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human a3bctd  (Addgene inc)


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    Structured Review

    Addgene inc human a3bctd
    Human A3bctd, supplied by Addgene inc, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+a3bctd/A3Bi-ctd-Cas9n-UGI-NLS+(Plasmid+%23109426)/pm37672599-46-15-19
    Average 91 stars, based on 1 article reviews
    human a3bctd - by Bioz Stars, 2026-10
    91/100 stars

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    Related Articles

    Labeling:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Fluorescence:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Expressing:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Control:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Microscopy:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Imaging:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Construct:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Cotransfection:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Western Blot:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Standard Deviation:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Sequencing:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Derivative Assay:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Clone Assay:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Selection:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Transfection:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Virus:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Flow Cytometry:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).

    Plasmid Preparation:

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels.
    Article Snippet: Precision genome editing has become a reality with the discovery of base editors.. Cytosine base editor (CBE) technologies are improving rapidly but are mostly optimized for TC dinucleotide targets.. Here, we report the development and implementation of APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels (ARSENEL) in living cells.

    Article Title: APOBEC Reporter Systems for Evaluating diNucleotide Editing Levels
    Article Snippet: All reporter constructs were confirmed by Sanger sequencing (Azenta/Genewiz, NJ) or whole-plasmid sequencing (Plasmidsaurus, OR).



    Similar Products

    91
    Addgene inc human a3bctd
    Human A3bctd, supplied by Addgene inc, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+a3bctd/A3Bi-ctd-Cas9n-UGI-NLS+(Plasmid+%23109426)/pm37672599-46-15-19
    Average 91 stars, based on 1 article reviews
    human a3bctd - by Bioz Stars, 2026-10
    91/100 stars
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