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Coherent cube

Manufactured by Nikon

The Coherent Cube is a compact and versatile laser system designed for various laboratory applications. It functions as a coherent light source, producing a stable and consistent beam of laser radiation. The core purpose of the Coherent Cube is to provide a reliable and controlled source of laser light for experimental setups and scientific investigations.

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2 protocols using coherent cube

1

Plasmonic Enhanced Super-Resolution Imaging

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The samples were illuminated using a 405-nm laser diode source (Coherent Cube) using an inverted microscope fitted with a TIRF illuminator (Nikon) and a × 100 oil immersion objective (NA 1.49, Nikon). The laser light was filtered using dichroic (Z405rdc Chroma) and emission filters (ET420LP Chroma). Single molecule fluorescence was collected using an EMCCD camera (Photometric Evolve 512). Each frame had a 100 ms exposure time, with ∼30 ms of dead time between acquisitions. SR maps were constructed from a minimum of 60,000 images and, on average, contain ∼4,000 successful localization points after suitable filtering. In order to account for sample drift scattered laser light from the sample was reflected by the dichroic mirror and collected via a second camera (QICam). A disk in each array of structures was used as a reference point and the scattered laser light was localized and used to correct the sample position.
During the measurement process, the illuminating laser was kept at low power (on the order of ∼10−1 W cm−2) to ensure that in the presence of an enhanced EM field around our plasmonic structures, our dyes continued to operate in a linear response regime. The reader should note that this is one to several orders of magnitude less than conventional super-resolution microscopy techniques and as a result unenhanced molecules at the glass/sample interface are not observed.
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2

C2C12 Cell Seeding on M1CL1_20 Films

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M1CL1_20 films were preliminary assessed as cell scaffold for C2C12 cells as already reported. 14 C2C12 cells (from ATCC American Type Culture Collection; 10801 University Boulevard Manassas (VA) 20110-2209 used at 10th passage) were seeded directly on M1CL1_20 films surface and growth in DMEM F-12 supplemented with 10% FBS, 1% penicillin/streptomycin solution, in a humidified chamber at 5% CO 2 and 37°C. After 24 hours, M1CL1_20 films were transferred in new dishes, washed with PBS, and fixed using solution number one of the Diff-Quik Kit. Fixed cells were fluorescently labeled after simultaneous incubation for 15 minutes with Hoechst 33342 (Thermofisher) at a concentration of 1 µg/mL, and with Wheat Germ Agglutinin 488 (WGA488, Thermofisher), at 5 µg/mL. Imaging was performed with a confocal microscope (Nikon Eclipse TE300), equipped with the Nikon C2 scanning head Coherent CUBE (diode 405 nm), Melles Griot (Argon 488 nm), and Coherent Sapphire (Sapphire 561 nm) lasers. Emission filters for imaging were 452/45, 514/30, and 595/60 nm.
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