首页> 外文期刊>Cancer biology & therapy >Nanoparticulate delivery of diphtheria toxin DNA effectively kills Mesothelin expressing pancreatic cancer cells.
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Nanoparticulate delivery of diphtheria toxin DNA effectively kills Mesothelin expressing pancreatic cancer cells.

机译:白喉毒素DNA的纳米微粒传递可有效杀死表达间皮素的胰腺癌细胞。

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Pancreatic cancer is the fourth leading cause of cancer-related deaths in this country, and there is currently no effective targeted treatment for this deadly disease. A dire need exists to rapidly translate our molecular understanding of this devastating disease into effective, novel therapeutic options. Mesothelin is a candidate target protein shown by a number of laboratories to be specifically overexpressed in pancreatic cancers and not in the adjacent normal tissue. Translational investigations have shown promising results using this molecule as a therapeutic target (e.g., vaccine strategies). In addition, the mesothelin promoter has been cloned and dissected and can therefore be used as a vehicle for regulating expression of DNA sequences. Using a novel, proven, biodegradable nanoparticulate system, we sought to target mesothelin-expressing pancreatic cancer cells with a potent suicide gene, diphtheria toxin-A (DT-A). We first confirmed reports that a majority of pancreatic cancer cell lines and resected pancreatic ductal adenocarcinoma specimens overexpressed mesothelin at the mRNA and protein levels. High mesothelin-expressing pancreatic cancer cell lines produced more luciferase than cell lines with undetectable mesothelin expression when transfected with a luciferase sequence under the regulation of the mesothelin promoter. We achieved dramatic inhibition of protein translation (>95%) in mesothelin-expressing pancreatic cancer cell lines when DT-A DNA, driven by the mesothelin promoter, was delivered to pancreatic cancer cells. We show that this inhibition effectively targets the death of pancreatic cancer cells that overexpress mesothelin. The work presented here provides evidence that this strategy will work in pre-clinical mouse pancreatic cancer models, and suggests that such a strategy will work in the clinical setting against the majority of pancreatic tumors, most of which overexpress mesothelin.
机译:胰腺癌是该国与癌症相关的死亡的第四大主要原因,目前尚无针对这种致命疾病的有效靶向治疗。迫切需要将我们对这种破坏性疾病的分子理解迅速转化为有效的新型治疗选择。间皮素是许多实验室显示的候选靶蛋白,在胰腺癌而不是在邻近的正常组织中特异性过表达。转化研究表明使用该分子作为治疗靶标(例如疫苗策略)有希望的结果。另外,间皮素启动子已经被克隆和解剖,因此可以用作调节DNA序列表达的载体。我们使用一种新颖的,经过验证的,可生物降解的纳米颗粒系统,试图用具有自杀力的基因白喉毒素-A(DT-A)靶向表达间皮素的胰腺癌细胞。我们首先证实了报道,大多数胰腺癌细胞系和切除的胰腺导管腺癌标本在mRNA和蛋白质水平上均表达间皮素。当在间皮素启动子的调控下用荧光素酶序列转染时,高表达间皮素的胰腺癌细胞系产生的荧光素酶比具有无法检测到的间皮素表达的细胞系产生的荧光素酶更多。当由间皮素启动子驱动的DT-A DNA传递至胰腺癌细胞时,我们在表达间皮素的胰腺癌细胞系中实现了蛋白质翻译的显着抑制(> 95%)。我们表明这种抑制有效地针对过表达间皮素的胰腺癌细胞的死亡。此处提出的工作提供了证据,表明该策略将在临床前小鼠胰腺癌模型中起作用,并表明这种策略将在临床上针对大多数胰腺肿瘤(其中大多数过表达间皮素)发挥作用。

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