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1.
Thornbury DW  Farman ML 《BioTechniques》2000,29(6):1250-1254
We describe a procedure for recycling nylon hybridization membranes, enabling their repeated use for radioactive Southern hybridization analysis of different DNA samples. Following hybridization and probe removal, nylon membranes containing covalently linked DNAs were treated with 0.55% sodium hypochlorite. This destroyed the DNA, thereby preventing it from participating in further hybridization and enabling the membranes to be used subsequently for binding new DNA samples. With this procedure, we were able to reuse a single membrane as many as 13 times, with no detectable loss in signal. This method was shown to be effective for membranes supplied by three different manufacturers.  相似文献   

2.
A simplified and efficient procedure has been developed for performing hybridization reactions and analyses of the percentage of hybridization on glass plates. This method is as accurate as conventional methods, while considerably reducing the time and costs to perform the hybridization in titration hybridization experiments.  相似文献   

3.
DNA probe immobilization on plastic surfaces and device assembly are both critical to the fabrication of microfluidic hybridization array channel (MHAC) devices. Three oligonucleotide (oligo) probe immobilization procedures were investigated for attaching oligo probes on four different types of plastic surfaces (polystyrene, polycarbonate, poly(methylmethacrylate), and polypropylene). These procedures are the Surmodics procedure, the cetyltrimethylammonium bromide (CTAB) procedure, and the Reacti-Bind procedure. To determine the optimal plastic substrate and attachment chemistry for array fabrication, we investigated plastic hydrophobicity, intrinsic fluorescence, and oligo attachment efficiency. The Reacti-Bind procedure is least effective for attaching oligo probes in the microarray format. The CTAB procedure performs well enough to use in array fabrication, and the concentration of CTAB has a significant effect on oligo immobilization efficiency. We also found that use of amine-modified oligo probes resulted in better immobilization efficiency than use of unmodified oligos with the CTAB procedure. The oligo probe immobilization on plastic surfaces by the Surmodics procedure is the most effective with regard to probe spot quality and hybridization sensitivity. A DNA hybridization assay on such a device results in a limit of detection of 12pM. Utilizing a CO(2) IR laser machining and adhesive layer approach, we have developed an improved procedure for realizing a DNA microarray inside a microfluidic channel. This device fabrication procedure allows for more feasible spot placement in the channel and reduced sample adsorption by adhesive tapes used in the fabrication procedure. We also demonstrated improved hybridization kinetics and increased detection sensitivity in MHAC devices by implementing sample oscillation inside the channel. A limit of detection of 5pM has been achieved in MHAC devices with sample oscillation.  相似文献   

4.
The RNase protection assay (RPA) is a sensitive and quantitative assay for the detection of specific RNAs. Because some probes require an optimal temperature for efficient hybridization to the target RNAs, preliminary experiments to determine the optimal temperatures have to be done empirically, a process that is laborious and time-consuming. In order to simplify this process, a new gradient temperature hybridization procedure has been developed with the use of a thermocycler. This procedure eliminates the need for preliminary experiments to determine the optimal temperature of hybridization for a given probe.  相似文献   

5.
A simplified colony hybridization procedure was developed using sealed disposable plastic petri dishes in place of sealed plastic bags. Prior to hybridization, the dishes were sealed with successive layers of parafilm, plastic wrap and aluminum foil to prevent evaporation of the solution. This self-contained procedure eliminates some of the technical problems such as spilling of radioactive materials, leakage of solution, sealing of plastic bags and the formation of air bubbles. Therefore, this method allows for safer and easier handling of radioactive materials during hybridization procedures.  相似文献   

6.
The relative insensitivity of nonradioactive mRNA detection in tissue sections compared to the sensitive nonradioactive detection of single-copy DNA sequences in chromosome spreads, or of mRNA sequences in whole-mount samples, has remained a puzzling issue. Because of the biological significance of sensitive in situ mRNA detection in conjunction with high spatial resolution, we developed a nonradioactive in situ hybridization (ISH) protocol for detection of mRNA sequences in sections. The procedure is essentially based on the whole-mount ISH procedure and is at least equally sensitive. Increase of the hybridization temperature to 70C while maintaining stringency of hybridization by adaptation of the salt concentration significantly improved the sensitivity and made the procedure more sensitive than the conventional radioactive procedure. Thicker sections, which were no improvement using conventional radioactive ISH protocols, further enhanced signal. Higher hybridization temperatures apparently permit better tissue penetration of the probe. Application of this highly reliable protocol permitted the identification and localization of the cells in the developing heart that express low-abundance mRNAs of different members of the Iroquois homeobox gene family that are supposedly involved in cardiac patterning. The radioactive ISH procedure scarcely permitted detection of these sequences, underscoring the value of this novel method.  相似文献   

7.
A solution hybridization procedure for the rapid identification of M13 clones carrying a particular sequence is described. The method, which employs a radiolabeled oligonucleotide probe, can discriminate between sequences which differ by only a single base, and can therefore be used for the identification of mutant sequences created by oligonucleotide-directed mutagenesis. Samples of phage-containing supernatant from cultures of M13-infected Escherichia coli are incubated with radiolabeled probe in the presence of sodium dodecyl sulfate. The mixtures are then subjected to agarose gel electrophoresis to separate hybrid molecules from unbound probe and hybridization is detected by autoradiography. This solution hybridization procedure is quicker and more convenient than membrane hybridization and has the added advantage that more than one probe can be used on a given gel.  相似文献   

8.
A procedure was developed to effectively extract viral RNA from poliovirus tissue-culture lysates while eliminating the hybridization background associated with tissue cultures uninfected with poliovirus. Poliovirus cDNA cloned into a pUC vector was used as probe. Both the recombinant plasmids and the cDNA showed great specificity towards poliovirus. However, both probes hybridized with the single-stranded DNA coliphage phi X174. Tissue culture was found to be an effective method to increase the number of viruses found in environmental samples to a level detectable by hybridization procedures, whereas direct hybridization of RNA from unamplified and highly concentrated raw wastewater showed poor hybridization signals. The specificity and sensitivity of the hybridization procedure developed during these studies indicate that this method may be best suited for the identification rather than the detection of viruses isolated from environmental samples.  相似文献   

9.
Fluorescence in situ hybridization has been used for the identification and analysis of populations of the dinoflagellate Symbiodinium that lives symbiotically in marine invertebrates. Conditions for in situ hybridization of Symbiodinium were optimized and used to identify the clade to which the isolate belongs using specific probes. The optimized in situ hybridization procedure used a combination of chlorophyll removal and permeabilization with hot ethanol. Incubation of the cells in 50% ethanol at 80 degrees C for 20 min rendered the cell wall permeable to Cy3-labeled probes. Symbiodinium clade-specific probes were designed based on 18S rRNA sequences. Symbiodinium A, B and C were distinguished by in situ hybridization with the specific probes SymA, SymB and SymC, respectively. The hybridization results using clade-specific probes corresponded with results obtained using restriction fragment length polymorphism (RFLP) analysis. Symbiodinium isolated from jellyfish Cassiopea sp. and sea anemone Aiptasia sp. were classified as belonging to clades A and B using the FISH procedure established in this study.  相似文献   

10.
A filter hybridization method employing bacterial samples and [125I]labeled chromosomal DNA as a probe was used for DNA-DNA hybridization. It was found that the hybrids had a thermal melting temperature very similar to that of duplexes formed by purified filterbound DNA. The difference in thermal denaturation midpoint between homologous and heterologous duplexes was determined for a number of strains ofAcinetobacter spp. andEnterobacter agglomerans. A comparison with the corresponding data obtained by the hydroxyapatite method showed good correlation between the two methods. The use of bacterial samples in filter hybridization omits the time-consuming DNA preparation procedure necessary for traditional DNA-DNA hybridization procedures. A simplified, two-step elution procedure is suggested for processing large numbers of strains.  相似文献   

11.
12.
A biotin-labelled DNA probe was used in a dot-blot hybridization test to demonstrate the presence of Escherichia coli in a variety of artificially contaminated foodstuffs. Positive hybridization was detected by using a streptavidine/polyalkaline phosphatase conjugate to generate an insoluble coloured precipitate in the presence of an appropriate dye. The colour intensity was measured with a computer-controlled image analysis system which assessed objectively the hybridization signal produced by each sample. The method was capable of distinguishing positive hybridization at cell concentrations exceeding 10(4) cells/dot-blot, equivalent to 2 x 10(7) cells/g food, and had none of the drawbacks normally associated with the use of radioactively labelled DNA in hybridization techniques. The procedure is highly specific and takes less than 30 h. Many samples can be screened simultaneously and the procedure can be used to detect any species for which a suitable DNA probe is available.  相似文献   

13.
A cDNA library has been constructed from an RNA preparation highly enriched in silkmoth chorion mRNAs. Many distinct clones have been identified from this library using a stepwise procedure: scoring for infrequent hexanucleotide restriction enzyme recognition sequences; detailed characterization with restriction enzymes that recognize relatively frequent tetranucleotide sequences; probing the arrangement of the corresponding sequences in chromosomal DNA by the Southern procedure; and detailed cross-hybridization analysis. Unique clones, as well as two classes of distinct but related clones, were revealed by hybridization. The cross-hybridization analysis was greatly facilitated by a newly developed, semiquantitative dot hybridization procedure. The same procedure made it feasible to conveniently estimate the relative abundance of several different sequences in an mRNA mixture. Cloned sequences which scored as relatively abundant in total chorion mRNA were tested with stage-specific chorion mRNA at a very stringent criterion of hybridization. They were thus characterized as early, middle or late sequences with respect to development. The characterized cDNA clones can now be used as probes for studying the evolution, chromosomal organization and regulated developmental expression of the chorion multigene families.  相似文献   

14.
We describe a procedure for preparing tissue sections by embedding in polyethylene glycol for subsequent in situ hybridization analysis using single-stranded RNA probes. Improved tissue morphology is obtained as compared to frozen sections, and the embedding procedure is milder and faster than paraffin embedding. Sections as thin as 2 microns are readily cut from PEG-embedded brain tissue. A simplified hybridization protocol (Clayton et al.: Neuron 1:249, 1988) supports the detection of even low-abundance brain mRNAs (less than or equal to 10(-4) fractional mRNA mass). By employing high stringency washes in place of ribonuclease treatment after hybridization, cell RNA is retained for cresyl violet staining, and high signal:noise ratios are achieved. Solutions to problems with section mounting and adherence to glass slides are presented. The combination of improved morphology, high signal levels, and relative simplicity should make this procedure useful in a variety of applications.  相似文献   

15.
A biotin-labelled DNA probe was used in a dot-blot hybridization test to demonstrate the presence of Escherichia coli in a variety of artificially contaminated foodstuffs. Positive hybridization was detected by using a streptavidine/polyalkaline phosphatase conjugate to generate an insoluble coloured precipitate in the presence of an appropriate dye. The colour intensity was measured with a computer-controlled image analysis system which assessed objectively the hybridization signal produced by each sample. The method was capable of distinguishing positive hybridization at cell concentrations exceeding 104 cells/dot-blot, equivalent to 2×107 cells/g food, and had none of the drawbacks normally associated with the use of radioactively labelled DNA in hybridization techniques. The procedure is highly specific and takes less than 30 h. Many samples can be screened simultaneously and the procedure can be used to detect any species for which a suitable DNA probe is available  相似文献   

16.
Q Nguyen  F Witney  A Tumolo 《BioTechniques》1992,13(1):116-123
We have developed a technique for the chemiluminescent detection of single copy genes that eliminates the high backgrounds and problems with probe labeling associated with existing methods. The procedure employs a primary hybridization of single-stranded probe DNA to immobilized target DNA, a secondary hybridization with a covalently cross-linked oligonucleotide-alkaline phosphatase conjugate, followed by incubation in the chemiluminescent substrate AMPPD and detection on x-ray film. The key to the success of this method is that the primary probe contains a region complementary to the target DNA as well as to the oligonucleotide sequence of the secondary probe-alkaline phosphatase conjugate. Here we report our results using the two-step hybridization procedure to detect single copy genes from genomic Southern blots.  相似文献   

17.
There are many situations in which grain distributions resulting from in situ hybridization of radioactively labeled probes to unique genes should be subjected to a statistical analysis. However, the problems posed by analysis of in situ hybridization data are not straightforward, and no completely satisfying method is currently available. We have developed a procedure in which the major and any number of minor site(s) of hybridization may be specifically located and the significance of each tested. This zmax procedure first tests the overall distribution for departure from randomness and then identifies significantly overlabeled whole chromosomes (or chromosome arms or other large segments), a process that may be repeated to pinpoint significantly overlabeled regions within these chromosomes. We describe in detail the derivation of the zmax statistic, present tables of significant zmax levels, and show with examples how zmax is used in tests of significance of in situ hybridization data.  相似文献   

18.
原位分子杂交技术应用于电镜水平,观察标记的特定DNA、mRNA和RHA在细胞和/或组织内的超微结构定位的方法,称为电镜原位分子杂交技术。本文综述了电镜原位分子杂交技术的建立及其分类,并详细介绍了非放射性电镜原位分子杂交技术的基本操作程序及注意事项,最后对电镜原位分子杂交技术的应用做了简要介绍。  相似文献   

19.
Summary A highly sensitive non-radioactive DNAin situ hybridization procedure is described that enables detection and unequivocal identification of various developmental stages of human and rodent malaria parasites. Using biotinylated species-specific DNA probes, erythrocytic parasites can be specifically stained in blood smears. Similarly exoerythrocytic stages can be visualized in cell culture and in sections of paraffin-embedded liver. In blood smears, the hybridization procedure provides a rapid detection of (low) parasitemia and species-determination for experienced microscopists at 100 to 400x magnification. Moreover, the procedure can be applied even after previous Giemsa staining of the preparation, enabling revision of patient smears which were difficult to read after routine Giemsa staining.  相似文献   

20.
A rapid, microanalytical procedure for the reproducible isolation of RNA from small cultured cell samples and application to dot-blot hybridization is described. The procedure employs guanidine hydrochloride solubilization of whole cells, disruption by syringing, and selective precipitation of RNA with ethanol. The method can be performed in a single tissue culture tube and obviates the need for removal of nuclei or for organic solvent extractions. Recovery of RNA from small cell samples (10(6) cells) is 51%, while 97% of the DNA and 99% of the protein are eliminated by the procedure. Detection of specific RNA by dot-blot hybridization using a labeled probe demonstrates high reproducibility of recovered RNA and lack of "masking" with up to a 10-fold excess of starting cell material. Applicability of the procedure to detection of virus-specific RNA in cells persistently infected with mouse hepatitis virus is described.  相似文献   

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