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首页> 外文期刊>Nucleic Acid Therapeutics >Immune Activation and Target Organ Damage Are Consequences of Hydrodynamic Treatment but Not Delivery of Naked siRNAs in Mice
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Immune Activation and Target Organ Damage Are Consequences of Hydrodynamic Treatment but Not Delivery of Naked siRNAs in Mice

机译:免疫激活和靶器官损伤是水动力治疗的后果,但不是在小鼠体内传递裸siRNA的结果。

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Short-interfering RNAs (siRNAs), key mediators of RNA interference comprise a promising therapeutic tool, although side effects such as interferon (IFN) response are still not perfectly understood. Further, delivery to target organs is a major challenge, possibly associated with side effects including immune activation or organ damage. We investigated whether immune activation as a consequence of double-stranded RNA induced IFN response (Jak/STAT pathway activation or cytokine production) or target organ damage is induced by in vivo low-volume (LV) or high-volume (HV) hydrodynamic delivery or treatment with naked siRNA. NMRI mice were injected with naked siRNAs or saline by hydrodynamic injection (HDI) and positive control mice received polymosinic-polycytidilic acid (poly I:C). LV (1 mL/mouse) and HV (10% of body weight) HDI were compared. After LV HDI, STAT1 and OAS1 gene expression inflammatory cytokine plasma levels and target organ injury were assessed. LV HDI induced slight alanine aminotransferase elevation and mild hepatocyte injury, whereas HV HDI resulted in high ALAT level and extensive hepatocyte necrosis. ST ATI or OAS1 was not induced by LV siRNA; however, HV saline led to a time-dependent slight increase in gene expression. Inflammatory cytokine plasma level and organ histology and functional parameters demonstrated no damage following LV HDI with or without siRNA. Our data demonstrate that naked siRNAs may be harnessed, without the induction of IFN response or immune activation, and that LV HDI is preferable, because HV HDI may cause organ damage.
机译:短干扰RNA(siRNA),RNA干扰的关键介质,是一种很有前途的治疗工具,尽管诸如干扰素(IFN)应答等副作用仍未得到很好的理解。此外,递送至靶器官是主要挑战,可能与包括免疫活化或器官损伤的副作用相关。我们调查了体内低容量(LV)或高容量(HV)流体动力传递是否是由于双链RNA诱导的IFN应答(Jak / STAT途径激活或细胞因子产生)或靶器官损伤所致的免疫激活。或裸siRNA处理。通过流体动力注射(HDI)向NMRI小鼠注射裸露的siRNA或盐水,阳性对照组小鼠接受多mosinic-polycytidilic acid(poly I:C)。比较了LV(小鼠1 mL /鼠)和HV(体重的10%)HDI。 LV HDI后,评估STAT1和OAS1基因表达的炎症细胞因子血浆水平和靶器官损伤。 LV HDI引起轻微的丙氨酸氨基转移酶升高和轻度肝细胞损伤,而HV HDI导致高ALAT水平和广泛的肝细胞坏死。 LV siRNA不能诱导ST ATI或OAS1。然而,高压生理盐水导致基因表达随时间的轻微增加。在有或没有siRNA的LV HDI后,炎症细胞因子血浆水平,器官组织学和功能参数均未显示损害。我们的数据表明,可以使用裸露的siRNA,而不诱导IFN反应或免疫活化,并且LV HDI是优选的,因为HV HDI可能会导致器官损伤。

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