Protocol describes an assay where it requires growing saturated cultures of yeast, counting, and spotting serial dilutions of yeast on both CSM and CSM + 6AU plates. - [Read 6-Azauracil Sensitivity Assay for Yeast Protocol]
Protocol applies EFs to cells in vitro but has been modified and to use electrotactic chambers to accommodate cells growing in planar culture or in three-dimensional (3D) gels, en bloc tissue cultures in 3D and possible small embryos, such as that from frog and zebra fish. The EF is applied to the cells or tissues cultured in a customer designed electrotactic chamber via agar salt bridges, Steinberg’s solution and Ag/AgCl electrodes. - [Read Application of Direct Current Electric Fields to Cells and Tissues in vitro]
Baculovirus protein expression protocols. Includes protocols: Cotransfection Protocol; Analysis of nonsecreted protein expression; Growing and Freezing Insect Cells. - [Read Baculovirus Protein Expression Protocols]
Freezing gealthy cells (> 95% viable) the protocol obtains a culture 80-90% viable 24 hours after thawing and growing on test vial from step 9. Antisense Research Group - [Read Cell Freezing using Liquid Nitrogen N2]
Culture of Human Prostatic Carcinoma Cell Lines,
Growing and splitting the cells, Preparation of frozen stocks in liquid nitrogen, How to bring frozen cells back into culture, Concentrations of antibiotics for the selection of stable transfectants. LNCa - [Read Culture of Human Prostatic Carcinoma Cell Lines]
The growth conditions of microbial cell cultures and the time of sample collection should be optimized and standardized when growing cells for protein extraction. Because cells may excrete proteases and other extracellular enzymes, and compounds in the medium may interfere with extraction, wash cultures with an isotonic buffer, such as PBS or sucrose before solubilization. - [Read Extraction and Solubilization of Total Protein from Microorganisms Protocol]
Protocol describes the use of glufosinate ammonium to select transformed Arabidopsis plants. The major advantage of glufosinate ammonium selection is that it can be performed on plants growing in soil and does not require the use of sterile techniques. - [Read Glufosinate Ammonium Selection of Transformed Arabidopsis Protocol]
For low-resolution work, cells to be used for staining can be grown directly on regular tissue-culture dishes. It is a convenient method that does not require much preparatory work. - [Read Growing Adherent Cells Directly on Tissue Dishes Protocol]
Glass is an excellent substrate for most tissue-culture-adapted cells and is compatible with all fixing and staining solutions. Glass coverslips in tissue-culture dishes or in 24-well multiwell plates are suitable carriers, as are multiwell slides. For high-resolution studies, choose glass coverslips of the highest available grade; #1 or #1.5 coverslips are the appropriate thickness. - [Read Growing Adherent Cells on Coverslips or Multiwell Slides Protocol]
Most manipulations with M13, including preparations of viral stocks and isolation of single- and double-stranded DNAs, begin with small-scale liquid cultures that are infected with an M13 plaque, picked from an agar plate. - [Read Growing Bacteriophage M13 in Liquid Culture Protocol]
High-throughput and sensitive assay to measure yeast cell growth: a bench protocol for testing genotoxic agents. Method is highly sensitive, provides quantifiable data and offers high-throughput screening capability. Starting with the treatment of cells with different doses of damaging agents, pre-prepared growing media containing 96-well plates are inoculated and cell population is automatically monitored every 10 min for 48 hours. - [Read High Throughput and Sensitive Assay Measure Yeast Cell Growth Protocol]
This method for tagging monoclonal antibodies involves growing hybridomas in the presence of radioactive amino acids. This protocol can be particularly useful when conventional labeling techniques cause the antibody to lose activity. The labeled antibodies that result are essentially identical to the unlabeled antibodies. - [Read Labeling Monoclonal Antibodies by Biosynthesis Protocol]
Protocol for liquid culture of worms. Includes: superbroth; S- basal; worm plates; GROWING THE BACTERIA (WORM FOOD); GROWING THE WORMS; AFTER THE CULTURE HAS GROWN; PREPARING EGGS TO START SYNCHRONIZED LIQUID CULTURES. - [Read Liquid Culture of Worms Protocol]
Exponentially growing cells are asynchronous with respect to the cell cycle stage. Detection of cell cycle-related events is improved by enriching the culture for cells at the stage during which the particular event occurs. Methods for synchronizing cells are provided here, including those based on morphological features of the cell. - [Read Methods for Synchronizing Cells at Specific Stages of the Cell Cycle]
Bacterial colonies growing on agar plates are transferred en masse to nitrocellulose filters. The spatial arrangement of colonies on the plates is preserved on the filters. After transfer, the filters are processed for hybridization to an appropriate radiolabeled probe while the original (master) plate is incubated for a few hours to allow the bacterial colonies to regrow in their original positions. - [Read Screening Bacterial Colonies by Hybridization: Intermediate Numbers Protocol]
A protocol for the selection of Phage Antibodies using Immobilized Antigen. This method describes the selection of antibodies from bacteriophage antibody libraries that recognize a specific antigen. The phage display library of antibody-displaying phage particles is exposed to antigen attached to a solid substrate (Nunc Immuno™ tubes). The phage particles with affinity for antigen bind to the immobilized antigen and are selected from the library of phage expressing antibodies.
This protocol a protocol on how to generate transfected embryonic stem (ES) cell clones. The previous protocol in this series is the Protocol for Electroporation of ES cells. The next protocol in the series is the Protocol on Disaggregation, Expansion, and Freezing of Transfected ES Clones.