Protein Expression Prokaryotic cells L. citreum

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Get tips on using T-PER™ Tissue Protein Extraction Reagent to perform Protein isolation Tissue - Mouse lung tissue

Products Thermo Fisher Scientific T-PER™ Tissue Protein Extraction Reagent

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 prenatal cardiac progenator cells

Get tips on using Gateway™ pDONR™221 Vector to perform Protein expression and purification Yeast - Saccharomyces cerevisiae ΔHSPA5

Products Thermo Fisher Scientific Gateway™ pDONR™221 Vector

Get tips on using pPICZα A, B, & C Pichia Vectors to perform Protein expression and purification Yeast - Pichia pastoris hmPRα

Products Thermo Fisher Scientific pPICZα A, B, & C Pichia Vectors

Get tips on using UNveil Unstained Protein Ladder(10 to 200 kDa) to perform Protein Ladder Unstained

Products BIO-HELIX UNveil Unstained Protein Ladder(10 to 200 kDa)

Get tips on using BLUEstain™ 2 Protein ladder, 5-245 kDa to perform Protein Ladder Prestained

Products GOLDBIO BLUEstain™ 2 Protein ladder, 5-245 kDa

Get tips on using IRIS9 Prestained Protein Ladder(15 to 180 kDa) to perform Protein Ladder Prestained

Products BIO-HELIX IRIS9 Prestained Protein Ladder(15 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 CD4+ T cells

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 CD8+ T cells

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 schwann cells

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