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首页> 外文期刊>Cell cycle >Vessel destruction by tumor-targeting Salmonella typhimurium A1-R is enhanced by high tumor vascularity.
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Vessel destruction by tumor-targeting Salmonella typhimurium A1-R is enhanced by high tumor vascularity.

机译:高肿瘤血管增强了靶向肿瘤的鼠伤寒沙门氏菌A1-R对血管的破坏。

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Our laboratory has previously developed a tumor-targeting double-auxotrophic mutant of Salmonella typhimurium termed A1-R. The present report demonstrates that S. typhimurium A1-R destroys tumor blood vessels and this is enhanced in tumors with high vascularity. Red fluorescent protein (RFP)-expressing Lewis lung cancer cells (LLC-RFP) were transplanted subcutaneously in the ear, back skin, and footpad of nestin-driven green fluorescent protein (ND-GFP) transgenic nude mice, which selectively express GFP in nascent blood vessels. Color-coded in vivo imaging demonstrated that the LLC-RFP ear tumor had the highest cell density and the footpad tumor had the least with the ear tumor having more abundant blood vessels than that on the back or footpad. The tumor-bearing mice were treated with A1-R bacteria via tail-vein injection. Tumors in the ear were the earliest responders to bacterial therapy and hemorrhaged severely the day after A1-R administration. Tumors growing in the back were the second fastest responders to bacterial treatment and appeared necrotic 3 days after A1-R administration. Tumors growing in the footpad had the least vascularity and were the last responders to A1-R. Therefore, tumor vascularity correlated positively with tumor efficacy of A1-R. The present study suggests that bacteria efficacy on tumors involved vessel destruction which depends on the extent of vascularity of the tumor.
机译:我们的实验室先前已经开发出一种靶向肿瘤的鼠伤寒沙门氏菌双营养缺陷型突变体,称为A1-R。本报告证明鼠伤寒沙门氏菌A1-R破坏了肿瘤血管,在高血管性肿瘤中这种作用得到增强。将表达红色荧光蛋白(RFP)的Lewis肺癌细胞(LLC-RFP)皮下移植到Nestin驱动的绿色荧光蛋白(ND-GFP)转基因裸鼠的耳,后皮肤和足垫中,在小鼠中选择性表达GFP。新生血管。体内彩色编码显示,LLC-RFP耳肿瘤的细胞密度最高,而脚垫肿瘤的细胞密度最小,而耳肿瘤的血管比背部或脚垫的血管丰富。通过尾静脉注射用A1-R细菌治疗荷瘤小鼠。耳部肿瘤是细菌治疗的最早反应者,在给予A1-R后第二天严重出血。背部生长的肿瘤是细菌治疗的第二快反应,在给予A1-R后3天出现坏死。足垫中生长的肿瘤血管最少,是对A1-R的最后反应者。因此,肿瘤血管与A1-R的肿瘤功效呈正相关。本研究表明细菌对肿瘤的功效涉及血管破坏,这取决于肿瘤血管的程度。

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