CRISPR Knockout Non-Viral Vector Library

abm's CRISPR Knockout Non-Viral Vectors can be transfected into your cells for high level transient expression. We offer a collection of Knockout Non-Viral Vectors that express sgRNAs targeting any human, mouse, or rat gene for knockout with spCas9. In addition to sgRNA-only vectors, we also offer an All-In-One Non-Viral option, which expresses sgRNA and spCas9 nuclease from the same vector for easy knockout experiments.

Key Features

  • Collection of sgRNAs for knockout of your gene of interest with spCas9. Human, mouse, and rat gene targets are available.
  • sgRNA delivery via plasmid transfection for ease of use and high levels of transient expression.
  • Available expressing sgRNA alone, or as an All-In-One construct which expresses both sgRNA and spCas9.
  • A set of three sgRNA plasmids is available for added assurance of efficient gene knockout.

For multiplex gRNA expression from lentiviral vector, use our Custom Multiplex gRNA Service.
For knockout of up to 100 target genes, take advantage of our pooled Custom Targeted Lentiviral sgRNA Library Service.

Search Knockout sgRNA Library

Knockout sgRNA Library

We offer sgRNA and all-in-one plasmids for knockout of any human, mouse, or rat gene.



Product Information

  • CRISPR Knockout Case Study
    Performance/Data
    Click to see our CRISPR Knockout Case Study, including experimental design and supporting data.
  • CRISPR Non-Viral Vector Workflow
    Workflow
    How to use abm's sgRNA non-viral vectors in your CRISPR knockout experiment.
  • CRISPR Knockout Guide
    Need Help Getting Started?
    This handbook outlines guidelines for CRISPR sgRNA design and the experimental procedures needed to achieve a specific gene knockout.

Top Publications

Regulation of NKT cell-mediated immune responses to tumours and liver inflammation by mitochondrial PGAM5-Drp1 signalling.

Kang, Y J et al.
Nat. Commun. 6:8371 (2015).


DOI: 10.1038/ncomms9371.

Isorhapontigenin (ISO) inhibits invasive bladder cancer (BC) formation in vivo and human BC invasion in vitro by targeting STAT1/FOXO1 Axis.

Jiang, G. et al.
Cancer Prev Res. Published Online First April 14, 2016.


doi: 10.1158/1940-6207.CAPR-15-0338

Clinical significance of SNORA42 as an oncogene and a prognostic biomarker in colorectal cancer.

Okugawa, Y et al.
Gut (2015)


doi:10.1136/gutjnl-2015-309359

Browse Products

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  1. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF807P knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF807P gene....


  2. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF75C knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF75C gene....


  3. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF75B knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF75B gene....


  4. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF72 knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF72 gene. Also...


  5. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF705CP knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF705CP...


  6. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF67P knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF67P gene....


  7. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF66 knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF66 gene. Also...


  8. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF652P knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF652P gene....


  9. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF487 knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF487 gene....


  10. Price: $85.00~$5,660.00
    Unit: 1.0 μg per target, 5 x 200 μl, 300 μl per target, 1.0 ml, 1 x 106 cells/1.0 ml
    abm's ZNF463P knockout sgRNA vectors, viruses, and cell lines are ready to use in your CRISPR experiment. These knockout sgRNA vectors and viruses can be used in conjunction with Cas9 to perform high efficiency CRISPR knockouts of the ZNF463P gene....

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