
Gene knockout cell lines are generated using CRISPR-Cas9 based technology to precisely disrupt target genes, enabling functional genomics research, disease modeling, and target validation.
CRBN (cereblon) encodes a protein belonging to the Lon protease-related protein family. It is involved in cellular functions associated with protein and calcium channel-related processes and has been implicated in brain development. CRBN also serves as a component of the cellular machinery targeted by certain therapeutic compounds, supporting its relevance to molecular and pharmacological studies.
Human cardiac ventricular cells are represented by AC16, an immortalized cell line derived from primary human ventricular tissue. The cells were generated by fusion of primary adult ventricular cardiomyocytes with a human fibroblast-like cell line carrying a temperature-sensitive SV40 large T antigen. AC16 exhibits cardiac-related characteristics and is used as an in vitro model for studies of human cardiomyocyte biology.
Comprehensive quality control includes STR authentication, sterility testing (bacteria and fungi), and mycoplasma screening to ensure purity and performance. Genotype is confirmed by two rounds of PCR and Sanger sequencing, and complete validation reports are provided for make-to-order products.

Cas9 cell lines in our cell bank can stably express Cas9 protein. Each Cas9 Stable Cell Line is easy to use and enables gene knockout simply by transfecting gRNA, while transfection of gRNA and donor DNA results in gene knock-in or point mutations
These Cas9 stable cell lines have been used to construct the KO cell lines for various genes, gene KO efficiency 5-10 times improved.
Selected cells, low passages, good cell condition, high activity, applicable for all kinds of gene-editing experiments.

Targeted knockout region: EExon 3
Reference Transcript: NM_001173482
Frameshift Mutation Strategy
For research use only. Not intended for human or animal clinical trials, therapeutic or diagnostic use






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