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      • Ref: FP0027
        Sizes: 1 Probe Set

        mutaFISH&trade; CK7wt RNA Probes is designed to detect human CK7 gene on single strand RNA in cells using padlock probe and <I>in situ</i> rolling-circle amplification technology.

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      • Ref: FP0028
        Sizes: 1 Probe Set

        mutaFISH&trade; CK9wt RNA Probes is designed to detect human CK9 gene on single strand RNA in cells using padlock probe and <I>in situ</i> rolling-circle amplification technology.

        Product detail
      • Ref: FP0029
        Sizes: 1 Probe Set

        mutaFISH&trade; CK19wt RNA Probes is designed to detect human CK19 gene on single strand RNA in cells using padlock probe and <I>in situ</i> rolling-circle amplification technology.

        Product detail
      • Ref: FP0030
        Sizes: 1 Probe Set

        mutaFISH&trade; CK20wt RNA Probes is designed to detect human CK20 gene on single strand RNA in cells using padlock probe and <I>in situ</i> rolling-circle amplification technology.

        Product detail
      • Ref: FP0031
        Sizes: 1 Probe Set

        mutaFISH&trade; IFNGwt RNA Probes is designed to detect human IFNG gene on single strand RNA in cells using padlock probe and <I>in situ</i> rolling-circle amplification technology.

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      • Ref: FP0032
        Sizes: 1 Probe Set

        mutaFISH&trade; PSCAwt RNA Probes is designed to detect human PSCA gene on single strand RNA in cells using padlock probe and <I>in situ</i> rolling-circle amplification technology.

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      • Many small fluorescent probes are used to monitor lysosomes in living cells. Dojindo’s LysoPrime Deep Red overcomes known problems with fluorescent lysosome probes, such as lack of specificity for lysosomes and staining dependent on the lysosomal pH. In addition, the high-retentivity of LysoPrime Deep Red enables long-term imaging experiments.

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      • Many small fluorescent probes are used to monitor lysosomes in living cells. Dojindo’s LysoPrime Deep Red overcomes known problems with fluorescent lysosome probes, such as lack of specificity for lysosomes and staining dependent on the lysosomal pH. In addition, the high-retentivity of LysoPrime Deep Red enables long-term imaging experiments.

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      • Live imaging using small molecule fluorescent probes has been widely used for lysosomal live cell analysis, but the low specificity and retention ability due to pH change have been cited as issues. The pHLys Red is a small molecule fluorescent probe with high lysosomal specificity and sensitivity to pH changes, enabling a more accurate analysis of lysosomal pH in live cells. It is also applicable to experiments that require long-term imaging due to its high retention ability.

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