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Knockout Cell Lines

Knockout cell lines provide defined loss-of-function models for studying gene activity in a controlled cellular background. By removing or disrupting a specific gene, researchers can directly evaluate its contribution to signaling pathways, disease phenotypes, drug sensitivity, cell growth, immune response, metabolism, differentiation, and other biological processes. As a key group of genome-edited cell lines, knockout cell lines are widely used in target validation, mechanism-of-action studies, functional screening, biomarker research, and disease model development.

Ascent Research offers CRISPR knockout cell lines across a range of commonly used mammalian cell line backgrounds. Our CRISPR KO cell line products are mainly generated using CRISPR RNP-based editing, in which Cas9 protein and guide RNA are delivered directly into cells. This non-viral strategy supports efficient gene disruption while avoiding unnecessary vector-based integration. Edited regions are typically confirmed by Sanger sequencing to verify the presence of target-site mutations and support reliable downstream use.

This category includes both clonal knockout cell lines and polyclonal KO cell pools. Clonal knockout cell lines are suitable when researchers require a more uniform genetic background and stable performance across repeated experiments. Polyclonal knockout cells, also called KO cell pools, provide a more economical option for early-stage screening, assay setup, pathway exploration, or projects where a mixed edited population is acceptable. These cell pools can help reduce cost and shorten project timelines before moving into single-cell clone selection.

In addition to standard knockout cell line products, Ascent Research supports custom cell line development for gene-specific knockout projects. Researchers can select host cell backgrounds based on disease relevance, pathway activity, assay compatibility, or comparison with parental and isogenic cell lines. Whether you need a knockout cell line for focused gene function research or multiple KO cell lines for broader screening applications, our engineered cell lines provide practical in vitro models for investigating gene loss and its biological consequences.

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MTFP1 Knockout SK-HEP-1 Polyclonal Cells

MTFP1 Knockout SK-HEP-1 Polyclonal Cells is a knockout polyclonal cell population. The MTFP1 was knocked out in the SK-HEP-1 cells using the CRISPR RNP technique.
Cat. No. ARG15106

PEG10 Knockout SK-HEP-1 Polyclonal Cells

PEG10 Knockout SK-HEP-1 Polyclonal Cells is a knockout polyclonal cell population. The PEG10 was knocked out in the SK-HEP-1 cells using the CRISPR RNP technique.
Cat. No. ARG15105

DECR2 Knockout SK-HEP-1 Polyclonal Cells

DECR2 Knockout SK-HEP-1 Polyclonal Cells is a knockout polyclonal cell population. The DECR2 was knocked out in the SK-HEP-1 cells using the CRISPR RNP technique.
Cat. No. ARG15104

NSD2 Knockout jeko-1 Polyclonal Cells

NSD2 Knockout jeko-1 Polyclonal Cells is a knockout polyclonal cell population. The NSD2 was knocked out in the jeko-1 cells using the CRISPR RNP technique.
Cat. No. ARG11276

PDK4 Knockout HK2 Polyclonal Cells

PDK4 Knockout HK2 Polyclonal Cells is a knockout polyclonal cell population. The PDK4 was knocked out in the HK2 cells using the CRISPR RNP technique.
Cat. No. ARG11275

METTL4 Knockout HK2 Polyclonal Cells

METTL4 Knockout HK2 Polyclonal Cells is a knockout polyclonal cell population. The METTL4 was knocked out in the HK2 cells using the CRISPR RNP technique.
Cat. No. ARG11274

CEACAM7 Knockout UMUC-3 Polyclonal Cells

CEACAM7 Knockout UMUC-3 Polyclonal Cells is a knockout polyclonal cell population. The CEACAM7 was knocked out in the UMUC-3 cells using the CRISPR RNP technique.
Cat. No. ARG11272

CRY1 Knockout UMUC-3 Polyclonal Cells

CRY1 Knockout UMUC-3 Polyclonal Cells is a knockout polyclonal cell population. The CRY1 was knocked out in the UMUC-3 cells using the CRISPR RNP technique.
Cat. No. ARG11271

CSDE1 Knockout UMUC-3 Polyclonal Cells

CSDE1 Knockout UMUC-3 Polyclonal Cells is a knockout polyclonal cell population. The CSDE1 was knocked out in the UMUC-3 cells using the CRISPR RNP technique.
Cat. No. ARG11270

Nsun2 Knockout UMUC-3 Polyclonal Cells

Nsun2 Knockout UMUC-3 Polyclonal Cells is a knockout polyclonal cell population. The NSUN2 was knocked out in the UMUC-3 cells using the CRISPR RNP technique.
Cat. No. ARG11269

NTN1 Knockout UMUC-3 Polyclonal Cells

NTN1 Knockout UMUC-3 Polyclonal Cells is a knockout polyclonal cell population. The NTN1 was knocked out in the UMUC-3 cells using the CRISPR RNP technique.
Cat. No. ARG11268

MTHFD2 Knockout UMUC-3 Polyclonal Cells

MTHFD2 Knockout UMUC-3 Polyclonal Cells is a knockout polyclonal cell population. The MTHFD2 was knocked out in the UMUC-3 cells using the CRISPR RNP technique.
Cat. No. ARG11267

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