Transfecting Mammalian Cells: Optimization of Critical Parameters Affecting Calcium-Phosphate Precipitate Formation

Трансфекция клеток млекопитающих: оптимизация критических параметров, влияющих на образование кальций-фосфатного осадка
Florian Μ. Wurm, M. Jordan, Annette Schallhorn
1996-02-01

DNA-calcium phosphate co-precipitatescalcium-phosphate precipitationmammalian cell transfectionstable transfectiontransient transfection
DNA-calcium phosphate co-precipitates arise spontaneously in supersaturated solutions. Highly effective precipitates for transfection purposes, however, can be generated only in a very narrow range of physico-chemical conditions that control the initiation and growth of precipitate complexes. The concentrations of calcium and phosphate are the main factors influencing characteristics of the precipitate complex, but other parameters, such as temperature, DNA concentration and reaction time are important as well. An example for this is the finding that almost all of the soluble DNA in the reaction mix can be bound into an insoluble complex with calcium phosphate in <1 min. Extending the reaction time to 20 min results in aggregation and/or growth of particles and reduces the level of expression. With improved protocols we gained better reproducibility and higher efficiencies both for transient and for stable transfections. Up to 60% of cells stained positive for beta-gal and transient production of secreted proteins was improved 5- to 10-fold over results seen with transfections using standard procedures. Similar improvements in efficiency (number of recombinant cell colonies) were observed with stable transfections, using co-transfected marker plasmids for selection. Transient expression levels 2 days after DNA transfer and titers obtained from stable cell lines, emerging weeks later, showed strong correlation.
1
Calcium and phosphate concentrations are the primary determinants of precipitate characteristics, while temperature, DNA concentration, and reaction time also significantly influence formation.
2
Highly effective DNA–calcium phosphate precipitates form only within a narrow range of physicochemical conditions governing particle initiation and growth.
3
Nearly all soluble DNA binds calcium phosphate within less than one minute; extending reaction time to 20 minutes promotes particle aggregation or growth and decreases expression.
4
Optimized transfection protocols improved reproducibility and efficiency, yielding up to 60% beta-galactosidase-positive cells and 5- to 10-fold higher transient secreted-protein production than standard procedures.
5
Stable transfection efficiency also improved, and transient expression two days after transfer strongly correlated with titers from stable cell lines emerging weeks later.

DNA–calcium phosphate co-precipitates used for transfection of mammalian cells

Optimization of physicochemical conditions controlling precipitate formation, particle aggregation, transfection efficiency, and recombinant expression

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1996-02-01
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Florian Μ. Wurm
M. Jordan
Annette Schallhorn
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