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α plan fluar

Manufactured by Zeiss
Sourced in United Kingdom

The α-Plan-Fluar is a high-performance objective lens designed for microscopy applications. It provides excellent optical performance with low distortion and high contrast. The lens is suitable for a wide range of magnifications and can be used in various microscopy techniques.

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3 protocols using α plan fluar

1

Single-Molecule Imaging in Microscopy

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Single-molecule images were acquired using an Axiovert 200M microscope with a TIRF illuminator (Zeiss, UK) and incorporating a 100 x oil-immersion objective (α-Plan-Fluar, NA = 1.45; Zeiss, UK) and an EMCCD (iXon X3; Andor, UK). Samples were illuminated with a 638 nm laser (100 mW, Vortran) fed into the microscope via a polarisation maintaining triple laser combiner (Oz Optics) . Alternatively, the 640 nm lines of a Vortran Combiner or of an Andor Revolution Laser Combiner were used. A wrap-around incubator (Pecon XL S1) was used to maintain a constant temperature of 37°C. The field of view of each channel was 80 × 30 μm. Data were acquired at 20 Hz for 30 s. Images were saved in HDF5 format for subsequent processing using custom-designed software. All Single-Molecule time series data were analysed using the multidimensional analysis software described previously (Rolfe et al., 2011 (link)).
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2

Dual-color Imaging of HER2 and HER3 Interaction

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CHO cells were plated at 1.8 × 105 cells/dish on 1% BSA-coated 35 mm glass-bottom dishes (Matek) and grown for 24 h before transfection with HA-HER2-WT and HA-HER3-WT full-length plasmids using Viafect (Promega), according to the manufacturer's protocol. Forty-eight hours post-transfection, cells were serum-starved for 1 h, then treated for 1 h with 30 μM AC3573 compound or 0.3% DMSO in serum-free medium. Cells were then labelled with 0.5 nM HER2-Alexa488 Affibody and 15 nM HER3-CF640R Affibody or 14 nM NRG-CF640R for 7 min at 37°C and washed with serum-free medium before prompt imaging. Single-molecule images were acquired using an Axiovert 200M microscope with TIRF illuminator (Zeiss, U.K.), with a 100× oil-immersion objective (α-Plan-Fluar, NA = 1.45; Zeiss, U.K.) and an EMCCD (iXon X3; Andor, U.K.). The 488 nm and 642 nm lines of a LightHub laser combiner (Omicron Laserage GmbH) were used to illuminate the sample and an Optosplit Image Splitter (Cairn Research) was used to separate the image into its spectral components as described previously [48 (link)]. The field of view of each channel for single-molecule imaging was 80 × 30 µm. All single-molecule time series data were analysed using the multidimensional analysis software described previously [49 (link)]. Calculation of colocalisation and τON were performed as previously described [50 (link)].
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3

Optical Characterization of AuNP-DNA Origami

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UV–vis characterization was performed using the set up described in our previous work [27 ]. Briefly an inverted optical microscope (Axiovert 200, Zeiss) in transmitted light illumination (HAL 100 illuminator, Zeiss) was coupled with a microscope with 750 mm long spectrometer (Shamrock SR-750, Andor Technology plc.). The distinguishable agarose gel band representing AuNP-DNA origami hybrid structures were cut out after the electrophoretic procedure and were placed onto clean glass coverslip then mounted on XY sample stage.
The light transmitted through the sample was collected by 100× immersion objective (NA 1.45, α Plan-FLUAR, Zeiss), directed into a spectrometer, split by a diffractive grating of 600 lines per mm, and finally analysed using TE-cooled EMCCD (Newton DU971-UVB, Andor Technology plc.). The extinction spectra obtained from highly concentrated AuNP were normalized using the extinction spectra of the same gel acquired in a position without AuNP.
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