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A mouse model study of toxicity and biodistribution of a replication defective adenovirus serotype 5 virus with its genome engineered to contain a decoy hyper binding site to sequester and suppress oncogenic HMGA1 as a new cancer treatment therapy

机译:小鼠模型研究复制缺陷型腺病毒5型血清型病毒的毒性和生物分布,其基因组设计成包含诱饵超结合位点以隔离和抑制致癌性HMGA1作为一种新的癌症治疗方法

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摘要

The HGMA1 architectural transcription factor is highly overexpressed in many human cancers. Because HMGA1 is a hub for regulation of many oncogenes, its overexpression in cancer plays a central role in cancer progression and therefore HMGA1 is gaining increasing attention as a target for development of therapeutic approaches to suppress either its expression or action in cancer cells. We have developed the strategy of introducing decoy hyper binding sites for HMGA1 into the nucleus of cancer cells with the goal of competetively sequestering overexpressed HMGA1 and thus suppressing its oncogenic action. Towards achieving this goal, we have introduced an HMGA1 decoy hyper binding site composed of six copies of a high affinity HMGA1 binding site into the genome of the replication defective adenovirus serotype 5 genome and shown that the engineered virus effectively reduces the viability of human pancreatic and cancer cells. Here we report the first pre-clinical measures of toxicity and biodistribution of the engineered virus in C57BL/6J Black 6 mice. The immune response to exposure of the engineered virus was determined by assaying the serum levels of key cytokines, IL-6 and TNF-α. Toxicity due to exposure to the virus was determined by measuring the serum levels of the liver enzymes aspartate aminotransferase and alanine aminotransferase. Biodistribution was measured following direct injection into the pancreas or liver by quantifying viral loads in the pancreas, liver, spleen and brain.
机译:HGMA1结构转录因子在许多人类癌症中高度过表达。由于HMGA1是调节许多癌基因的枢纽,因此其在癌症中的过度表达在癌症进展中起着核心作用,因此HMGA1作为开发抑制其在癌细胞中的表达或作用的治疗方法的目标越来越受到关注。我们已经开发了将HMGA1的诱饵超结合位点引入癌细胞核的策略,目的是竞争性隔离过量表达的HMGA1,从而抑制其致癌作用。为了实现这一目标,我们将由高亲和力HMGA1结合位点的六个拷贝组成的HMGA1诱饵超结合位点引入了复制缺陷型腺病毒5型血清基因组的基因组中,并表明该工程病毒有效降低了人胰腺癌和癌细胞。在这里,我们报告在C57BL / 6J黑6小鼠中工程病毒的毒性和生物分布的第一个临床前测量。通过检测关键细胞因子,IL-6和TNF-α的血清水平来确定对工程病毒暴露的免疫应答。通过测量肝酶天冬氨酸氨基转移酶和丙氨酸氨基转移酶的血清水平来确定由于暴露于病毒引起的毒性。在直接注射入胰腺或肝脏后,通过量化胰腺,肝脏,脾脏和大脑中的病毒载量来测量生物分布。

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