Filipič Bratko, Gradišnik Lidija, Pereyra Adriana, Mršić Gordan, Andrašec Marjan, Mazija Hrvoje
CIETO (Croatian Institute for Experimental and Translational Oncology), Koledinečka 03, 10040 Zagreb, Croatia.
Institutes of Biomedical Sciences, Medical Faculty, University of Maribor, Taborska 8, 2000 Maribor, Slovenia.
Life (Basel). 2022 Mar 12;12(3):414. doi: 10.3390/life12030414.
Different strains of Newcastle disease viruses (NDV) or Sendai viruses (SV) are used to induce the production of human leukocyte multi subtype interferon-alpha (HuIFN-αN3). Their inducing capacity can be enhanced in different ways. One includes 10% PBS washout of Holocene minerals (HM). The presented study aims to compare the HuIFN-αN3 inducing capacity of NDV ZG1999HDS or SV (Cantell strain) strain in vitro, and to evaluate the enhancing effect of 10% PBS washouts of HM on both viruses. The NDV strains' ZG1999HDS interferon inducing capacity (483.23 ± 4.5 pg/mL) was similar to that of the SV (Cantell strain) (584.16 ± 5.9 pg/mL). It was shown that the HuIFN-αN3 inducing capacity of the strain of NDV ZG1999HDS can be strongly enhanced with 10% PBS washout of HM to 3818.21 ± 41.9 pg/mL and 4790.34 ± 33.5 pg/mL with SV (Cantell strain), u. The RP-HPLC analyses of such HuIFN-αN3 induced with the strain of NDV ZG1999HDS show the difference to SV (Cantell strain) induced HuIFN-αN3 in the absence of subtype α14 and the lower level of the subtype α1. The possible ways of such enhancement were also studied and it was postulated that the Fe ions from 10% PBS washouts of HM, while stimulating the reactive oxygen species (ROS) and nitric oxide (NO) formation, activate the transcription factor NF- κB and consequently the production of HuIFN-αN3.
不同毒株的新城疫病毒(NDV)或仙台病毒(SV)被用于诱导人白细胞多亚型α干扰素(HuIFN-αN3)的产生。它们的诱导能力可以通过不同方式增强。其中一种方式是用10%的PBS洗脱全新世矿物质(HM)。本研究旨在比较NDV ZG1999HDS毒株或SV(坎特尔株)在体外诱导HuIFN-αN3的能力,并评估10%的PBS洗脱HM对这两种病毒的增强效果。NDV毒株ZG1999HDS的干扰素诱导能力(483.23±4.5 pg/mL)与SV(坎特尔株)(584.16±5.9 pg/mL)相似。结果表明,用10%的PBS洗脱HM可使NDV ZG1999HDS毒株诱导HuIFN-αN3的能力大幅增强至3818.21±41.9 pg/mL,而SV(坎特尔株)则可增强至4790.34±33.5 pg/mL。对由NDV ZG1999HDS毒株诱导的此类HuIFN-αN3进行的反相高效液相色谱分析表明,与SV(坎特尔株)诱导的HuIFN-αN3相比,其α14亚型缺失且α1亚型水平较低。还研究了这种增强的可能途径,并推测来自10%的PBS洗脱HM中的铁离子在刺激活性氧(ROS)和一氧化氮(NO)形成的同时,激活转录因子NF-κB,从而促进HuIFN-αN3的产生。