Background: Few studies have addressed in detail the genetic alterations that occur in vulvar squamous carcinomas (VSCC) and their precursor lesions. In a previous study, we determined the most common chromosomal loci for allelic imbalance (AI) in HPV-positive and -negative VSCCs. The present study was designed to determine whether AI and the microsatellite instability phenotype (MIN) were present in epithelial lesions known to be associated with VSCC.
Design: Fifty-seven epithelial loci were analyzed, including HPV-positive (classic) and -negative (differentiated) vulvar intraepithelial neoplasms (VINs), lichen sclerosus (LS), and nonatypical hyperplasias. Thirty-one epithelial loci (55%) were obtained from patients with associated invasive vulvar carcinoma. HPV status was determined by polymerase chain reaction analysis. AI and MIN were determined by comparisons of microdissected target tissues with stromal controls, targeting 11 chromosomal loci.
Results: AI was identified in all epithelial categories, involving at least one chromosomal locus in 67, 53, 50, and 43% of classic VIN, differentiated VIN, hyperplasia, and LS. MIN was infrequent (10-13%), but confined to HPV-negative epithelial changes. HPV-positive lesions generally scored for AI more frequently, but certain loci scored nearly equally in both HPV-positive and -negative lesions, including 8p, 11q, and 17p. There were no differences in frequency of AI between epithelia with and without associated invasive carcinoma.
Conclusions: The presence of allelic imbalance in vulvar hyperplasia and LS supports the hypothesis that these alterations are at greater risk for neoplasia despite the absence of conspicuous cellular atypia. A model is proposed in which these changes represent monoclonal expansion and are at empirically greater risk for subsequent "critical events" leading to morphologic atypia (VIN). The possibility that these early genetic changes influence both HPV-positive and -negative pathways merits further study.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1006/gyno.2000.5739 | DOI Listing |
Int J Mol Sci
January 2025
Internal Medicine Department, Hospital Universitario Ramón y Cajal, IRYCIS, 28034 Madrid, Spain.
Most rare diseases (RDs) encompass a diverse group of inherited disorders that affect millions of people worldwide. A significant proportion of these diseases are driven by functional haploinsufficiency, which is caused by pathogenic genetic variants. Currently, most treatments for RDs are limited to symptom management, emphasizing the need for therapies that directly address genetic deficiencies.
View Article and Find Full Text PDFInt J Mol Sci
January 2025
Neuroscience and Mental Health Innovation Institute, Cardiff University, Hadyn Ellis Building, Cardiff CF24 4HQ, UK.
Deletion and duplication in the human 16p11.2 chromosomal region are closely linked to neurodevelopmental disorders, specifically autism spectrum disorder. Data from neuroimaging studies suggest white matter microstructure aberrations across these conditions.
View Article and Find Full Text PDFGenes (Basel)
January 2025
Section of Cytogenetics, Oncology Department, Azienda Ospedaliero-Universitaria Pisana, 56126 Pisa, Italy.
22q11.2 is a region prone to chromosomal rearrangements due to the presence of eight large blocks of low-copy repeats (LCR22s). The 3 Mb 22q11.
View Article and Find Full Text PDFFront Immunol
January 2025
Department of Rheumatology & Allergology, Japanese Red Cross Medical Center, Tokyo, Japan.
Patients with A20 haploinsufficiency (HA20) presenting with central nervous system (CNS) symptoms are rare, and available reports are limited. Here, we describe a patient with HA20, previously followed up as Behçet disease, who presented with CNS symptoms in adulthood. A 38-year-old Japanese male who had been followed up for incomplete Behçet disease at another hospital since 28 years of age presented to our hospital with acute-onset diplopia and persistent hiccups that were severe enough to cause vomiting.
View Article and Find Full Text PDFRev Paul Pediatr
January 2025
Universidade Federal de Ciências da Saúde de Porto Alegre, Porto Alegre, RS, Brazil.
Objective: 3p deletion syndrome is a rare monosomal disease that encompasses deletions throughout the short arm of chromosome 3. It is often in the distal region (3p25-pter), but variations in breakpoints and a complex clinical manifestation exist, with congenital heart defects being considered rare. We present the first case of hypoplastic left heart syndrome and minor dysmorphic features associated with 3p- syndrome.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!