Sharma, N.N.SharmaPetri, C.C.PetriJonas, U.U.JonasBach, MonikaMonikaBachTovar, G.G.TovarMrkvová, K.K.MrkvováVala, M.M.ValaHomola, J.J.HomolaKnoll, W.W.KnollDostalek, J.J.Dostalek2022-03-042022-03-042014https://publica.fraunhofer.de/handle/publica/23822510.1002/macp.201400260New composite layer architecture of 3D hydrogel polymer network that is loaded with molecularly imprinted polymer nanoparticles (nanoMIP) is reported for direct optical detection of low-molecular-weight compounds. This composite layer is attached to the metallic surface of a surface plasmon resonance (SPR) sensor in order to simultaneously serve as an optical waveguide and large capacity binding-matrix for imprinted target analyte. Optical waveguide spectroscopy (OWS) is used as a label-free readout method allowing direct measurement of refractive index changes that are associated with molecular binding events inside the matrix. This approach is implemented by using a photocrosslinkable poly(N-isopropylacrylamide)-based hydrogel and poly[(ethylene glycol dimethylacrylate)-(methacrylic acid)] nanoparticles that are imprinted with L-Boc-phenylalanine-anilide (L-BFA, molecular weight 353 g mol(-1)). Titration experiments with the specific target and other structurally similar reference compounds show good specifi city and limit of detection for target L-BFA as low as 2 x 10(-6) M.en547Molecularly imprinted polymer waveguides for direct optical detection of low-molecular-weight analytesjournal article