GenJet™ In Vitro DNA Transfection Reagent for BHK-21 Cells

SKU:BHT2200008
Research Validated
Overview
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GenJet™ In Vitro DNA Transfection Reagent for BHK-21 Cells is a SignaGen Laboratories reagent pre-optimized for plasmid DNA delivery into BHK-21 cells, so the usual optimization step is not needed. Kidneys of newborn Syrian hamsters supplied the origin of BHK-21 (Baby Hamster Kidney-21), a continuous, fibroblast-like line that virology, recombinant protein expression, and vaccine development all draw on heavily.
Transfection Type DNA Transfection
Application Setting In Vitro
Optimized Cell Line BHK-21
Storage 4 °C
Shelf Life 24 months
Options selector
Catalog no. Size
SL100489-BHK-0P1ML 0.1 mL
SL100489-BHK-0P5ML 0.5 mL
SL100489-BHK-1P0ML 1.0 mL
SL100489-BHK-1P0MLX5 1.0 mL x 5
Available Options

Select the variant that best fits your experiment. Availability and lead time may vary by option.

  • Options: 4 variants available — select size from the variant selector.
  • Lead time: options listed in "Availability Content"; other statuses may take longer.
  • Storage: Store at 4°C. When maintained under the recommended storage conditions, the product remains stable for at least 24 months.
  • Shipping: Please contact us to confirm shipping conditions for this product.
  • Upon receipt: refrigerate upon receipt.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Storage 4 °C
Catalog no. (Mfr.) SL100489-BHK
Main SKU BHT2200008

Product Overview

Kidneys of newborn Syrian hamsters supplied the origin of BHK-21 (Baby Hamster Kidney-21), a continuous, fibroblast-like line that virology, recombinant protein expression, and vaccine development all draw on heavily. Vigorous growth paired with ready susceptibility to viral infection has carried BHK-21 to the front rank of mammalian cell lines used in producing viral vaccines and biologics, and where bioprocessing runs at large scale, suspension-adapted derivatives of the line are the usual choice. GenJet™ DNA In Vitro Transfection Reagent for BHK-21 Cells comes with conditions tuned to that line, so plasmid DNA transfection in BHK-21 cells proceeds efficiently.

Specifications

Transfection Type DNA Transfection
Application Setting In Vitro
Pre-Optimized Yes — Pre-Optimized for Specific Cell Type
Optimized Cell Line BHK-21
Storage Store at 4°C. When maintained under the recommended storage conditions, the product remains stable for at least 24 months.

Kit Contents

One milliliter of GenJet™ Reagent is sufficient for approximately 300–600 transfections in 24-well plates or 150–300 transfections in 6-well plates, depending on the culture format and amount of DNA used.

Applications

This DNA transfection reagent supports a range of molecular biology applications including transient and stable transfection, reporter assays, protein expression studies, and gene function analysis in mammalian cell systems.

Safety & Handling

For Research Use Only (RUO) — Not for diagnostic or therapeutic use. Handle reagents according to institutional biosafety guidelines. Refer to the Safety Data Sheet (SDS) for detailed handling and disposal instructions.
Q.What cell types are compatible with GenJet™ In Vitro DNA Transfection Reagent for BHK-21 Cells?
A.This reagent is designed for broad compatibility with mammalian cell lines. It is pre-optimized for BHK-21 cells for maximum efficiency. SignaGen offers pre-optimized versions for specific cell types.
Q.How should I store GenJet™ In Vitro DNA Transfection Reagent for BHK-21 Cells?
A.Store at 4°C. When maintained under the recommended storage conditions, the product remains stable for at least 24 months. Follow the product datasheet for detailed storage and stability information.
Q.Do I need to optimize transfection conditions with this product?
A.No. GenJet™ In Vitro DNA Transfection Reagent for BHK-21 Cells is pre-optimized for BHK-21 cells, so optimization is not required. Follow the provided protocol for best results.
Q.How many transfections does one vial provide?
A.One milliliter of GenJet™ Reagent is sufficient for approximately 300–600 transfections in 24-well plates or 150–300 transfections in 6-well plates, depending on the culture format and amount of DNA used. Actual numbers depend on plate format and the amount of nucleic acid used.
Q.What are BHK-21 cells?
A.Kidneys of newborn Syrian hamsters supplied the origin of BHK-21 (Baby Hamster Kidney-21), a continuous, fibroblast-like line that virology, recombinant protein expression, and vaccine development all draw on heavily. Vigorous growth paired with ready susceptibility to viral infection has carried BHK-21 to the front rank of mammalian cell lines used in producing viral vaccines and biologics, and where bioprocessing runs at large scale, suspension-adapted derivatives of the line are the usual choice.
Q.Is this product suitable for diagnostic or therapeutic use?
A.No. This product is for Research Use Only (RUO) and is not intended for diagnostic, therapeutic, or clinical applications.

Can't Find What You're Looking For? We can help you source the best match or customize a transfection solution for your study. Options may include pre-optimized formulations for a cell line not listed here, matching transfection buffer supplied with the reagent, DNA, siRNA or in vivo formats within the same reagent family, and bulk or custom packaging. Click Talk to a Scientist to submit a request form, email us at support@biohippo.com, or explore our Research Services for additional support. Our team will be in contact with you shortly.

Du J, Liao W, Wang H, et al.. MDIG-mediated H3K9me3 demethylation upregulates Myc by activating OTX2 and facilitates liver regeneration. Signal Transduct Target Ther (2023) 8(1), 351-351.. 10.1038/s41392-023-01575-5

Zhang X, McGinnis C, Yu G, et al.. Erythropoietin receptor on cDC1s dictates immune tolerance. Nature (2025). 10.1038/s41586-025-09824-z

Lee M, Siddoway B, Kaeser G, et al.. Somatic APP gene recombination in Alzheimer's disease and normal neurons. Nature (2018) 563(7733), 639-645.. 10.1038/s41586-018-0718-6

Konermann S, Brigham M, Trevino A, et al.. Optical control of mammalian endogenous transcription and epigenetic states. Nature (2013) 500(7463), 472-476.. 10.1038/nature12466

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