DNA ploidy is an important prognostic parameter in paediatric B-ALL, but the significance of the S-phase fraction is unclear. In present study, DNA ploidy was assessed in 40 pediatric B-ALL cases by flow cytometry. The DI (DNA index) and percentage of cells in S-phase were calculated using Modfit software. Aneuploidy was noted in 26/40 (65%) cases. A DI of 1.10-1.6 (hyperdiploidy B) was noted in 20/40 (50%) and 6/40 (15%) had a DI>1.60 (triploid and tetraploid range). Some 14/40 (35%) cases had a diploid DI between 0.90-1.05. None of the cases had a DI <0.90 (hypodiploid) or in the 1.06-1.09 (hyperdiploid A) range. The mean S-phase fraction was 2.6%, with 24/40 (60%) having low and 16/40 (40%) high S-phase fractions. No correlation was noted with standard ALL risk and treatment response factors with DI values or S-phase data, except for a positive correlation of low S-phase with high NCI risk category (p=0.032). Overall frequency of hyperdiploidy in our cohort of B-ALL patients was very high (65%). No correlation between hyperdiploidy B and low TLC or common B-phenotype was observed in our study as 42% cases with DI 1.10-1.6 had TLC> 50 x 109 and 57.1% CD 10 negativity. The study also highlighted that S-phase fraction analysis does not add any prognostic information and is not a useful parameter for assessment in ALL cases. However, larger studies with long term outcome analysis are needed to derive definitive conclusions.
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http://dx.doi.org/10.7314/apjcp.2015.16.17.7917 | DOI Listing |
Alzheimers Dement
December 2024
Cleveland Institute for Computational Biology, Case Western Reserve University, Cleveland, OH, USA.
Background: Mosaic loss of chromosome Y (mLOY) refers to acquired aneuploidy in a fraction of somatic cells. In aging men, this has been suggested as a possible biomarker for increased risk of numerous diseases, including Alzheimer's disease (AD). We investigated mLOY estimated from whole genome sequencing (WGS) as a risk factor for AD in the Midwestern Amish, a founder population with homogeneous lifestyle, reducing the effect of confounding environmental factors.
View Article and Find Full Text PDFClin Chem
January 2025
Prenatal Genomics and Therapy Section, Center for Precision Health Research, National Human Genome Institute, National Institutes of Health, Bethesda, MD, United States.
Background: Prenatal cell-free DNA (cfDNA) screening is a success story of clinical genomics that has translated to and transformed obstetric care. It is a highly sensitive and specific method of screening for the most common fetal aneuploidies, including trisomies 13, 18, and 21. While primarily designed to detect fetal chromosomal abnormalities, the test also analyzes maternal cfDNA, which can complicate interpretation of results.
View Article and Find Full Text PDFNat Commun
January 2025
Center for Engineering in Medicine and Surgery, Massachusetts General Hospital and Harvard Medical School, Boston, MA, 02114, USA.
Circulating Tumor Cells (CTCs) in blood encompass DNA, RNA, and protein biomarkers, but clinical utility is limited by their rarity. To enable tumor epitope-agnostic interrogation of large blood volumes, we developed a high-throughput microfluidic device, depleting hematopoietic cells through high-flow channels and force-amplifying magnetic lenses. Here, we apply this technology to analyze patient-derived leukapheresis products, interrogating a mean blood volume of 5.
View Article and Find Full Text PDFCongenit Anom (Kyoto)
January 2025
Department of Obstetrics and Gynecology, Yokohama City University School of Medicine, Yokohama, Japan.
Turner syndrome is a chromosomal disorder, characterized by the partial or total deletion of one X chromosome, resulting in various karyotypes that presumably lead to different phenotypes. However, most studies find it difficult to predict phenotypes from karyotypes due to the presence of mosaicism. The purpose of this study is to clarify the relationship between karyotype and phenotype in Turner syndrome with non-mosaic X chromosome structural rearrangements.
View Article and Find Full Text PDFFront Biosci (Landmark Ed)
November 2024
Department of General Surgery, The First Affiliated Hospital of Anhui Medical University, 230022 Hefei, Anhui, China.
Background: Aneuploidy is crucial yet under-explored in cancer pathogenesis. Specifically, the involvement of brain expressed X-linked gene 4 () in microtubule formation has been identified as a potential aneuploidy mechanism. Nevertheless, 's comprehensive impact on aneuploidy incidence across different cancer types remains unexplored.
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