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Lb 940 multimode reader mithras

Manufactured by Berthold Technologies
Sourced in Germany

The LB 940 Multimode Reader Mithras is a versatile laboratory instrument designed for various detection modes. It can perform absorbance, fluorescence, and luminescence measurements. The device is capable of reading microplates and cuvettes.

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5 protocols using lb 940 multimode reader mithras

1

Nanoparticle Encapsulation of Fluorescent Dyes

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Nanocapsules were prepared as described in Section “Nanoparticle Preparation” by adding an aliquot of the chromophores to the oily phase. Rhodamine B, rhodamine 6G, and DiD (1,1′-dioctadecyl-3,3,3′,3′-tetramethylindodicarbocyanine, 4-chlorobenzenesulfonate salt) were selected as fluorescent markers at two different concentrations (10 and 50 µg/mL dissolved in ethanol), evaluating both the influence of the nature of the chromophore and its concentration. The evaluation of the encapsulation efficiency of the chromophores was carried out indirectly by quantifying the non-encapsulated fluorophore remaining in the undernatants after the centrifugation step. Rhodamines were measured at an emission wavelength of 590 nm (LB 940 Multimode Reader Mithras, Berthold Technologies GmbH & Co KG, Germany); UV–VIS spectroscopy at λ = 646 nm (Du-BoLife Science UV/VIS Beckman Coulter) was used to quantify DiD. The three different fluorophores were incorporated into the NE, PR and CS NCs, assuming no differences in the release and the encapsulation efficiency between the PR and the PARG NCs. The evaluation of the loading efficiency and release profile of the different fluorescent dyes are disclosed in Supplementary Material (Supplementary Figure 1 and Supplementary Table 1).
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2

Quantifying IL-35 and IFN-γ by ELISA

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IL-35 and IFNγ were measured by ELISA assay in the culture supernatants. In particular, IL-35 concentration was assessed by Human IL-35 ELISA kit (Boster Biological Technology Co) and IFN-γ was measured by IFN gamma Human ELISA kit (Invitrogen by Thermo Fisher Scientific). Samples were acquired by LB 940 Multimode Reader Mithras (Berthold Technologies).
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3

Cytokine Profiling by ELISA

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IFN-γ and TGF-β1 were measured by ELISA assay on the culture supernatant collected on day 5 from suppression experiments. In particular, cytokine concentration was assessed by Human IFN-gamma Instant ELISA (Bender MedSystems) and Human TGF-β1 ELISA kit (Boster Biological Technology Co). Samples were acquired by LB 940 Multimode Reader Mithras (Berthold Technologies).
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4

IFN-γ Quantification by ELISA

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IFN-γ was measured by ELISA on the culture supernatant collected on day 5 from suppression experiments. Cytokine concentration was assessed by Human IFN-gamma Instant ELISA (Bender MedSystems). Samples were acquired by LB 940 Multimode Reader Mithras (Berthold Technologies).
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5

ROS Production Quantification Assay

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ROS production was determined using a10-acetyl-3,7-dihydroxyphenoxazine-based plate assay (Amplex™ Red Reagent, Invitrogen, Carlsbad, CA, USA). The assay was conducted in opaque, 96-well plates (Microlite™ 1+ White Microtiter™ Plate, Sigma-Aldrich, St. Louis, MO, USA). For each donor, six stimulatory conditions were tested in triplicates. For each condition, 50 μL of the 4 × 10 6 cells/mL suspension, 50 μL of the antibiotic of interest in the indicated concentrations or PBS as control, 50 μL of the Amplex™ Red Reagent (final concentration of 0.625 μM), 20 μL horseradish peroxidase (final concentration 1/160 U/mL; Sigma-Aldrich), and 50 μL of the indicated stimulus or PBS were carefully combined. All unstimulated conditions consisted of 100 µL PBS, 50 µL of PMNs (4 × 10 6 cells/mL), and 50 µL AR (0.625 µM), only differing by the presence or absence of 20 µL horseradish peroxidase in order to determine basal burst activity. To continuously detect the converted fluorescent substrate resorufin within the Amplex™ Red assay, the LB 940 Multimode Reader Mithras (Berthold Technologies, Bad Wildbad, Germany) was used to measure for a total of 60 min therefore accounting for 52 measurements per well in 96-well plates. An excitation filter of 570 nm and an emission filter of 615 nm wavelength were applied. Measurements were taken at 37°C.
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