: 36924139
Biofouling is a major challenge for sustainable shipping, filter membranes, heat exchangers, and medical devices. The development of fouling-resistant coatings requires the evaluation of their effectiveness. Such an evaluation is...
8.
Manderfeld E, Thamaraiselvan C, Kleinberg M, Jusufagic L, Arnusch C, Rosenhahn A
Biofouling
. 2022 Dec;
38(9):940-951.
PMID: 36511186
Biofouling on surfaces in contact with sea- or brackish water can severely impact the function of devices like reverse osmosis modules. Single species laboratory assays are frequently used to test...
9.
Rumancev C, Rosenhahn A, Hilpert K
Front Pharmacol
. 2022 Sep;
13:947005.
PMID: 36081947
Antimicrobial resistance is a worldwide threat to modern health care. Low-profit margin and high risk of cross-resistance resulted in a loss of interest in big pharma, contributing to the increasing...
10.
Gnanasampanthan T, Karthauser J, Spollmann S, Wanka R, Becker H, Rosenhahn A
ACS Appl Mater Interfaces
. 2022 Apr;
14(14):16062-16073.
PMID: 35377590
Amphiphilic coatings are promising materials for fouling-release applications, especially when their building blocks are inexpensive, biodegradable, and readily accessible polysaccharides. Here, amphiphilic polysaccharides were fabricated by coupling hydrophobic pentafluoropropylamine (PFPA)...