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array-based comparative genomic hybridization (acgh  (GeneDx Inc)

 
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    GeneDx Inc array-based comparative genomic hybridization (acgh
    Array Based Comparative Genomic Hybridization (Acgh, supplied by GeneDx Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/array-based+comparative+genomic+hybridization/clinical+microarray+services/pmc08056469-41-12-19
    Average 90 stars, based on 1 article reviews
    array-based comparative genomic hybridization (acgh - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    other:

    Article Title: Diagnostic yield of advanced genetic testing in patients with hereditary neuropathies: A retrospective single-site study.
    Article Snippet: Correspondence Kevin J. Felice, Department of Neuromuscular Medicine, Hospital for Special Care, New Britain, CT 06053.. Email: felicek@hfsc.org Abstract Introduction/Aims: Advanced genetic testing including next-generation sequencing (AGT/NGS) has facilitated DNA testing in the clinical setting and greatly expanded new gene discovery for the Charcot-Marie-Tooth neuropathies and other hereditary neuropathies (CMT/HN).. Herein, we report AGT/NGS results, clinical findings, and diagnostic yield in a cohort of CMT/HN patients evaluated at our neuropathy care center.

    Article Title: A Patient Case of Malan Syndrome Involving 19p13.2 Deletion of NFIX with Longitudinal Follow-Up and Future Prospectives
    Article Snippet: Whole-genome array comparative genomic hybridization (CGH) and single-nucleotide polymorphism (SNP) analysis (GeneDx, Gaithersburg, MD) revealed the following: arr [GRCh37] 19p13.2 (13,180,583–13,255,428) × 1 de novo deletion of 75 kb ( ).

    Article Title: Functional Characterization of Biallelic RTTN Variants Identified in an Infant with Microcephaly, Simplified Gyral Pattern, Pontocerebellar Hypoplasia, and Seizures
    Article Snippet: Exon level oligo array comparative genomic hybridization (CGH) (ExonArrayDx) for the coding exons of the candidate gene was performed in a clinical laboratory (GeneDx, Gaithersburg, MD) on DNA obtained from the proband.

    Article Title: Heterozygous deletions of noncoding parts of the PRPF31 gene cause retinitis pigmentosa via reduced gene expression
    Article Snippet: Genomic DNA samples of MOL0931–1 and MOL0931–2 were tested with array-based comparative genomic hybridization (aCGH) targeted for PRPF31 at GeneDx (Gaithersburg, MD).

    Article Title: Novel Intragenic PAX6 Deletion in a Pedigree with Aniridia, Morbid Obesity, and Diabetes
    Article Snippet: OMIM #600958) gene, known to be associated with hypertrophic cardiomyopathy. ( 21 – 22 ) The specific breakpoints of this deletion were subsequently shown to encompass a 1.7 Mbp segment of chromosome 11 (46,842,700–48,588,943 bp) using a comparative genome hybridization (CGH) assay (GeneDx, Gaithersburg, MD).

    Article Title: Corneal ectasia associated with posterior lamellar opacification.
    Article Snippet: Although array comparative genomic hybridization (aCGH) had previously been completed at an outside facility (GeneDx, Gaithersburg, MD, USA) for case 3, realtime quantitative polymerase chain reaction (qPCR) was performed to confirm the absence of any deletions involving one or more of the four SLRP genes in the PACD locus.

    Hybridization:

    Article Title: Functional consequences of a KCNT1 variant associated with status dystonicus and early‐onset infantile encephalopathy
    Article Snippet: .. Comparative genomic hybridization microarray and an infantile epilepsy panel including sequencing and deletion/duplication analysis of 38 genes (GeneDx, assayed August 2012) were negative. ..

    Article Title: Analysis of intragenic USH2A copy number variation unveils broad spectrum of unique and recurrent variants.
    Article Snippet: Given that all forms of Usher syndrome (USH) present with hearing loss in advance of retinal disease, the syndromic nature of the disorder is rarely appreciated when critical management decisions are being made.. As a result, molecular diagnostics are crucial in guiding the management of USH patients.. While 11 genes have been associated with USH, the USH2A gene is one of the largest contributors.

    Microarray:

    Article Title: Functional consequences of a KCNT1 variant associated with status dystonicus and early‐onset infantile encephalopathy
    Article Snippet: .. Comparative genomic hybridization microarray and an infantile epilepsy panel including sequencing and deletion/duplication analysis of 38 genes (GeneDx, assayed August 2012) were negative. ..

    Sequencing:

    Article Title: Functional consequences of a KCNT1 variant associated with status dystonicus and early‐onset infantile encephalopathy
    Article Snippet: .. Comparative genomic hybridization microarray and an infantile epilepsy panel including sequencing and deletion/duplication analysis of 38 genes (GeneDx, assayed August 2012) were negative. ..



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    GeneDx Inc array-based comparative genomic hybridization (acgh) targeted for prpf31
    Schematic representation of the <t>PRPF31</t> region and of the deletions identified. The structure of the PRPF31 (green) and TFPT (red) genes is indicated (introns, lines; noncoding exons, light-blue boxes; coding exons, dark blue boxes). The deletions detected in families MOL0931 and TB228 are indicated by the black lines. Repeated DNA elements are indicated by boxes in color (SINE, short interspersed nuclear elements; LINE, long interspersed nuclear elements; LTR, long-terminal repeats; SAT, microsatellites). Results of real-time PCRs on the genomic DNA from members of the MOL0931 family are shown by the graphs at the bottom, indicating the presence of two DNA copies (+/+) or one DNA copy of the region investigated (+/−). Because of space constraints, only eight primer pairs of the 12 used are depicted in this image. TEL, telomere; CEN, centromere.
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    Image Search Results


    Schematic representation of the PRPF31 region and of the deletions identified. The structure of the PRPF31 (green) and TFPT (red) genes is indicated (introns, lines; noncoding exons, light-blue boxes; coding exons, dark blue boxes). The deletions detected in families MOL0931 and TB228 are indicated by the black lines. Repeated DNA elements are indicated by boxes in color (SINE, short interspersed nuclear elements; LINE, long interspersed nuclear elements; LTR, long-terminal repeats; SAT, microsatellites). Results of real-time PCRs on the genomic DNA from members of the MOL0931 family are shown by the graphs at the bottom, indicating the presence of two DNA copies (+/+) or one DNA copy of the region investigated (+/−). Because of space constraints, only eight primer pairs of the 12 used are depicted in this image. TEL, telomere; CEN, centromere.

    Journal: Molecular Vision

    Article Title: Heterozygous deletions of noncoding parts of the PRPF31 gene cause retinitis pigmentosa via reduced gene expression

    doi:

    Figure Lengend Snippet: Schematic representation of the PRPF31 region and of the deletions identified. The structure of the PRPF31 (green) and TFPT (red) genes is indicated (introns, lines; noncoding exons, light-blue boxes; coding exons, dark blue boxes). The deletions detected in families MOL0931 and TB228 are indicated by the black lines. Repeated DNA elements are indicated by boxes in color (SINE, short interspersed nuclear elements; LINE, long interspersed nuclear elements; LTR, long-terminal repeats; SAT, microsatellites). Results of real-time PCRs on the genomic DNA from members of the MOL0931 family are shown by the graphs at the bottom, indicating the presence of two DNA copies (+/+) or one DNA copy of the region investigated (+/−). Because of space constraints, only eight primer pairs of the 12 used are depicted in this image. TEL, telomere; CEN, centromere.

    Article Snippet: Genomic DNA samples of MOL0931–1 and MOL0931–2 were tested with array-based comparative genomic hybridization (aCGH) targeted for PRPF31 at GeneDx (Gaithersburg, MD).

    Techniques:

    Sequences of the breakpoints. Electropherograms of the breakpoints of the two deletions. The red lines indicate the junction between DNA originating from intron 2 of TFPT (on the left) and DNA originating from intron 1 of PRPF31 (right).

    Journal: Molecular Vision

    Article Title: Heterozygous deletions of noncoding parts of the PRPF31 gene cause retinitis pigmentosa via reduced gene expression

    doi:

    Figure Lengend Snippet: Sequences of the breakpoints. Electropherograms of the breakpoints of the two deletions. The red lines indicate the junction between DNA originating from intron 2 of TFPT (on the left) and DNA originating from intron 1 of PRPF31 (right).

    Article Snippet: Genomic DNA samples of MOL0931–1 and MOL0931–2 were tested with array-based comparative genomic hybridization (aCGH) targeted for PRPF31 at GeneDx (Gaithersburg, MD).

    Techniques:

    Real-time PCR from lymphoblastoid cell lines from family MOL0931 and from controls. Relative PRPF31 expression in 13 controls, patients from family MOL0931 (931–1, 931–2, and 931–5), and individual 931–3 (unaffected carrier of the mutation) are shown. Error bars indicate standard deviations. The difference in gene expression between controls and patients is statistically significant (p = 1.3 × 10 −4 , by t test).

    Journal: Molecular Vision

    Article Title: Heterozygous deletions of noncoding parts of the PRPF31 gene cause retinitis pigmentosa via reduced gene expression

    doi:

    Figure Lengend Snippet: Real-time PCR from lymphoblastoid cell lines from family MOL0931 and from controls. Relative PRPF31 expression in 13 controls, patients from family MOL0931 (931–1, 931–2, and 931–5), and individual 931–3 (unaffected carrier of the mutation) are shown. Error bars indicate standard deviations. The difference in gene expression between controls and patients is statistically significant (p = 1.3 × 10 −4 , by t test).

    Article Snippet: Genomic DNA samples of MOL0931–1 and MOL0931–2 were tested with array-based comparative genomic hybridization (aCGH) targeted for PRPF31 at GeneDx (Gaithersburg, MD).

    Techniques: Real-time Polymerase Chain Reaction, Expressing, Mutagenesis, Gene Expression