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2× phanta max master mix  (Vazyme Biotech Co)


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    Structured Review

    Vazyme Biotech Co 2× phanta max master mix

    2× Phanta Max Master Mix, supplied by Vazyme Biotech Co, used in various techniques. Bioz Stars score: 96/100, based on 331 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/2%C3%97+phanta+max+master+mix/Phanta+Max+Master+Mix+-+Dye+Plus/pmc13052146-40-0-8
    Average 96 stars, based on 331 article reviews
    2× phanta max master mix - by Bioz Stars, 2026-10
    96/100 stars

    Images

    1) Product Images from "Protocol for enhancing Cas9 efficiency and fidelity through structure-guided phosphate-locking loop engineering"

    Article Title: Protocol for enhancing Cas9 efficiency and fidelity through structure-guided phosphate-locking loop engineering

    Journal: STAR Protocols

    doi: 10.1016/j.xpro.2026.104452


    Figure Legend Snippet:

    Techniques Used: Virus, Recombinant, Saline, Plasmid Preparation, Cell Culture, Gel Extraction, Purification, Multiplex Assay, Transfection, Mutagenesis, Amplification, Sequencing, Expressing, Variant Assay, Control, Software, Drug discovery, Biomarker Discovery, Spectrophotometry, Hood, Electrophoresis, Imaging


    Figure Legend Snippet: PCR reaction master mix

    Techniques Used:


    Figure Legend Snippet: PCR reaction master mix

    Techniques Used: Purification

    Related Articles

    Virus:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Recombinant:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Saline:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Plasmid Preparation:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Cell Culture:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Gel Extraction:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Purification:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Multiplex Assay:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Transfection:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Mutagenesis:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Amplification:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Sequencing:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Expressing:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Variant Assay:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Control:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Software:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Drug discovery:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Biomarker Discovery:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Spectrophotometry:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Hood:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Electrophoresis:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.

    Imaging:

    Article Title: RNA sample optimization for cryo-EM analysis.
    Article Snippet: RNAs play critical roles in most biological processes.. Although the threedimensional (3D) structures of RNAs primarily determine their functions, it remains challenging to experimentally determine these 3D structures due to their conformational heterogeneity and intrinsic dynamics.. Cryogenic electron microscopy (cryo-EM) has recently played an emerging role in resolving dynamic conformational changes and understanding structure– function relationships of RNAs including ribozymes, riboswitches and bacterial and viral noncoding RNAs.



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    Image Search Results


    Journal: STAR Protocols

    Article Title: Protocol for enhancing Cas9 efficiency and fidelity through structure-guided phosphate-locking loop engineering

    doi: 10.1016/j.xpro.2026.104452

    Figure Lengend Snippet:

    Article Snippet: 2× Phanta Max Master Mix (Dye Plus) , Vazyme , Cat# P525-01.

    Techniques: Virus, Recombinant, Saline, Plasmid Preparation, Cell Culture, Gel Extraction, Purification, Multiplex Assay, Transfection, Mutagenesis, Amplification, Sequencing, Expressing, Variant Assay, Control, Software, Drug discovery, Biomarker Discovery, Spectrophotometry, Hood, Electrophoresis, Imaging