Promotional price valid on web orders only. Your contract pricing may differ. Interested in signing up for a dedicated account number?
Learn More

Apexbio Technology LLC DLIN-KC2-DMA-1MG
SDP

Catalog No. 5000570151
Encompass_Preferred

DLin-KC2-DMA (CAS No 1190197-97-7) is a lipid-based nanoparticle formulation commonly used in the field of biomedical research particularly in the delivery of nucleic acids for gene therapy and RNA interference Originating from advancements in lipid nanoparticle technology it functions by encapsulating therapeutic nucleic acids facilitating their cellular uptake and endosomal escape This enables effective delivery into target cells enhancing gene silencing or expression DLin-KC2-DMA exhibits potent activity in vitro typically in the nanomolar to low micromolar range allowing it to be a versatile tool in drug development and screening Its applications extend to various cell models including primary and immortalized cell lines as well as in vivo animal studies where it aids in the evaluation of gene delivery efficacy and safety Experimental concentrations typically depend on the specific research design to ensure optimal results within each study s context

Catalog No. 50-005-70151 Supplier Apexbio Technology LLC Supplier No. BA78631
May include imposed supplier surcharges.
Add to Cart
Add to Cart

missing translation for 'validMainframeMsg'

DLin-KC2-DMA (CAS No 1190197-97-7) is a lipid-based nanoparticle formulation commonly used in the field of biomedical research particularly in the delivery of nucleic acids for gene therapy and RNA interference Originating from advancements in lipid nanoparticle technology it functions by encapsulating therapeutic nucleic acids facilitating their cellular uptake and endosomal escape This enables effective delivery into target cells enhancing gene silencing or expression DLin-KC2-DMA exhibits potent activity in vitro typically in the nanomolar to low micromolar range allowing it to be a versatile tool in drug development and screening Its applications extend to various cell models including primary and immortalized cell lines as well as in vivo animal studies where it aids in the evaluation of gene delivery efficacy and safety Experimental concentrations typically depend on the specific research design to ensure optimal results within each study s context

Product Title
Select an issue

By clicking Submit, you acknowledge that you may be contacted by Fisher Scientific in regards to the feedback you have provided in this form. We will not share your information for any other purposes. All contact information provided shall also be maintained in accordance with our Privacy Policy.