A new immunosensor for the determination of procalcitonin was developed. A sandwich assay format was implemented on a polymethylmetacrylate optical biochip, opportunely shaped in order to obtain several flow channels and potentially suitable for point of care testing applications. The sandwich format makes use of two new rat monoclonal antibodies. The capture antibody was covalently immobilised on the surface of the plastic chip, and the detection antibody was labelled with DY647 dye. Different combinations of capture and detection antibodies were investigated, and particular attention was devoted in order to avoid the non-specific adsorption. A limit of detection of 0.088 mg L(-1) was achieved within the working range of 0.28-50 mg L(-1) in buffer samples. The assay was also implemented in human serum, and 0.2 and 0.7-25 mg L(-1) were the attained limit of detection and working range, respectively.
A new optical sensor for the continuous monitoring of the dew formation inside organ pipes was designed. This aspect is particularly critical for the conservation of organs in unheated churches since the dew formation or the condensation on the pipe surfaces can contribute to many kinds of physical and chemical disruptive mechanisms. The working principle is based on the change in the reflectivity which is observed on the surface of the fibre tip, when a water layer is formed on its distal end. Intensity changes of the order of 35% were measured, following the formation of the water layer on the distal end of a 400/430 μm optical fibre. Long-term tests carried out placing the fibre tip inside the base of an in-house-made metallic foot of an organ pipe located in an external environment revealed the consistency of the proposed system.
A novel optical-fiber instrument is presented for the monitoring of lighting in a museum environment. It makes use of blue wool standard dosimeters, the light-induced color-fading which is continuously monitored by means of a miniaturized optical-fiber spectrophotometer. Field tests performed at the Uffizi Gallery of Florence are presented.
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