Protein Expression Prokaryotic cells L. citreum

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Transfection is a powerful technique that enables the study of the function of genes and gene products in cells. Based on the nature of experiments, we may need a stable DNA transfection in cells for persistent gain-of-function or loss-of-function of the target gene. For stable transfection, integration of a DNA vector into the chromosome is crucial which requires selective screening and clonal isolation. By carefully selecting a viral delivery system and related reagents we can ensure safe and highly-efficient delivery of expression constructs for high-level constitutive or inducible expression in any mammalian cell type.

DNA DNA transfection Mammalian cells Primary cells Rat mesenchymal stem cells (rMSC)

Get tips on using Monoclonal Anti-Glial Fibrillary Acidic Protein (GFAP) to perform Immunohistochemistry Anti-Glial Fibrillary Acidic Protein (GFAP) - Mouse Human -NA-

Products Sigma-Aldrich Monoclonal Anti-Glial Fibrillary Acidic Protein (GFAP)

Get tips on using Blu13 (BLUelf) Prestained Protein Ladder(5 to 245 kDa) to perform Protein Ladder Prestained

Products BIO-HELIX Blu13 (BLUelf) Prestained Protein Ladder(5 to 245 kDa)

Get tips on using Blu12 (BLUeye) Prestained Protein Ladder(11 to 245 kDa) to perform Protein Ladder Prestained

Products BIO-HELIX Blu12 (BLUeye) Prestained Protein Ladder(11 to 245 kDa)

Get tips on using Blu11 (BlueAQUA) Prestained Protein Ladder(10 to 180 kDa) to perform Protein Ladder Prestained

Products BIO-HELIX Blu11 (BlueAQUA) Prestained Protein Ladder(10 to 180 kDa)

Get tips on using Blu10 (BlueRAY) Prestained Protein Ladder(10 to 180 kDa) to perform Protein Ladder Prestained

Products BIO-HELIX Blu10 (BlueRAY) Prestained Protein Ladder(10 to 180 kDa)

Get tips on using PageRuler™ Prestained Protein Ladder, 10 to 180 kDa to perform Protein Ladder Prestained

Products Thermo Fisher Scientific PageRuler™ Prestained Protein Ladder, 10 to 180 kDa

Transfection is a powerful technique that enables the study of the function of genes and gene products in cells. Based on the nature of experiments, we may need a stable DNA transfection in cells for persistent gain-of-function or loss-of-function of the target gene. For stable transfection, integration of a DNA vector into the chromosome is crucial which requires selective screening and clonal isolation. By carefully selecting a viral delivery system and related reagents we can ensure safe and highly-efficient delivery of expression constructs for high-level constitutive or inducible expression in any mammalian cell type.

DNA DNA transfection Mammalian cells Primary cells Human aortic smooth muscle cells (HOSMC)

Transfection is a powerful technique that enables the study of the function of genes and gene products in cells. Based on the nature of experiments, we may need a stable DNA transfection in cells for persistent gain-of-function or loss-of-function of the target gene. For stable transfection, integration of a DNA vector into the chromosome is crucial which requires selective screening and clonal isolation. By carefully selecting a viral delivery system and related reagents we can ensure safe and highly-efficient delivery of expression constructs for high-level constitutive or inducible expression in any mammalian cell type.

DNA DNA transfection Mammalian cells Primary cells Rat aortic smooth muscle cells (rASMC)

Get tips on using Color Prestained Protein Standard, Broad Range (10-250 kDa) to perform Protein Ladder Prestained

Products New England BioLabs Color Prestained Protein Standard, Broad Range (10-250 kDa)

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