Cell Information:
Human Hair Follicle Dermal Papilla Cells (HFDPC) are mesenchyme cells isolated from the hair papilla of normal human scalp hair follicles. HFDPC can be used for the development and evaluation of hair growth products. Hair papilla, in the adult hair follicle, plays a crucial role in the dermal-epidermal interactions that control hair production and events of the hair growth cycle. It has been shown that cultured HFDPC can stimulate hair growth when implanted into an amputated follicle. When used in a reconstitution model, HFDPC is an excellent tool for identifying cell populations within the hair follicle and studying the effects of specific gene products on hair follicle growth and development.
The Transfection Reagent:
Transfection of primary cells, such as HFDPC, is a problem in the laboratory routine and further in tissue engineering and gene therapy. Most methods working effectively for cell lines in culture fail to transfect primary cells.
Human Hair Follicle Dermal Papilla Cell (HFDPC) Avalanche™ Transfection Reagent is a new class of unique chemical formulations specifically formulated and optimized for transfecting HFDPC. The proprietary formulation of lipids and polymers ensures the highest possible transfection efficiencies and viabilities for HFDPC. For details of the developing process of this reagent, please go to:How did EZ Biosystems develop Avalanche™ Cell type/cell line specific transfection reagent series?
Features:
- Highest efficiency to ensure experimental success
- Lowest Cellular Toxicity-maintain cell density and reduce experimental biases
- Deliver single or multiple plasmids
- synthesized from 100% animal origin-free components, making it easy to validate the absence of zoonotic diseases, such as BSE or viruses, in research experiments or cells lines
- Simplest and straightforward protocols
- Suitable for Reverse Transfection
- Compatible with transfection in any plate formats
- Economical: High efficiency means less amount of nucleic acid & reagent is needed
- Developed and manufactured by EZ Biosystems
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Data: |
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FIG. 1. High throughput test of transfection efficiency (determined as RLU/mg) on human hair follicle dermal papilla cells after transfection of luciferase reporter gene by using our 172 proprietary transfection formulas and several most popular commercial transfection reagents. The yellow box showed the results of 4 commercial transfection reagents. The red lines marked our candidate formulas with the highest transfection efficiency for human hair follicle dermal papilla cells. This test result was confirmed with repeat experiments. The one that showed the optimal balance of potent & low cytotoxicity among those candidate formulas after flow cytometry analysis on the percentage of 7AAD positive cells was later named as this Human Hair Follicle Dermal Papilla Cell Avalanche Transfection Reagent. |
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For Other Cells: |
Human Hair Follicle Dermal Papilla Cell (HFDPC) Avalanche™ Transfection Reagent can also be used on the following cells with high transfection efficiencies.
Human Mesenchymal Stem Cell (Human Marrow Stromal Cell) (hMSC) Human Follicle Outer Root Sheath Cell (HORSC) 786-O Cell Caki-1 Cell MDCK Cell Vero Cell 293 Cell 293T/17 Cell
Recommended protocols for these cells will be provided with the reagent. The protocols usually provide satisfactory transfection efficiency with invisible cytotoxicity. However, optimization may be needed for certain type of cells. Optimizations may include: the amount of DNA and this transfection reagent; cell density; transfection reagent/DNA ratio, or incubation time for the mixture of transfection reagent/DNA etc. For best transfection result, we recommend using the respective cell type/cell line specific Avalanche transfection reagents. Those reagents have been optimized on both recipes and protocols, and have been proved to have the best transfection results for the respective cell lines or primary cells. You can easily find the respective Avalanche transfection reagents specific for your cells by using the filters of our product list. |
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