OptiPrep Application sheet C14 describes procedures for determining the density and sedimenting properties of any cell (of any size or density) using either a continuous or discontinuous gradient of iodixanol. This Application Sheet describes procedures aimed at isolating specifically a relatively low-density cell fraction from any tissue. - [Read C25 Isolation from spleen, thymus, pancreas, alveolar tissue and other tissues]
The combination of prospective identification/isolation of bone marrow progenitors and quantitative RT-PCR is a powerful tool to understand the molecular mechanism underlying hematopoiesis. Here, we described our standard procedures of the murine myeloid progenitor staining for fluorescence activated cells sorting (FACS) and RNA purification methods. - [Read Cell Staining for Sorting of Hematopoietic Stem Cells and Myeloid Progenitors and Isolating RNA]
Rapid alkaline lysis miniprep method for isolating DNA from large PAC clones. It is a modification of a standard Qiagen-Tip method that uses no organic extractions or columns. The method works very well for doing analytical restriction digests of PAC clones and can be scaled up if necessary. - [Read DNA Isolation From BAC & PAC Clones Protocol]
This is a rapid alkaline lysis miniprep method for isolating DNA from large PAC clones. It is a modification of a standard Qiagen-Tip method that uses no organic extractions or columns. The method works very well for doing analytical restriction digests of PAC clones and can be scaled up if necessary. - [Read DNA Isolation From BAC & PAC Clones Protocol]
The original maize DNA miniprep protocol is used extensively for many plant species and different tissues. This slightly modified version is acceptable for most DNA extractions. The procedure has the advantage of isolating DNA from plant material very rapidly. The procedure requires a table-top drill-press (mechanized homogenizer). - [Read DNA Microprep Isolation from Plants Protocol]
Protocol describes isolation of germ cells from the genital ridge of fetal mice from 11.5 days post coitum (dpc) onward. The germ cells can then be used for analysis, culture, or transplantation. - [Read Isolating Germ Cells from the Genital Ridge]
This protocol describes isolation of germ cells from the genital ridge of fetal mice from 11.5 days post coitum (dpc) onward. The germ cells can then be used for analysis, culture, or transplantation. - [Read Isolating Germ Cells from the Genital Ridge Protocol]
Isolation of extraembryonic tissues allows one to study normal mouse development as well as the molecular basis of defects which cause fetal death. This protocol describes a method for isolating extraembryonic membranes from pregnant mice. - [Read Isolating Mice Extraembryonic Membranes Protocol]
Isolation of postimplantation-stage embryos allows one to study normal development as well as genetic mutations which cause postimplantation defects. This protocol describes a method for isolation of early neural-fold-stage embryos. - [Read Isolating Postimplantation Embryos: Early Neural-Fold-Stage Protocol]
Isolation of postimplantation-stage embryos allows one to study normal development as well as genetic mutations which cause post-implantation defects. This protocol describes a method for isolating early primitive-streak-stage embryos. - [Read Isolating Postimplantation Embryos: Early Primitive-Streak-Stage Protocol]
Isolation of postimplantation-stage embryos allows one to study normal development as well as genetic mutations which cause postimplantation defects. This protocol describes a method for isolating early somite-stage embryos (~8.5 days post coitum [dpc]). - [Read Isolating Postimplantation Embryos: Early Somite-Stage Protocol]
Isolation of postimplantation-stage embryos allows one to study normal development as well as genetic mutations which cause postimplantation defects. This protocol describes a method for isolating late primitive-streak-stage embryos (~7.5 days post coitum [dpc]). - [Read Isolating Postimplantation Embryos: Late Primitive-Streak-Stage Protocol]
Isolation of postimplantation-stage embryos allows one to study normal development as well as genetic mutations that cause post-implantation defects. This protocol describes a method for isolating prestreak-stage embryos (~5.5 days post coitum [dpc]). - [Read Isolating Postimplantation Embryos: Prestreak-Stage Protocol]
The physiological reactions of mitochondria and chloroplasts can be reduced to a series of electron transfers, catalyzed by specific enzymes found within the organelles. Thus, we can study the component processes of photosynthesis and respiration by isolating the organelles and measuring specific enzyme activity associated with that organelle. - [Read Photosynthesis and Respiration - Introduction]
Proliferative Assays for B Cell Function Protocol- https://catalog.invitrogen.com/index.cfm?fuseaction=iProtocol.unitSectionTree&treeNodeID=9E663429ABD843E3419A0C3061FDD3E4&objectid=6674AEBEC084AF4DB9D3826E3ED9B9A5
Describes procedures for measuring the capacity of purified B cells to undergo proliferation. The method centers on the use of polyclonal stimulating agents (mitogens) because these agents stimulate the majority of B cells and because the alternative (measurement of antigen-induced proliferation) requires the laborious procedures of isolating antigen-specific B cells (which are otherwise present in too low a concentration in whole B cell populations). - [Read Proliferative Assays for B Cell Function Protocol]
This protocol describes the electroporation of the BMH 81-17 mut S strain that is recommended for tranformation of the site directed mutagenesis of dsDNA (See Protocol on Site-Directed Mutagenesis on Double Stranded DNA). BMH 81-17 mut S are a mismatch repair defective (mut S) Escherichia coli strain. The probability that the two mutations will cosegregate during the first round of DNA replication is increased in this strain.