Division of Hematology-Oncology, Program of Experimental Therapeutics, Department of Medicine, Penn State Milton S. Hershey Medical Center, Penn State College of Medicine, Penn State Hershey Cancer Institute, Pennsylvania State University , Hershey, PA 17033-0850, USA.
Zebrafish. 2013 Jun;10(2):132-46. doi: 10.1089/zeb.2012.0817. Epub 2013 May 17.
Abstract Experimental studies in the zebrafish have greatly facilitated understanding of genetic regulation of the early developmental events in the pancreas. Various approaches using forward and reverse genetics, chemical genetics, and transgenesis in zebrafish have demonstrated generally conserved regulatory roles of mammalian genes and discovered novel genetic pathways in exocrine pancreatic development. Accumulating evidence has supported the use of zebrafish as a model of human malignant diseases, including pancreatic cancer. Studies have shown that the genetic regulators of exocrine pancreatic development in zebrafish can be translated into potential clinical biomarkers and therapeutic targets in human pancreatic adenocarcinoma. Transgenic zebrafish expressing oncogenic K-ras and zebrafish tumor xenograft model have emerged as valuable tools for dissecting the pathogenetic mechanisms of pancreatic cancer and for drug discovery and toxicology. Future analysis of the pancreas in zebrafish will continue to advance understanding of the genetic regulation and biological mechanisms during organogenesis. Results of those studies are expected to provide new insights into how aberrant developmental pathways contribute to formation and growth of pancreatic neoplasia, and hopefully generate valid biomarkers and targets as well as effective and safe therapeutics in pancreatic cancer.
摘要 在斑马鱼中的实验研究极大地促进了对胰腺早期发育事件的遗传调控的理解。斑马鱼中使用正向和反向遗传学、化学遗传学和转基因技术的各种方法已经证明了哺乳动物基因的普遍保守调控作用,并发现了外分泌胰腺发育中的新的遗传途径。越来越多的证据支持将斑马鱼作为人类恶性疾病(包括胰腺癌)的模型。研究表明,斑马鱼中外分泌胰腺发育的遗传调节剂可以转化为人类胰腺腺癌的潜在临床生物标志物和治疗靶点。表达致癌 K-ras 的转基因斑马鱼和斑马鱼肿瘤异种移植模型已成为解析胰腺癌发病机制以及药物发现和毒理学的有价值的工具。未来对斑马鱼胰腺的分析将继续深入了解器官发生过程中的遗传调控和生物学机制。这些研究的结果有望提供有关异常发育途径如何导致胰腺肿瘤形成和生长的新见解,并有望生成有效的生物标志物和靶标以及安全有效的胰腺癌治疗方法。