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   Live imaging of innate immune cell sensing of transformed cells in zebrafish larvae: Parallels between tumor initiation and wound inflammation  
   
نویسنده feng y. ,santoriello c. ,mione m. ,hurlstone a. ,martin p.
منبع plos biology - 2010 - دوره : 8 - شماره : 12
چکیده    It has not previously been possible to live image the earliest interactions between the host environment and oncogenetransformed cells as they initiate formation of cancers within an organism. here we take advantage of the translucency of zebrafish larvae to observe the host innate immune cell response as oncogene-transformed melanoblasts and goblet cells multiply within the larval skin. our studies indicate activation of leukocytes at very early stages in larvae carrying a transformed cell burden. locally,we see recruitment of neutrophils and macrophages by 48 h post-fertilization,when transformed cells are still only singletons or doublets,and soon after this we see intimate associations between immune and transformed cells and frequent examples of cytoplasmic tethers linking the two cell types,as well as engulfment of transformed cells by both neutrophils and macrophages. we show that a major component of the signal drawing inflammatory cells to oncogenic hrasg12v-transformed cells is h2o2,which is also a key damage cue responsible for recruiting neutrophils to a wound. our short-term blocking experiments show that preventing recruitment of immune cells at these early stages results in reduced growth of transformed cell clones and suggests that immune cells may provide a source of trophic support to the transformed cells just as they do at a site of tissue repair. these parallels between the inflammatory responses to transformed cells and to wounds reinforce the suggestion by others that cancers resemble nonhealing wounds. © 2010 feng et al.
آدرس department of biochemistry,school of medical sciences,university of bristol,bristol,united kingdom,department of physiology and pharmacology,school of medical sciences,university of bristol,bristol, United Kingdom, ifom,the firc institute of molecular oncology foundation,milan, Italy, ifom,the firc institute of molecular oncology foundation,milan, Italy, faculty of life sciences,the university of manchester,manchester, United Kingdom, department of biochemistry,school of medical sciences,university of bristol,bristol,united kingdom,department of physiology and pharmacology,school of medical sciences,university of bristol,bristol, United Kingdom
 
     
   
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