Studies of oncogene activation and tumor suppressor gene inactivation in normal and neoplastic rodent tissue

Gregory S. Buzard
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引用次数: 13

Abstract

Emerging short-term bioassays for chemically-induced carcinogenesis are dependent for their relevance to human risk assessment on the degree of coincidence of human and rodent tumor pathways. Since these pathways do not always converge, these new tests may have a number of unanticipated pitfalls. Models of liver and renal tumors are described. The results from Rb and p53 tumor suppressor gene transgenic animals are compared to human tumor syndromes. The question of mutagenic and epigenetic fingerprints of chemicals versus the cell-specific selection of spontaneous mutations is debated. Examples of specific pitfalls, such as the recently discovered Helicobacter hepaticus promoted liver tumor in mice are presented. The rat pseudogenes for p53 and the rare role of p53 in most important rodent tumor models other than epithelial tumors present experimental quandaries. The differential effects of carcinogens during various stages of rodent perinatal and adult development are also discussed. It is concluded that the pathways of both animal models and their human counterparts should be better identified so that realistic endpoint markers can be chosen for human carcinogenic risk assessment.

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正常和肿瘤啮齿动物组织中癌基因激活和抑癌基因失活的研究
新兴的化学致癌短期生物测定法依赖于人类和啮齿动物肿瘤通路重合程度与人类风险评估的相关性。由于这些途径并不总是汇合,这些新的测试可能有许多意想不到的陷阱。描述了肝脏和肾脏肿瘤模型。将Rb和p53肿瘤抑制基因转基因动物的结果与人类肿瘤综合征进行比较。化学物质的诱变和表观遗传指纹与细胞特异性选择自发突变的问题是有争议的。具体陷阱的例子,如最近发现的肝幽门螺杆菌促进小鼠肝脏肿瘤。p53的大鼠假基因和p53在除上皮性肿瘤外的大多数重要啮齿动物肿瘤模型中的罕见作用目前存在实验困境。还讨论了致癌物在啮齿动物围产期和成年发育的不同阶段的不同影响。由此得出结论,应该更好地识别动物模型和人类模型的途径,以便为人类致癌风险评估选择现实的终点标志物。
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