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Joseph A Califano

Publications and source records attributed to Joseph A Califano.

10 recordsLinked to original sources

Progression of microsatellite instability from premalignant lesions to tumors of the head and neck.

The role of microsatellite alterations other than loss of heterozygosity (LOH) in the progression of benign epithelium to head-and-neck squamous cell cancer (HNSCC) has not been previously described. As the severity of the dysplasia increases at the microscopic level, there is an increase in the prevalence of LOH as defined by microsatellite analysis. Other alterations have been detected in the form of microsatellite instability (MSI), represented by insertions or deletions of base pairs. It is unknown, however, whether the prevalence of these alterations likewise increases during these early stages of tumor progression. Using 6 selected markers that demonstrate a high rate of MSI and allelic imbalance in invasive head-and-neck cancer, we examined 111 lesions ranging from hyperplasia without atypia to invasive mucosal HNSCC. Two of 34 (5.9%) of the hyperplasias without atypia, 2/12 (16.7%) of the mild dysplasias, 2/21 (9.5%) of the moderate dysplasias, 7/26 (26.9%) of the high-grade dysplasias/carcinomas in situ and 6/18 (33%) of the HNSCCs demonstrated microsatellite base pair length alterations. Our findings indicate that MSI becomes increasingly more common as early dysplastic lesions progress to fully malignant HNSCC and confirm this as a supplemental detection method in microsatellite analysis.

Base Pair Mismatch↗

Real-time quantitative PCR demonstrates low prevalence of human papillomavirus type 16 in premalignant and malignant lesions of the oral cavity.

PURPOSE: Human papillomavirus (HPV) type-16 has been associated with invasive squamous cell carcinoma of the head and neck. This study examines the role of HPV-16 in the progression of oral head and neck cancer by determining the quantity of HPV-16 DNA in premalignant and malignant lesions, using real-time quantitative PCR, to more accurately determine the role of HPV-16 in oral head and neck squamous cell carcinogenesis. EXPERIMENTAL DESIGN: We examined 102 microdissected premalignant head and neck lesions (85 from the oral cavity), 34 invasive oral cavity squamous cell carcinomas, as well as 18 invasive tumors known to be HPV positive by traditional molecular technology for the presence of HPV-16 DNA using real-time quantitative PCR. RESULTS: HPV DNA was detected in 1 of 102 premalignant lesions (0.98%), 1 of 34 (2.9%) invasive oral cavity carcinomas, and 14 of 18 (78%) known HPV-positive tumors. CONCLUSIONS: HPV-16 infection and integration is seldom found in oral premalignant lesions and invasive carcinoma, and therefore rarely contributes to malignant progression in the oral cavity. Furthermore, quantitative PCR is a useful technique that reliably excludes contaminated samples and those with minimal HPV DNA content that is unlikely to be significant in carcinogenesis.

Adult↗

Mitochondrial C-tract alteration in premalignant lesions of the head and neck: a marker for progression and clonal proliferation.

PURPOSE: Although mitochondrial DNA mutations have been described recently in many different tumor types, the nature and timing of such alterations remain unclear. In an effort to further examine the role of mitochondrial DNA mutations in carcinogenesis, we examined 137 premalignant lesions of the head and neck from 93 patients for DNA alterations in the poly-cytosine tract (C-tract) of the displacement loop, discovered recently to be a hot spot of mitochondrial DNA alteration. EXPERIMENTAL DESING: All premalignant lesions were tested using a length-based PCR assay, which amplified the C-tract region of mitochondrial DNA. Somatic microsatellites at six loci were also tested on a subset of patients with metachronous or synchronous lesions found to possess a mitochondrial C-tract alteration. RESULTS: Thirty-four of 93 (37%) patients harbored lesions that displayed a C-tract alteration. There was a clear increase in incidence from histologically benign hyperplasia (22%) to squamous carcinoma in situ (62%: P < 0.01). We also tested synchronous dysplastic lesions, metachronous dysplastic lesions, and normal epithelium adjacent to dysplastic epithelium with this assay. In most cases, the mitochondrial C-tract status identified a clonal relationship between these lesions. Genomic microsatellites also confirmed that a clonal relationship was present in many of these cases. CONCLUSIONS: Mitochondrial DNA alterations in the head and neck occur in the earliest premalignant lesions and demonstrate a rising incidence that parallels histological severity. These alterations are valuable as additional markers of histopathological progression.

Biomarkers, Tumor↗

Sterilization.

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Adolescent↗