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Biomedical subjects

F Pellestor

Publications and source records attributed to F Pellestor.

At least 37 records · Page 2Linked to original sources

Fetal cells in maternal blood: the use of primed in situ (PRINS) labelling technique for fetal cell detection and sex assessment.

Prenatal diagnosis is presently performed following invasive procedures with variable risks of fetal loss; non-invasive procedures using fetal cells in maternal blood would be welcome for the early detection of fetal sex or aneuploidy. We describe a simple and rapid protocol to detect fetal cells and thus to assess fetal sex. In a first step, nucleated blood cells were separated into mononuclear and polynuclear cells using a double density gradient centrifugation. In a second step primed in situ (PRINS) labelling technique was performed to label Y-chromosomes. 15 samples were studied and correct gender assignment was made in 13/15. The number of labelled nuclei was higher in polynuclear cell phases than in mononuclear cell phases. Moreover, the polylobular aspect of labelled nuclei from polynuclear cell phases strongly suggested that they could belong to fetal polynuclear cells. The PRINS technique combines some advantages of FISH, such as visual assessment of in situ chromosome labelling and the powerful specificity and sensitivity of PCR. In association with a simple enrichment procedure it constitutes a rapid protocol for fetal cell detection, non-invasive early prenatal sex assessment, and could further be applied to detect the main viable aneuploidies.

Adult↗

Assessment of chromosomal heterogeneity in tumoral cell lines using PRINS technique.

The primed in situ (PRINS) labeling technique has been used for the interphase cytogenetic investigation of 3 colon cancer cell lines (Caco-2, TC7 and PF1 1) derived from a same primary tumor. A panel of 10 chromosome-specific primers (for chromosomes 1, 2, 3, 7, 8, 9, 10, 13, 16 and 18) has been utilized in simple and double color PRINS reactions. Each cell line displayed a heterogeneous distribution of copy number for several chromosomes. The karyotypic heterogeneity was also significant between the 3 cell lines. These data indicate the common occurrence of chromosome heterogeneity in tumoral cell lines and demonstrate the feasibility of interphase PRINS procedure for analysis of numerical changes in tumoral cells.

Chromosomes, Human↗

[Application of the PRINS technique for chromosome examination in fetal cells present in maternal blood].

Both detection and chromosomal analysis of fetal cells present in the maternal circulation can be performed using Histopaque double density gradient centrifugation followed by primed in situ (PRINS) labeling technique. This approach has been tested on blood samples from 15 pregnant women and 6 control donors with primers specific for chromosomes 9, X and Y. The cell separation technique allows recovery of both mononuclear cells and polynuclear cells with a 97% efficiency. PRINS labeling was successful in 100% cells from control blood samples. Among patient samples, 2 "false-negative" results were observed. These preliminary results suggest that the present protocol might be efficient for non-invasive prenatal chromosome analysis.

Case-Control Studies↗

Rapid characterization of human chromosomes in hybrid cell lines by primed in situ (PRINS) labeling.

The primed in situ (PRINS) labeling technique allows a rapid and specific labeling of human chromosomes in situ. This method is based on annealing of specific oligonucleotide primers and subsequent primer extension by a Taq DNA polymerase. We have developed a PRINS protocole for the cytogenetic analysis of somatic hybrid cell lines. Painting of human chromosomes is performed using Alu specific primers. Individual human chromosomes are identified using chromosome-specific alpha-satellite primers. The method was successfully tested to 3 different human-hamster hybrid cell lines. This approach provides an interesting alternative to classical cytogenetic and in situ hybridization techniques for the characterization of the human content of hybrid cell lines.

Animals↗

Primed in situ (PRINS) labelling with Alu and satellite primers for rapid characterization of human chromosomes in hybrid cell lines.

The primed in situ (PRINS) labelling method was developed as an alternative to classical cytogenetics and fluorescence in situ hybridization (FISH) for the characterization of interspecific somatic hybrids. Full karyotypes were performed by PRINS using Alu-specific primers to generate the painting of all human material associated with R-like banding. The representativity of individual human chromosomes was established using primers specific for discriminent alpha-satellite DNA sequences providing specific signals on the centromeres of the targeted chromosomes and corresponding spots in interphase nuclei. Using this methodology, a somatic hybrid clone was shown to be monochromosomal for the der(11) from a t(11;22) patient.

Animals↗

Incidence of chromosome 1 disomy in human sperm estimated by the primed in situ (PRINS) labeling technique.

The primed in situ (PRINS) labeling technique was used to determine the rate of disomy of chromosomes 1 and 16 in sperm of two normal subjects. Two different but specific primers (alpha-satellite and satellite II) for chromosome 1 were used in parallel experiments to test the efficiency of PRINS labeling in sperm nuclei. A minimum of 10,000 sperm nuclei per chromosome primer was analyzed, leading to a total number of 41,651 scored spermatozoa. Similar rates of chromosome 1 disomy (mean values, 0.18% and 0.20%) were found in both donors when the alpha-satellite and satellite II primers were used, demonstrating the reliability of PRINS labeling on sperm nuclei. For chromosome 16, the disomy rate among the two donors ranged from 0.20% to 0.24%. This study confirms that PRINS provides a rapid and efficient method for in situ chromosomal screening of sperm nuclei.

Adult↗

Cytogenetic analysis of meiotic segregation in sperm from two males heterozygous for reciprocal translocations using PRINS and humster techniques.

The meiotic segregation patterns of 2 reciprocal translocations t(7;9)(q33;p21) and t(7;18)(q35;q11) were analyzed in sperm of 2 heterozygote carriers. Both sperm karyotyping and in situ PRINS labeling of sperm nuclei were performed on a sperm sample from each subject. Using the humster technique, 54 and 72 sperm chromosome complements were successfully analyzed for the t(7;9) and the t(7;18) respectively. The frequencies of alternate, adjacent 1, adjacent 2 and 3:1 segregations were 44.44%, 37.04%, 12.96% and 5.56% for the t(7;9) and 33.33%, 43.05%, 19.45% and 4.17% for the t(7;18). The PRINS procedure allowed the rapid screening of large samples of spermatozoa. However, alternate and adjacent 1 segregants were not discriminated because of the generation of centromeric signals. The segregation pattern was determined on 10,658 spermatozoa for the t(7;9) and 10,462 for the t(7;18). The distributions of segregants were similar to those obtained by sperm karyotyping. These data were pooled with results from 37 reciprocal translocations previously studied by sperm karyotyping and 6 recently investigated by FISH. The analysis of these compiled data demonstrates the particularity of the production of imbalances in male gametes; independent of the predisposition for a type of imbalance at term, there is a preferential production of adjacent 1 imbalance in sperm.

Adult↗

Cytogenetic characterization of interspecific somatic hybrids by PRINS.

The primed in situ (PRINS) labeling technique was developed as an alternative method to classical cytogenetics and in situ hybridization (FISH) for the characterization of interspecific somatic hybrids. Full karyotypes were performed using Alu specific primers generating the painting of all human material associated with R like banding. The representativity of individual human chromosomes was established using primers specific for discriminent alpha-satellite DNA sequences providing specific signals on the centromeres of the targeted chromosomes and corresponding spots in interphase nuclei. Due to the use of synthetic oligonucleotide primers and of directly labeled haptens. PRINS method avoid repetitive probes preparation, eliminates secondary amplification of signals and the whole process can be performed within a timespan of 1 hour. Providing qualitative and quantitative answers, the simple PRINS method appears very well adapted to the specific problematic of somatic hybrids as for their characterization than for their periodic controls imposed by their instability. The method has been tested on 4 human-rodent hybrid cell lines. In particular, the somatic hybrid clone ALE 4 was shown to be monochromosomal for the der(11) from the reciprocal translocation t(11:22).

Animals↗

Aneuploidy detection in human sperm nuclei using PRINS technique.

Rapid and specific identification of chromosomes can be attained in situ using the PRimed IN Situ (PRINS) labelling technique. We have adapted this technique to mature human sperm in combination with a protocol for simultaneous decondensation and denaturation of sperm nuclei. This strategy allowed us to obtain double labelling of human spermatozoa in a < 2-hr reaction. In the present study, we report the estimates of disomy for chromosomes 3, 7, 10, 11, and 17 on 64,642 spermatozoa from 2 normal males. The incidences of disomy ranged from 0.28-0.34%. There were no significant interindividual or interchromosomal differences in disomy rates.

Adult↗

Direct detection of disomy in human sperm by the PRINS technique.

We report the use of the PRimedIN Situ (PRINS) labelling technique for the direct estimation of disomy rates for various chromosomes in human sperm. The PRINS technique provides a rapid and reliable method for chromosome screening since specific labelling may be obtained in less than 2 h. In the present study, the disomy rates of chromosomes 2, 5, 9, 12 and 18 were investigated. The incidences of disomy are similar for all these chromosomes, ranging from 0.27% to 0.33%. These findings suggest an equal distribution of aneuploidies among autosomes in human sperm.

Aneuploidy↗

Rapid chromosome detection in human gametes, zygotes, and preimplantation embryos using the PRINS technique.

PURPOSE: The analysis of the chromosomal constitution of human gametes and embryos is of particular importance for investigation of aneuploidy occurrence and diagnostic purposes. The PRINS method constitutes an alternative to FISH for in situ chromosomal identification. We have adapted this method to human gametes, zygotes, and preimplantation embryos. RESULTS: Chromosome-specific labeling was obtained in gametes, zygotes, and isolated blastomeres. Simultaneous detection of two or three chromosomes can be completed in less than 3 hr using fluorochrome-labeled nucleotides. CONCLUSIONS: The PRINS technique appears to be more efficient than FISH for detection and discrimination of alpha-satellite DNA sequences. The present study demonstrates the usefulness of PRINS for chromosomal screening and preimplantation diagnosis.

Aneuploidy↗

Preimplantation embryo chromosome analysis by primed in situ labeling method.

OBJECTIVE: To present the use of primed in situ labeling method in preimplantation diagnosis. DESIGN: Double- and triple-primed in situ labeling were performed on 10 morphologically abnormal preimplantation embryos, using combinations of specific primers for chromosomes 9, 13, 16, 18, 21, X, and Y. SETTING: Embryos were obtained from patients at the Montpellier University Hospital. PATIENT(S): Seven women undergoing IVF at the Montpellier University Hospital. INTERVENTION(S): Isolated interphase nuclei from poor quality preimplantation embryos were prepared for primed in situ labeling technique. MAIN OUTCOME MEASURE(S): Numerical abnormalities assessed by primed in situ labeling analysis. RESULT(S): Using directly fluorescent-labeled nucleotides, the labeling reaction for three chromosomes did not exceed 2.30 hours. Only three analyzed embryos appeared to be chromosomally normal. Mosaicism, aneupoidy, and haploidy were observed in the seven other embryos. CONCLUSION(S): The primed in situ labeling method offers a simple and reliable screening tool for gender determination and aneuploidy detection. The use of this technique may contribute to significantly improve the procedure of preimplantation diagnosis.

Aneuploidy↗