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1.
Small ; 15(39): e1902186, 2019 Sep.
Article in English | MEDLINE | ID: mdl-31392835

ABSTRACT

Nanoparticle-based voluminous 3D networks with low densities are a unique class of materials and are commonly known as aerogels. Due to the high surface-to-volume ratio, aerogels and xerogels might be suitable materials for applications in different fields, e.g. photocatalysis, catalysis, or sensing. One major difficulty in the handling of nanoparticle-based aerogels and xerogels is the defined patterning of these structures on different substrates and surfaces. The automated manufacturing of nanoparticle-based aerogel- or xerogel-coated electrodes can easily be realized via inkjet printing. The main focus of this work is the implementation of the standard nanoparticle-based gelation process in a commercial inkjet printing system. By simultaneously printing semiconductor nanoparticles and a destabilization agent, a 3D network on a conducting and transparent surface is obtained. First spectro-electrochemical measurements are recorded to investigate the charge-carrier mobility within these 3D semiconductor-based xerogel networks.

2.
Chemistry ; 23(10): 2265-2270, 2017 Feb 16.
Article in English | MEDLINE | ID: mdl-27935144

ABSTRACT

A combination of mutasynthesis using a mutant strain of A. pretiosum blocked in the biosynthesis of amino-hydroxybenzoic acid (AHBA) and semisynthesis relying on a Stille cross-coupling step provided access to new ansamitocin derivatives of which one was attached by a thermolabile linker to nanostructured iron oxide particles. When exposed to an oscillating electromagnetic field the resulting iron oxide/ansamitocin conjugate 19 heats up in an aqueous suspension and the ansamitocin derivative 16 is released by means of a retro-Diels-Alder reaction. It exerts strong antiproliferative activity (IC50 =4.8 ng mg-1 ) in mouse fibroblasts. These new types of conjugates have the potential for combating cancer through hyperthermia and chemotherapy using an electromagnetic external trigger.


Subject(s)
Ferric Compounds/chemistry , Magnetite Nanoparticles/chemistry , Maytansine/analogs & derivatives , Animals , Cell Line, Tumor , Cell Survival/drug effects , Cycloaddition Reaction , Hydroxybenzoates/chemical synthesis , Hydroxybenzoates/chemistry , Hydroxybenzoates/toxicity , Magnetite Nanoparticles/toxicity , Maytansine/chemistry , Mice
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