Eccles:AJ siRNA rev txn: Difference between revisions

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Lipofectamine 2000 Reagent is a proprietary formulation that facilitates highly efficient delivery of Stealth RNA molecules  
Lipofectamine 2000 Reagent is a proprietary formulation that facilitates highly efficient delivery of Stealth RNA molecules  
or short interfering RNA (siRNA) to mammalian cells for RNAi analysis. Here, we describe reverse transfection using  
or short interfering RNA (siRNA) to mammalian cells for RNAi analysis. Here, we describe reverse transfection using  
Lipofectamine 2000. Reverse transfection is a method for high throughput (HTP) transfection of multiple siRNA or StealthTM
Lipofectamine 2000. Reverse transfection is a method for high throughput (HTP) transfection of multiple siRNA or Stealth
RNAi duplexes, and is well suited in combination with RNAi duplexes pre-dispensed in 96-wells plates, such as the StealthTM
RNAi duplexes, and is well suited in combination with RNAi duplexes pre-dispensed in 96-wells plates, such as the Stealth
RNAi Human Collections (available through our website, www.invitrogen.com).  
RNAi Human Collections (available through our website, www.invitrogen.com).  


Line 17: Line 17:


===General Guidelines for Transfection===  
===General Guidelines for Transfection===  
Follow these general guidelines when using LipofectamineTM 2000 to reverse transfect siRNA or StealthTM RNAi duplexes into  
Follow these general guidelines when using Lipofectamine 2000 to reverse transfect siRNA or Stealth RNAi duplexes into  
mammalian cells.  
mammalian cells.  
*Use low-passage cells, and make sure that cells are healthy and greater than 90% viable before transfection. This protocol is for use with adherent cells, as transfection efficiency for suspension cells generally is lower and may need optimization.
*Use low-passage cells, and make sure that cells are healthy and greater than 90% viable before transfection. This protocol is for use with adherent cells, as transfection efficiency for suspension cells generally is lower and may need optimization.
*Do not add antibiotics to the medium during transfection as this reduces transfection efficiency and causes cell death.
*Do not add antibiotics to the medium during transfection as this reduces transfection efficiency and causes cell death.
*For optimal results, use Opti-MEM® I Reduced Serum Medium to dilute LipofectamineTM 2000, DNA, and dsRNA oligomers prior to complex formation.  
*For optimal results, use Opti-MEM I Reduced Serum Medium to dilute Lipofectamine 2000, DNA, and dsRNA oligomers prior to complex formation.  
*To increase accuracy and reduce assay variability, we recommend performing triplicate transfections for each sample condition.  
*To increase accuracy and reduce assay variability, we recommend performing triplicate transfections for each sample condition.  


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You should have the following materials on hand before beginning:  
You should have the following materials on hand before beginning:  
*Mammalian cell line cultured in the appropriate growth medium  
*Mammalian cell line cultured in the appropriate growth medium  
*StealthTM RNAi or siRNA of interest (20 μM stock in 1X RNA Annealing/Dilution Buffer)  
*Stealth RNAi or siRNA of interest (20 μM stock in 1X RNA Annealing/Dilution Buffer)  
*RNAi controls  
*RNAi controls  
*LipofectamineTM 2000 Reagent (Catalog nos. 11668-027 or 11668-019; store at +4°C and mix gently before use)  
*Lipofectamine 2000 Reagent (Catalog nos. 11668-027 or 11668-019; store at +4°C and mix gently before use)  
*Opti-MEM® I Reduced Serum Medium (pre-warmed; Catalog nos. 31985-062 or 31985-070)  
*Opti-MEM I Reduced Serum Medium (pre-warmed; Catalog nos. 31985-062 or 31985-070)  
*96-well tissue culture plates and tissue culture supplies  
*96-well tissue culture plates and tissue culture supplies  


===Transfection Procedure===  
===Transfection Procedure===  
Use this procedure to reverse transfect your siRNA or StealthTM RNAi duplexes into mammalian cells in 96-wells plates using  
Use this procedure to reverse transfect your siRNA or Stealth RNAi duplexes into mammalian cells in 96-wells plates using  
LipofectamineTM 2000. The complexes are prepared inside the wells, after which cells and medium are added. Remember to  
Lipofectamine 2000. The complexes are prepared inside the wells, after which cells and medium are added. Remember to  
include the proper positive and negative controls in your experiment.   
include the proper positive and negative controls in your experiment.   
#For each well to be transfected, prepare DNA-RNAi molecule-LipofectamineTM 2000 complexes as follows.  
#For each well to be transfected, prepare DNA-RNAi molecule-Lipofectamine 2000 complexes as follows.  
#*Mix LipofectamineTM 2000 gently before use, then dilute 0.25 μl LipofectamineTM 2000 in 25 μl Opti-MEM® I Medium without serum in a separate vessel. Mix gently and incubate for 5 minutes at room temperature.  
#*Mix LipofectamineTM 2000 gently before use, then dilute 0.25 μl Lipofectamine 2000 in 25 μl Opti-MEM I Medium without serum in a separate vessel. Mix gently and incubate for 5 minutes at room temperature.  
#*Dilute 15 pmol siRNA or StealthTM RNAi in 25 μl Opti-MEM® I Medium without serum in the well of the tissue culture plate. Mix gently.  
#*Dilute 15 pmol siRNA or StealthTM RNAi in 25 μl Opti-MEM I Medium without serum in the well of the tissue culture plate. Mix gently.  
#*After the 5 minute incubation, add the diluted LipofectamineTM 2000 to the wells with the diluted RNAi molecules. Mix gently and incubate for 15 minutes at room temperature to allow complex formation to occur. The solution may appear cloudy, but this will not impede the transfection.
#*After the 5 minute incubation, add the diluted Lipofectamine 2000 to the wells with the diluted RNAi molecules. Mix gently and incubate for 15 minutes at room temperature to allow complex formation to occur. The solution may appear cloudy, but this will not impede the transfection.
#Add 100 μl complete growth medium without antibiotics with 20,000 cells to each well containing RNAi molecule-Lipofectamine 2000 complexes. This gives a final volume of 150 μl and a final RNA concentration of 100 nM. Mix gently by rocking the plate back and forth.
#Add 100 μl complete growth medium without antibiotics with 20,000 cells to each well containing RNAi molecule-Lipofectamine 2000 complexes. This gives a final volume of 150 μl and a final RNA concentration of 100 nM. Mix gently by rocking the plate back and forth.
#Incubate the cells at 37°C in a CO2 incubator until you are ready to harvest cells and assay for your target gene.  
#Incubate the cells at 37°C in a CO2 incubator until you are ready to harvest cells and assay for your target gene.  


Harvest cells 24-48 hours after transfection to assay for target gene knockdown.
Harvest cells 24-48 hours after transfection to assay for target gene knockdown.

Revision as of 19:11, 29 October 2007

Back to Eccles Lab > DGG Protocols

This is plucked straight from Invitrogen's own protocol. Scale up for transfection in larger culture vessels.

Reverse Transfection of siRNA using Lipofectamine 2000 in a 96 well plate format

Introduction

Lipofectamine 2000 Reagent is a proprietary formulation that facilitates highly efficient delivery of Stealth RNA molecules or short interfering RNA (siRNA) to mammalian cells for RNAi analysis. Here, we describe reverse transfection using Lipofectamine 2000. Reverse transfection is a method for high throughput (HTP) transfection of multiple siRNA or Stealth RNAi duplexes, and is well suited in combination with RNAi duplexes pre-dispensed in 96-wells plates, such as the Stealth RNAi Human Collections (available through our website, www.invitrogen.com).

Reverse transfection combines RNA, transfection reagent, and cells in an altered sequence compared to traditional Lipofectamine 2000 transfection protocols. In short, a different RNAi molecule is put in each well prior to transfection and combined with diluted Lipofectamine 2000 to form complexes in each well. Cells are added directly to the Lipofectamine 2000-RNA complexes and transfection occurs while cells are attaching to the well.

General Guidelines for Transfection

Follow these general guidelines when using Lipofectamine 2000 to reverse transfect siRNA or Stealth RNAi duplexes into mammalian cells.

  • Use low-passage cells, and make sure that cells are healthy and greater than 90% viable before transfection. This protocol is for use with adherent cells, as transfection efficiency for suspension cells generally is lower and may need optimization.
  • Do not add antibiotics to the medium during transfection as this reduces transfection efficiency and causes cell death.
  • For optimal results, use Opti-MEM I Reduced Serum Medium to dilute Lipofectamine 2000, DNA, and dsRNA oligomers prior to complex formation.
  • To increase accuracy and reduce assay variability, we recommend performing triplicate transfections for each sample condition.

Materials Needed

You should have the following materials on hand before beginning:

  • Mammalian cell line cultured in the appropriate growth medium
  • Stealth RNAi or siRNA of interest (20 μM stock in 1X RNA Annealing/Dilution Buffer)
  • RNAi controls
  • Lipofectamine 2000 Reagent (Catalog nos. 11668-027 or 11668-019; store at +4°C and mix gently before use)
  • Opti-MEM I Reduced Serum Medium (pre-warmed; Catalog nos. 31985-062 or 31985-070)
  • 96-well tissue culture plates and tissue culture supplies

Transfection Procedure

Use this procedure to reverse transfect your siRNA or Stealth RNAi duplexes into mammalian cells in 96-wells plates using Lipofectamine 2000. The complexes are prepared inside the wells, after which cells and medium are added. Remember to include the proper positive and negative controls in your experiment.

  1. For each well to be transfected, prepare DNA-RNAi molecule-Lipofectamine 2000 complexes as follows.
    • Mix LipofectamineTM 2000 gently before use, then dilute 0.25 μl Lipofectamine 2000 in 25 μl Opti-MEM I Medium without serum in a separate vessel. Mix gently and incubate for 5 minutes at room temperature.
    • Dilute 15 pmol siRNA or StealthTM RNAi in 25 μl Opti-MEM I Medium without serum in the well of the tissue culture plate. Mix gently.
    • After the 5 minute incubation, add the diluted Lipofectamine 2000 to the wells with the diluted RNAi molecules. Mix gently and incubate for 15 minutes at room temperature to allow complex formation to occur. The solution may appear cloudy, but this will not impede the transfection.
  2. Add 100 μl complete growth medium without antibiotics with 20,000 cells to each well containing RNAi molecule-Lipofectamine 2000 complexes. This gives a final volume of 150 μl and a final RNA concentration of 100 nM. Mix gently by rocking the plate back and forth.
  3. Incubate the cells at 37°C in a CO2 incubator until you are ready to harvest cells and assay for your target gene.

Harvest cells 24-48 hours after transfection to assay for target gene knockdown.