Loss of heterozygosity on chromosome 9p, 11p, 11q, 13q, 17p, 17q and oncogene amplification in human sporadic breast carcinomas and benign lesions detected by microsatellite analysis and qdPCR using fluorescent DNA technology

利用微卫星分析和荧光DNA技术进行qdPCR检测,发现人类散发性乳腺癌和良性病变中存在9p、11p、11q、13q、17p、17q染色体杂合性缺失和癌基因扩增。

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Abstract

BACKGROUND: High-risk human papillomaviruses (HR-HPVs) can be detected in a proportion of non-melanoma skin cancers. Data on prevalence are inconclusive, but are essential to estimate the relevance of HR-HPV, particularly with regard to prophylactic HPV vaccines for skin cancer prevention. METHODS: High-risk human papillomavirus DNA was investigated in 140 non-melanoma skin lesions from 54 immunocompetent patients and 33 immunosuppressed renal allograft recipients. Expression of p16(INK4a), a marker for HR-HPV oncogene expression in the uterine cervix, and of p53 and pRB was evaluated immunohistochemically. RESULTS: The highest prevalence of HR-HPV was found in squamous cell cancer (SCC) (46.2% (6 out of 13) in immunosuppressed and 23.5% (4 out of 17) in immunocompetent patients). High-risk human papillomavirus positivity was accompanied by diffuse p16(INK4a) expression in most SCC (P<0.001) and basal cell cancers (P=0.02), while almost all SCC in situ were p16(INK4a) positive irrespective of HR-HPV presence (P=0.66). Diffuse p16(INK4a) expression was associated with lack of pRB expression (P=0.001). p53 was strongly expressed in 40.0% (56 out of 140) of the lesions irrespective of HR-HPV presence. CONCLUSION: High-risk human papillomavirus can be detected in lesions of keratinised squamous epithelia. The association of HR-HPV with diffuse p16(INK4a) expression might indicate HR-HPV oncogene expression in a proportion of lesions. Overexpression of p53 suggests p53 pathway alterations in HR-HPV-positive and -negative lesions.

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