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Biomedical subjects

V J Goyanes

Publications and source records attributed to V J Goyanes.

At least 19 recordsLinked to original sources

DNA breakage detection-FISH (DBD-FISH) in human spermatozoa: technical variants evidence different structural features.

Non-irradiated and X-irradiated (80 Gy) human spermatozoa were processed for in situ DNA breakage detection-FISH (DBD-FISH) of the whole genome, following two alternative variations of the basic technique. In the first, cells were initially incubated in the alkaline unwinding solution for transformation of DNA breaks into single-stranded DNA (ssDNA) to be hybridized, followed by the lysing solutions for protein removal. In the second, incubation in the lysing solutions was carried out before the denaturation step. The first approach yielded two subpopulations. While most sperm nuclei were faintly labeled and had chromocenters, a small subpopulation was strongly and homogeneously labeled, due to extensive DNA breakage. X-ray exposure increased the surface and mean fluorescence intensity. Otherwise, when the denaturation step was performed after protein extraction, all sperm nuclei yielded strong and dispersed FISH signals. Protein removal allows access of the unwinding solution to the DNA, which has abundant alkali-labile sites, and thus gives rise to large areas of ssDNA that are labeled by FISH. X-ray exposure increased the dispersion of FISH signals but decreased their mean fluorescence intensity. A linear dose-response was generated using the second experimental variant, being 30 Gy the lowest dose for detecting induction of damage by X-rays in mature sperm chromatin. These results indicate that DBD-FISH is not only useful for in situ detection of DNA breakage but also for revealing structural features of chromatin.

DNA↗

Evidence of a differential organization of chromatin containing terminal or interstitial (TTAGGG)n repeats by in situ digestion with nucleases.

(TTAGGG)n sequence repeats in human telomeres and in Chinese hamster interstitial centromeric areas were digested in situ with exonuclease III (ExoIII) and exonuclease Bal 31. Incubation with AluI was performed beforehand to increase DNA breaks near telomere sequence areas. DNA removal at these specific regions was quantified by digital image analysis of the fluorescence in situ hybridization signal produced by a telomeric probe. Exonuclease III was 2.6 times more active in interstitial than in terminal telomeric sequence areas. Exonuclease Bal 31 was 2.3 times more effective in terminal than in interstitial telomeric sequence regions. These results support the hypothesis that chromatin is differentially organized in both telomeric sequence areas, despite their similar DNA composition.

Animals↗

Application of FISH for in situ detection and quantification of DNA breakage.

We describe a simple procedure that allows the use of fluorescence in situ hybridization (FISH) for in situ detection of DNA strand breaks in single cells (DBD-FISH: DNA Breakage Detection-FISH). After trapping within an agarose microgel, cells are incubated in an unwinding alkaline solution, deproteinized and dehydrated. Areas of single-stranded DNA are generated by the alkaline solution in proportion to the degree of DNA strand breakage. These then act as targets for FISH of whole genomic or region-specific probes (telomeric, human chromosome 8 painting, human alphoid DXZ1 locus, and human c-erbB-2 cosmid probes). Measurement of the amount and surface of FISH signals provides information on the breakage level in probed areas, permitting the assessment of possible intragenomic differences in sensitivity as well as intercellular heterogeneity in DNA damage induction or repair.

Animals↗

Image analysis of murine chromatin fiber structure after in situ digestion with restriction endonucleases.

OBJECTIVE: To determine and quantify the differences produced in chromatin structure after selective in situ DNA digestion with restriction endonuclease (RE). STUDY DESIGN: Chromatin fiber structure from a murine cell line was analyzed under light and electron microscopy before and after in situ digestion with AluI, HinfI and HaeIII using digital image analysis (DIA). The proposed DIA-based method entails the generation of a binary image and a skeleton characteristic of the chromatin fiber. Morphologic features (surface, perimeter, shape, number of triple points and Euler number) of the chromatin structure can then be quantified from the digitized images. The results of these experiments were compared with those obtained from direct digestion of naked DNA using the same endonucleases in an attempt to correlate the distribution of restriction sites, according to the DNA fragment size obtained, with the extent of chromatin disorganization after RE in situ digestion. RESULTS: Homologous chromatin fiber regions are differentially affected by the action of each RE, although they are indistinguishable under light microscopy. CONCLUSION: The proposed analytical routine constitutes a valuable tool for uncovering subtle alterations in the structure of chromatin fiber that has been modified under different experimental conditions.

Animals↗

Digital image analysis of chromatin fibre phenotype after "in situ' digestion with restriction endonucleases.

Restriction Endonucleases (REs) may recognize, cleave and remove DNA from fixed chromatin producing specific chromosome banding patterns. However, the modifications produced in the chromatin fibre are not easy to evaluate and compare. The aim of the present investigation was to visualize differences resulting in the texture of the chromatin fibre from metaphase chromosomes after each digestion using digital image analysis (DIA) facilities. To this purpose, metaphase chromosomes derived from a L-929 mouse cell line were digested with different REs (AluI, HpaII and HaeIII). Since light microscopy does not permit the observation of the chromatin fibre, DIA was performed on digitalized images of metaphase chromosomes under electron microscopy. The application of a LUT (Look Up Table) within the DIA software assigns a colour to each grey level of a digital image. The results obtained using a particular LUT, which permits the discrimination of specific chromatin fibre phenotypes resulting from each digestion, are reported and compared with those obtained under the light microscope.

Animals↗

Digital image analysis of chromatin fibre phenotype after "in situ" digestion with restriction endonucleases.

Restriction Endonucleases (REs) may recognize, cleave and remove DNA from fixed chromatin producing specific chromosome banding patterns. However, the modifications produced in the chromatin fibre are not easy to evaluate and compare. The aim of the present investigation was to visualize differences resulting in the texture of the chromatin fibre from metaphase chromosomes after each digestion using digital image analysis (DIA) facilities. To this purpose, metaphase chromosomes derived from a L-929 mouse cell line were digested with different REs (AluI, HpaII and HaeIII). Since light microscopy does not permit the observation of the chromatin fibre, DIA was performed on digitalized images of metaphase chromosomes under electron microscopy. The application of a LUT (Look Up Table) within the DIA software assigns a colour to each grey level of a digital image. The results obtained using a particular LUT, which permits the discrimination of specific chromatin fibre phenotypes resulting from each digestion, are reported and compared with those obtained under the light microscope.

Alum Compounds↗

Detection of DNA strand breaks induced by hydroxyl radicals in nuclear and chromosomal chromatin by electron microscopy.

Chinese hamster Don cells were treated with 10 mM hydrogen peroxide. DNA strand breaks induced by hydroxyl radicals were amplified in 3' termini by an exonuclease III digestion, resulting in single stranded DNA motifs. In situ detection of these motifs was performed on chromatin fibres of isolated whole-mounted nuclei and chromosomes by a random priming procedure, using biotinylated-dUTP which bound a gold-tagged streptavidin. This approach facilitated the location of hydroxyl radical induced DNA breaks, specifically on 20-30 nm diameter chromatin fibres, by transmission electron microscopy.

Animals↗

Influence of chromosome condensation and preparative chromosome methods on chromatid volume.

Human metaphase chromosomes 1 and 2 were examined by electron microscopy. Volumetric determinations were calculated on non-treated isolated chromosomes and spread metaphases treated with ammoniacal silver carbonate (ASC). Chromatid volume increased from early-metaphase to late-metaphase and this increase was statistically significant. A similar relationship was found when chromosomes with differentially condensed sister chromatids were studied. The more condensed chromatid volume was greater than its less condensed sister chromatid. ASC treatment produced structural changes in chromosomes which caused an increase of volume in relation to the isolated chromosomes.

Cells, Cultured↗

Surface area/volume ratio and growth equation of the human early embryo.

A study of the S/V ratio and growth equation of 49 oocytes and 120 human embryos was carried out. The S/V ratio of the internal and external limits of the zona remains unchanged during successive cleavages. The mean blastomere increases 22% its S/V ratio after each division. The mean blastomere growth equation for the 2-cell to 8-cell stages follows the expression y = 1.271 x1.021 (y = longest and x = smallest diameter), but the results obtained for the whole embryo do not coincide with those resulting from the application of the growth equation.

Blastomeres↗

Morphometric categorization of the human oocyte and early conceptus.

Morphometrical procedures were used to quantitatively evaluate human oocytes and embryos in an IVF programme. The metaphase II oocyte was an irregular 3.5 x 10(6) microns 3 sphere of 1.05 coefficient of form. The ooplasmic volume of 1.4 x 10(6) microns 3 was reduced by 10% by fertilization. The zona pellucida behaved as a stable and almost spherical envelope of 1.8 x 10(6) microns 3 volume and 17 microns thickness. Through the first three cleavages, mean blastomere reduces 28.5% volume per division, evolving from an irregular spherical shape with 0.9 coefficient of form to an ellipsoid (0.8) at the 8-cell stage. The coefficient of diversity between sister blastomeres progressively moved from 1.4 to 1.6 during the first two (2n) cleavages. The coefficient of diversity also increased at 3-cell (2.2) and 6-cell (2.6) asynchronous divisions. Morphologically abnormal embryos showed some morphometrical differences. Embryos which successfully implanted and progressed to birth showed a higher coefficient of diversity between sister blastomeres.

Blastomeres↗

Chromosome structure and condensation in relation to DNA integrity.

Single strand DNA breaks were photo-induced in Chinese hamster chromosomes. An electron microscope analysis indicated dispersion or loss of chromatin, and the linear continuity of the metaphase chromosome was mainly represented by longitudinal chromatin fibres. The degree of chromosome damage was related directly to the photo-exposure, and inversely to the condensation level reached by the chromosome prior to exposure. Photo-irradiation of G2 or early prophase chromatin induced chromosome pulverization. However, if the chromatin had reached the maximum metaphase condensation then DNA breakdown only partially disorganized the chromosome general morphology, suggesting that DNA integrity is a factor in chromosome condensation and structural stability at mitosis.

Animals↗

New fluorescence reactions in DNA cytochemistry. 2. Microscopic and spectroscopic studies on fluorescent aluminum complexes.

Metal-dye complexes are widely applied in light microscopic techniques for chromatin staining (e.g., hematoxylin and carmine), but fluorescent complexes between phosphate-binding cations and suitable ligands have been little used. Preformed and postformed Al complexes with different anionic dyes induced strong and selective fluorescence reactions in nuclei from chicken blood smears, frozen sections, paraffin-embedded sections and Epon-embedded sections of mouse and rat tissues, mitotic chromosomes, meiotic chromosomes and kinetoplasts of Trypanosoma cruzi epimastigotes. The DNA-dependent fluorescence of these structures showed a very low fading rate. The emission colors were related to the ligand. The most suitable compounds for forming fluorescent Al chelates were 8-hydroxyquinoline, morin, nuclear fast red and purpurin. Staining with diluted carmine solutions and InCl3 mordanting, followed by 8-hydroxyquinoline, also induced chromatin fluorescence. After treating isolated mouse chromosomes with the preformed complex Al-nuclear fast red, x-ray microanalysis indicated a P:Al:dye binding ratio of about 40:15:1. The selectivity, stability and easy formation of these fluorescent Al complexes are obvious advantages for their use as new cytochemical probes in cytologic studies.

Aluminum↗

Persistence of DNA lesions and the cytological cancellation of sister chromatid exchanges.

The ability of UV light, mitomycin C and ionizing radiation to induce the formation of sister chromatid exchanges (SCEs) at the same locus in successive cell generations was investigated in human lymphocytes. Cells were exposed to the DNA damaging agents after they had completed their first round of DNA replication, and SCEs were examined at the third division in chromosomes that had been differentially stained three ways. Although some of these treatments induced long-lived lesions that increased the frequency of SCEs in successive cell generations, none of the lesions led to the formation of consecutive SCEs at the same locus in successive cell generations. This observation seriously challenges the hypothesis that SCE cancellation results as a consequence of persistence of the lesions induced by these agents.

Antibiotics, Antineoplastic↗