Label IT¢ç RNAi Delivery Controls
CAT# PRODUCT SIZE STORAGE ¼ÒºñÀÚ°¡ ÁÖ¹®
MIR7900[Mirus]Label IT¢ç RNAi Delivery Control, Cy¢â310 ug-·Î±×ÀÎ
MIR7901[Mirus]Label IT¢ç RNAi Delivery Control, Cy¢â3100 ug-·Î±×ÀÎ
MIR7902[Mirus]Label IT¢ç RNAi Delivery Control, Fluorescein10 ug-·Î±×ÀÎ
MIR7903[Mirus]Label IT¢ç RNAi Delivery Control, Fluorescein100 ug-·Î±×ÀÎ
-·Î±×ÀÎ

Label IT¢ç RNAi Delivery Controls

Fluorescently labeled RNAi duplexes ideal for in vitro or in vivo tracking

  • Sensitive - Easily visualize transfected cells and assess delivery efficiency using fluorescent microscopy.
  • Inert - Not known to target any mammalian genes or cause off-target effects.
  • Compatible - Suitable for co-delivery experiments with functional siRNA.
  • Ease of Use - Supplied as a ready to use 10 µM stock solution with a 10X RNAi Dilution Buffer.
Figure 1. The Label IT¢ç RNAi Delivery Controls Allow Quick Assessment of Delivery Efficiency For In Vitro Applications. HeLa cells were transfected in serum-containing media with (A) Label IT¢ç Cy¢ç3 RNAi Delivery Control (red) using the TransIT-siQUEST¢ç Transfection Reagent and (B) Label IT¢ç Fluorescein RNAi Delivery Control (green) using the TransIT-TKO¢ç Transfection Reagent. Twenty-four hours post-transfection, the cells were fixed, then counterstained to locate the nuclei (blue) and the actin (green).
Figure 2. Visualization of the Label IT¢ç Cy¢ç3 RNAi Delivery Control in Liver Sections Following Tail Vein Injection. TransIT¢ç-QR Hydrodynamic Delivery Solution was used to deliver 25 µg of Label IT¢ç Cy¢ç3 RNAi Delivery Control (red) to a mouse using hydrodynamic delivery via the tail vein. Forty-five minutes post-injection the liver was harvested. Sections were processed to stain the nuclei (blue) and to stain the actin (green).
Storage Conditions: Store at -20¨¬C, protected from exposure to light. Store the 10X RNAi Dilution Buffer at 4¨¬C.
Product Guarantee: 6 months

»ç¿ë Èıâ
»ç¿ëÈıⰡ ¾ø½À´Ï´Ù.
»ç¿ëÈıâ ÀÛ¼º
gototop