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Polymer genomics: an insight into pharmacology and toxicology of nanomedicines.

机译:聚合物基因组学:对纳米药物的药理学和毒理学的深入了解。

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摘要

Synthetic polymers and nanomaterials display selective phenotypic effects in cells and in the body signal transduction mechanisms involved in inflammation, differentiation, proliferation, and apoptosis. When physically mixed or covalently conjugated with cytotoxic agents, bacterial DNA or antigens, polymers can drastically alter specific genetically controlled responses to these agents. These effects, in part, result from cooperative interactions of polymers and nanomaterials with plasma cell membranes and trafficking of polymers and nanomaterials to intracellular organelles. Cells and whole organism responses to these materials can be phenotype or genotype dependent. In selected cases, polymer agents can bypass limitations to biological responses imposed by the genotype, for example, phenotypic correction of immune response by polyelectrolytes. Overall, these effects are relatively benign as they do not result in cytotoxicity or major toxicities in the body. Collectively, however, these studies support the need for assessing pharmacogenomic effects of polymer materials to maximize clinical outcomes and understand the pharmacological and toxicological effects of polymer formulations of biological agents, i.e. polymer genomics.
机译:合成聚合物和纳米材料在细胞和体内信号转导机制中表现出选择性的表型效应,涉及炎症,分化,增殖和凋亡。当与细胞毒性剂,细菌DNA或抗原物理混合或共价缀合时,聚合物会大大改变对这些试剂的特定遗传控制反应。这些影响部分是由于聚合物和纳米材料与浆细胞膜的协同相互作用以及聚合物和纳米材料向细胞内细胞器的运输所致。细胞和整个生物体对这些物质的反应可以是表型或基因型依赖性的。在某些情况下,聚合物试剂可以绕过基因型对生物反应的限制,例如,通过聚电解质对免疫反应进行表型校正。总体而言,这些作用相对良性,因为它们不会在体内导致细胞毒性或主要毒性。然而,这些研究总体上支持评估聚合物材料的药物基因组学作用以最大化临床结果并了解生物制剂聚合物制剂(即聚合物基因组学)的药理学和毒理学作用的需要。

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