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Development and survival of Anopheles pharoensis and An. multicolor from Faiyum, Egypt.

Adults of Anopheles pharoensis and An. multicolor were held under cycling environmental conditions in the laboratory to examine the duration of the gonotrophic cycles, survival and life expectancy, and to examine the life table characteristics of F1 larvae. The first gonotrophic cycle took 6.14 and 7.37 days for An. pharoensis and An. multicolor, respectively. Subsequent gonotrophic cycles for the 2 species were shorter. Daily survival rates of An. pharoensis and An. multicolor in the laboratory were 0.95 and 0.93, respectively. The parity rate of field-collected females and estimates of the duration of the gonotrophic cycle yielded daily survivorship estimates of 0.89 and 0.80 for An. pharoensis and An. multicolor, respectively. Mean life expectancy at emergence was 19.0 days for An. pharoensis compared with 17.9 days for An. multicolor. Survivorship from egg eclosion to adult emergence and development time were similar for both species. Both the duration of gonotrophic cycles and mean life expectancies indicated that An. pharoensis had a greater potential to serve as a malaria vector than An. multicolor.

Animals

Multicolor in situ hybridization and linkage analysis order Charcot-Marie-Tooth type I (CMTIA) gene-region markers.

This study demonstrates a clear and current role for multicolor in situ hybridization in expediting positional cloning studies of unknown disease genes. Nine polymorphic DNA cosmids have been mapped to eight ordered locations spanning the Charcot-Marie-Tooth type 1 (CMT1A) disease gene region in distal band 17p11.2, by multicolor in situ hybridization. When used with linkage analysis, these methods have generated a fine physical map and have firmly assigned the CMT1A gene to distal band 17p11.2. Linkage analysis with four CMT1A pedigrees mapped the CMT1A gene with respect to two flanking markers (8B10-5 cM[LOD 5.2]-CMT1A-3.5 cM[LOD 5.3]-10E4). Additional loci were physically mapped and ordered by in situ hybridization and analysis of phase-known recombinants in CMT1A pedigrees. The order determined by multicolor in situ hybridization was 17cen-LEW301-8B10-5H5/6A9-VAW409- 5G7-6G1-4A11-VAW412-10E4-pter. Two ordered probes, 4A11 and 6G1, reside on the same 440-kb partial SfiI restriction fragment. These data demonstrate the ability of in situ hybridization to resolve loci within 0.5 Mb on early-metaphase chromosomes. Multicolor in situ hybridization also excluded the possibility of pericentric inversions in two unrelated patients with CMT1 and neurofibromatosis type 1. When used with pulsed-field gel electrophoresis, multicolor in situ hybridization can establish physical location, order, and distance in closely spaced chromosome loci.

Charcot-Marie-Tooth Disease

Multicolor Cell Lineage Tracing Using MAGIC Markers Strategies.

Multicolor MAGIC Markers strategies are useful lineage tracing tools to study brain development at a multicellular scale. In this chapter, we describe an in utero electroporation method to simultaneously label multiple neighboring progenitors and their respective progeny using these multicolor reporters. In utero electroporation enables the introduction of any gene of interest into embryonic neural progenitors lining the brain ventricles through a simple pipeline consisting of a micro-injection followed by the application of electrical pulses. Successful in utero electroporation requires a concise yet complete understanding of each step of the surgical protocol, spanning from the preoperative preparation to the postoperative care, as well as the MAGIC Markers tool outlined in this study. Besides a detailed protocol, we present non-integrative and integrative approaches to demonstrate the range of cell and lineage tracking possibilities of multicolored progenitors and their descent over time.

Cell Lineage

Multicolor fluorescence in situ hybridization and pulsed field electrophoresis dissect CMT1B gene region.

We have used multicolor fluorescence in situ hybridization of banded chromosomes to orient Fc gamma RII and clone 1054 on a single early metaphase chromosome band (1q22) representing about 2% of the physical map of chromosome 1 in the Charcot-Marie-Tooth (CMT1B) gene region. These two cloned fragments are on the same partially digested 900-kb MluI fragment detected by pulsed field gel electrophoresis. When applied to data from an earlier study, multicolor in situ hybridization results further refined the CMT1B genetic location from an 18 cM interval to a 6 cM interval and the physical map from 15% of chromosome 1 to 3% of chromosome 1. Occasionally the three Fc gamma RII immunoglobulin receptor genes within the 200-kb region are resolved in individual metaphase chromatids.

Charcot-Marie-Tooth Disease

A novel and inexpensive source of allophycocyanin for multicolor flow cytometry.

Allophycocyanin (APC) belongs to a family of phycobiliproteins that are well suited as fluorescent reagents for flow cytometric analysis, since they have a broad excitation spectrum, a large Stoke's shift and they fluoresce with a high quantum yield. The widespread use of APC has been limited by the availability of raw material and high cost of the purified phycobiliprotein. We have assessed the suitability of dry, powdered Spirulina platensis, available at health food stores, as an inexpensive source of APC. APC was extracted from Spirulina platensis by overnight treatment with lysozyme, followed by ammonium sulfate precipitation. APC was then separated from phycocyanin (the only other major phycobiliprotein in Spirulina) by elution of bound material from an hydroxylapatite column using an increasing continuous phosphate gradient. APC isolated in this manner retained its normal trimeric structure. The absorbance and fluorescence excitation and emission spectra of the purified phycobiliproteins were identical to those previously shown for C-PC and APC. APC can be stored concentrated at 4 degrees C, frozen at -70 degrees C, or as a saturated ammonium sulfate precipitate, with no subunit dissociation or change in spectral properties. Moreover, APC has been conjugated to monoclonal and polyclonal antibodies for use in multicolor FACS analysis, with the conjugated antibody activity remaining stable for at least 2 years. Thus, this procedure is a simple, cost-effective method for preparing reagents for multicolor immunofluorescence and flow cytometry.

Cyanobacteria

A modular detector for flow cytometric multicolor fluorescence measurements.

A modular detector for measuring multicolor fluorescence from cells illuminated by single or multiple lasers has been developed for flow cytometers. Motion picture projector, camera, and CCTV/video lenses were evaluated for use in the detector by comparing their physical characteristics, image quality, and light collection efficiencies. A 25-mm focal length F/0.95 CCTV lens was selected, based on our criteria and test results. The detector was constructed out of square aluminum extrusion channels. A CCTV lens mounted on the outside of the first channel collected light emitted from cells and collimated it towards filters and secondary CCTV lenses located in each channel. The secondary lenses functioned as relay optics for directing and focusing light onto pinhole spatial filters for measurement by photomultipliers. The detector design allowed any number of channels to be connected together and the versatility for making simultaneous or sequential measurements. Measurements on lymphocytes labeled with four monoclonal antibodies conjugated to fluorescent dyes and measurements on viable tumor cells stained for DNA content and with three fluorescent-labeled antibodies were used to demonstrate the detector's capabilities.

Animals

A simplified high speed multicolor immunoblotting method.

We describe a simplified technique for the rapid and specific detection of antigenic determinants within a mixed population of antigens. Each determinant develops its own characteristic color in a single Western blot or dot blot. This multicolor immunostaining technique can be achieved with as little as a one-step incubation, involving a mixture of different primary and developing antibodies, and a one-step substrate reaction, involving a mixture of different substrates. The time required can be reduced to short periods of time, ranging from minutes to about 1 h. This can represent an increase in the speed of detection by one to two orders of magnitude when compared with conventional methods. The simplified protocols may facilitate the automation of routine analyses.

Antibodies

A rapid multicolor Western blot.

A multicolor Western blotting technique was developed, by which different kinds or different subtypes of interferon were identified with different colors on a single Western blot. This was achieved by sequentially applying different sets of probing antibodies, enzyme-conjugated developing antibodies and enzyme substrates to detect each of the two or more types of interferon on the Western blot. An improved and much faster method of obtaining the same result by the simultaneous application of more than one kind of probing antibodies, the simultaneous application of a mixture of different enzyme-conjugated developing antibodies followed by successive application of different substrates was also described. In addition, a combination of the sequential and simultaneous techniques was used to produce a triple color Western blot.

Collodion

Satiation restores brood care motivation in the female mouthbrooder Pseudocrenilabrus multicolor (Cichlidae).

The maternal mouthbrooder Pseudocrenilabrus multicolor takes up her eggs during spawning and carries them continuously in her mouth for 10-11 days at 27 degrees C. Then the young-by that time able to swim-are released from the mouth. The duration of mouthbrooding is controlled by an internal timing program in the mother [12]. In non-first-spawners brood care motivation (= readiness to take up brood into the mouth and keep it there) disappears within a few hours after brood removal. At the same time hunger-which is reduced to half of the normal level when brood care motivation is present-increases to the normal level [15]. In females without brood care motivation, satiation by food intake or by a water solution of 15 mg/l diethylpropion (an anorectic amphetamine-derivative), restores brood care motivation during a sensitive period of approximately 11 days after spawning. The point of release of adopted brood from the mouth depends on the duration of previous brood deprivation, but not on the state of brood care motivation nor on the hunger state during brood deprivation. The results suggest that above a certain level hunger inhibits brood care motivation. By contrast, the hunger state seems not to influence internal timing of mouthbrooding.

Animals

Regional assignment of the human keratin 5 (KRT5) gene to chromosome 12q near D12S14 by PCR analysis of somatic cell hybrids and multicolor in situ hybridization.

Keratin 5 is the major type II keratin of the basal cells of epidermis and of other stratified epithelia. With its type I partner, keratin 14, it constitutes a major fraction of the cytoskeleton of the basal cells. Because the inheritance of epidermolysis bullosa simplex, a disease of epidermal basal cell fragility, was mapped in one family to chromosome 12q close to D12S14, we undertook to localize the gene for keratin 5. Polymerase chain reaction analysis of somatic cell hybrids mapped the keratin 5 gene to chromosome 12, and multicolor fluorescence in situ hybridization localized it to 12q very near D12S14. This sublocalization exemplifies the utility of in situ physical localization in assessing the candidacy of genes thought to underlie inherited disorders.

Animals

Multicolor fluorescence in situ hybridization for the simultaneous detection of probe sets for chromosomes 13, 18, 21, X and Y in uncultured amniotic fluid cells.

The most frequent aneuploidies in newborns involve the autosomes 13, 18 and 21 as well as both sex chromosomes. Fluorescence in situ hybridization readily allows the detection of numerical chromosomal aberrations throughout all stages of the cell cycle. Using a multicolor fluorescence in situ hybridization approach based on combinatorial probe labeling and digital imaging microscopy we demonstrate the simultaneous visualization of probe sets specific for chromosomes 13, 18, 21, X and Y. This approach enables one to evaluate aberrations of multiple chromosomes in a single hybridization experiment using metaphase chromosomes and interphase nuclei from a variety of cell types, including lymphocytes and amniocytes.

Amniotic Fluid

Activation of T cell subsets in the peripheral blood of patients with Sjögren's syndrome. Multicolor flow cytometric analysis.

Using 3-color flow cytometry, we determined the proportions of activated T cells (DR+), including CD4+ cells, CD8+ cells, and their subsets, in the peripheral blood of 17 patients with Sjögren's syndrome (SS). Activated T cells were significantly increased in CD4+ cells, CD8+ cells, and T suppressor inducer (CD4+, Leu-8+), T helper (CD4+, Leu-8-), and T cytotoxic (CD8+, CD11-) subsets, but not the T suppressor/natural killer subset (CD8+, CD11+), in patients with SS as compared with the controls. Furthermore, the proportions of activated T cells in the CD4+, Leu-8- subset, the CD8+ subset, or the CD8+, CD11- subset showed a positive correlation with serum gamma globulin levels in the SS patients. Our findings suggest that a certain immunoregulatory balance between T helper and T suppressor activities is maintained in SS patients, although this balance seems to occur at highly activated levels, and that quantitative changes of some lymphocyte subsets are important factors in maintaining this balance. We discuss the possibility that CD4+, Leu-8+ cells recirculate into peripheral lymph nodes, while CD4+, Leu-8- cells migrate into inflammatory tissues such as salivary glands, since the Leu-8 antigen is reported to be a homing receptor in peripheral lymph nodes. This process might be accelerated in SS, and each T cell subset may further participate in immunologic activation in the lymph nodes or target tissues.

Adult

Preparation and microscopic visualization of multicolor luminescent immunophosphors.

The preparation of charge-stabilized suspensions of small phosphor particles (0.1-0.3 micron) and their coupling with antibodies to immunoreactive conjugates is described. Phosphor particles consisting of yttriumoxisulfide activated with europium served as a model system in the evaluation of the stabilizing properties of several polycarboxylic acids. The optimal reagents were then applied to other phosphors which differ in spectral characteristics as well as in luminescence lifetime. These phosphors were ground to a size of 0.1-0.3 micron and proteins or other macromolecules were adsorbed to the phosphor particles to prepare conjugates of different physico-chemical properties. A time-resolved microscope, suitable for real time visualization of the time-delayed luminescence of the immunophosphors by the human eye, is described in detail. Since most phosphors require excitation with far UV light, a special fluorescence microscope allowing far UV excitation was developed for conventional visualization of the luminescence emitted by the phosphor. The possibility of multiple color labeling using various phosphor conjugates was demonstrated in a model system consisting of haptenized latex beads.

Adsorption

Antibody-bearing liposomes as multicolor immunofluorescence markers for flow cytometry and imaging.

Liposomes covalently coupled to monoclonal antibodies retain the specificity of the antibody and bind only to cells bearing the appropriate determinant. As opposed to directly labeled antibodies which generally have fluorochrome to protein ratio of between 2-5, the entrapped space inside liposome can contain several hundred to several thousand molecules of fluorochromes in a space chemically isolated from the outside environment, thus providing the potential for an amplified fluorescence signal. We have prepared small unilamellar liposomes containing the soluble fluorochromes carboxyfluorescein (CF), which fluoresces in the green and sulforhodamine (SR), which fluoresces in the red, and covalently coupled a series of monoclonal antibodies using a heterobifunctional reagent. We were able to detect, on an Epics 753 flow cytometer equipped with an argon ion and a dye laser and by fluorescence microscopy, both single and double labeled mouse spleen lymphocyte subsets, fibroblast L cells and Raji cells. Complete color separation was obtained with CF-labeled cells being detected only by the green photomultiplier and SR-labeled cells by the red photomultiplier. Cells labeled with both were detected by both photomultipliers. Liposomes bearing anti-Ia antibodies bound only to B lymphocytes whereas those with anti-H-2K antibody bound both to T and B lymphocytes. In another system, single and dual color immunofluorescence made possible the simultaneous detection of HLA and H-2K molecules on transfected murine fibroblast L cells. The signal-to-noise ratio was more favorable for the liposome-labeled reagents than reagents labeled with fluorescein isothiocyanate. Cells labeled with antibody-bearing liposomes could be fixed with paraformaldehyde or glutaraldehyde without adversely affecting the original staining patterns. Apart from the two fluorochromes described above, other markers of choice could be encapsulated without any adverse effect on the antibody-liposome coupling procedure or on the specificity of the conjugated antibody. Since the fluorochrome is not directly coupled to the protein, there is no requirement for protein conjugation sites in order for it be usefully encapsulated inside liposomes. Therefore, this system provides new opportunities to exploit different, as yet untapped fluorochromes for use in flow cytometry and imaging.

Animals