The largest database of trusted experimental protocols

0.4m nacl

Manufactured by Thermo Fisher Scientific

0.4M NaCl is a saline solution that provides a concentration of 0.4 moles of sodium chloride per liter of solution. This solution can be used as a buffer or diluent in various laboratory applications.

Automatically generated - may contain errors

2 protocols using 0.4m nacl

1

Cell Cycle Arrest Analysis of MDA-MB-468 Cells

Check if the same lab product or an alternative is used in the 5 most similar protocols
The cell cycle arrest analysis was carried out as previously described.48 Briefly, 1 × 106 MDA-MB-468 cells were infected as described above (Cell Lines and Viral Transductions). Thirty six hours post-infection, cells were collected, washed in PBS (Invitrogen), and fixed in 70% cold ethanol at −20°C for 1 h. Fixed cells were then washed three times with PBS and suspended in a staining solution containing 10 % v/v of 0.5 mg/mL propidium iodide (Sigma-Aldrich, St. Louis, MO), 5% v/v of PBS, 84 % v/v of 4mM Citrate Buffer (Sigma-Aldrich), 0.62 %v/v of RNase A (Sigma-Aldrich), 1% v/v of Triton X-100 (Sigma-Aldrich), and 3% m/v of PEG 6000 (Fluka, St. Louis, MO) for 20 min at 37°C in the dark. An equal volume of salt solution containing 5% of propidium iodide, 1% of Triton X-100, 89% v/v of 0.4M NaCl (Thermo Fisher Scientific Inc, Pittsburgh, PA), and 3% m/v of PEG 6000 was added to the stained cells and incubated at 4°C for 1 h in the dark. Cells were gated at similar intensity level of ZsGreen1. ZsGreen1 and PI were excited at 488 nm and detected at 507 nm and 670 nm, respectively. The means from three separate experiments (n=3) were analyzed using one-way ANOVA with Bonferroni’s post hoc test.
+ Open protocol
+ Expand
2

Cell Cycle Arrest Analysis of MDA-MB-468 Cells

Check if the same lab product or an alternative is used in the 5 most similar protocols
The cell cycle arrest analysis was carried out as previously described.48 Briefly, 1 × 106 MDA-MB-468 cells were infected as described above (Cell Lines and Viral Transductions). Thirty six hours post-infection, cells were collected, washed in PBS (Invitrogen), and fixed in 70% cold ethanol at −20°C for 1 h. Fixed cells were then washed three times with PBS and suspended in a staining solution containing 10 % v/v of 0.5 mg/mL propidium iodide (Sigma-Aldrich, St. Louis, MO), 5% v/v of PBS, 84 % v/v of 4mM Citrate Buffer (Sigma-Aldrich), 0.62 %v/v of RNase A (Sigma-Aldrich), 1% v/v of Triton X-100 (Sigma-Aldrich), and 3% m/v of PEG 6000 (Fluka, St. Louis, MO) for 20 min at 37°C in the dark. An equal volume of salt solution containing 5% of propidium iodide, 1% of Triton X-100, 89% v/v of 0.4M NaCl (Thermo Fisher Scientific Inc, Pittsburgh, PA), and 3% m/v of PEG 6000 was added to the stained cells and incubated at 4°C for 1 h in the dark. Cells were gated at similar intensity level of ZsGreen1. ZsGreen1 and PI were excited at 488 nm and detected at 507 nm and 670 nm, respectively. The means from three separate experiments (n=3) were analyzed using one-way ANOVA with Bonferroni’s post hoc test.
+ Open protocol
+ Expand

About PubCompare

Our mission is to provide scientists with the largest repository of trustworthy protocols and intelligent analytical tools, thereby offering them extensive information to design robust protocols aimed at minimizing the risk of failures.

We believe that the most crucial aspect is to grant scientists access to a wide range of reliable sources and new useful tools that surpass human capabilities.

However, we trust in allowing scientists to determine how to construct their own protocols based on this information, as they are the experts in their field.

Ready to get started?

Sign up for free.
Registration takes 20 seconds.
Available from any computer
No download required

Sign up now

Revolutionizing how scientists
search and build protocols!