Flowcytometry CD3 Mouse / IgG1, kappa

- Found 2407 results

The RNA-guided CRISPR-Cas9 nuclease system has revolutionized the genome editing practices. For the most part, the Cas9-mediated genome editing is performed either via nonhomologous end joining (NHEJ) or homology-directed repair (HDR) in mammalian cells, However, designing of specific sgRNAs and minimizing off-target cleavage mediated mutagenesis are the major challenges in CRISPR-Cas based genome editing. To circumvent these issues, we can take advantages of many available tools and approaches for sgRNA construction and delivery.

DNA CRISPR Mouse Deletion NIH 3T3 G3BP

The RNA-guided CRISPR-Cas9 nuclease system has revolutionized the genome editing practices. For the most part, the Cas9-mediated genome editing is performed either via nonhomologous end joining (NHEJ) or homology-directed repair (HDR) in mammalian cells, However, designing of specific sgRNAs and minimizing off-target cleavage mediated mutagenesis are the major challenges in CRISPR-Cas based genome editing. To circumvent these issues, we can take advantages of many available tools and approaches for sgRNA construction and delivery.

DNA CRISPR Mouse Deletion NIH 3T3 FVII

The RNA-guided CRISPR-Cas9 nuclease system has revolutionized the genome editing practices. For the most part, the Cas9-mediated genome editing is performed either via nonhomologous end joining (NHEJ) or homology-directed repair (HDR) in mammalian cells, However, designing of specific sgRNAs and minimizing off-target cleavage mediated mutagenesis are the major challenges in CRISPR-Cas based genome editing. To circumvent these issues, we can take advantages of many available tools and approaches for sgRNA construction and delivery.

DNA CRISPR Mouse Deletion Neuro 2a TET2

The RNA-guided CRISPR-Cas9 nuclease system has revolutionized the genome editing practices. For the most part, the Cas9-mediated genome editing is performed either via nonhomologous end joining (NHEJ) or homology-directed repair (HDR) in mammalian cells, However, designing of specific sgRNAs and minimizing off-target cleavage mediated mutagenesis are the major challenges in CRISPR-Cas based genome editing. To circumvent these issues, we can take advantages of many available tools and approaches for sgRNA construction and delivery.

DNA CRISPR Mouse Activation 3T3-L1 eIF5A1

Get tips on using ViralSEQ™ Mouse Minute Virus (MMV) Detection System to perform Cell Culture Contamination Detection Kit Virus

Products Thermo Fisher Scientific ViralSEQ™ Mouse Minute Virus (MMV) Detection System

Get tips on using Anti-LGR5 mouse mAb, clone OTI2A2, PE conjugated to perform Flow cytometry Anti-bodies Human - LGR5

Products OriGene Anti-LGR5 mouse mAb, clone OTI2A2, PE conjugated

Get tips on using Purified Mouse Anti-Beclin Clone 20/Beclin (RUO) to perform Autophagy assay cell type - NIH-3T3

Products BD Biosciences Purified Mouse Anti-Beclin Clone 20/Beclin (RUO)

Get tips on using Purified Mouse Anti-Beclin Clone 20/Beclin (RUO) to perform Autophagy assay cell type - THP 1

Products BD Biosciences Purified Mouse Anti-Beclin Clone 20/Beclin (RUO)

Get tips on using Monoclonal Mouse Anti-Villin (Autostainer Link 48) Clone 1D2 C3 to perform Immunohistochemistry Human - Villin

Products Agilent Technologies Monoclonal Mouse Anti-Villin (Autostainer Link 48) Clone 1D2 C3

DNA microarrays enable researchers to monitor the expression of thousands of genes simultaneously. However, the sensitivity, accuracy, specificity, and reproducibility are major challenges for this technology. Cross-hybridization, combination with splice variants, is a prime source for the discrepancies in differential gene expression calls among various microarray platforms. Removing (either from production or downstream bioinformatic analysis) and/or redesigning the microarray probes prone to cross-hybridization is a reasonable strategy to increase the hybridization specificity and hence, the accuracy of the microarray measurements.

DNA Microarray Comperative genomic hybridization Mouse iPSC

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