首页> 外文期刊>Journal of nanoscience and nanotechnology >The Role of Functionalized Magnetic Iron Oxide Nanoparticles in the Central Nervous System Injury and Repair: New Potentials for Neuroprotection with Cerebrolysin Therapy
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The Role of Functionalized Magnetic Iron Oxide Nanoparticles in the Central Nervous System Injury and Repair: New Potentials for Neuroprotection with Cerebrolysin Therapy

机译:功能化的磁性氧化铁纳米粒子在中枢神经系统损伤和修复中的作用:脑溶素治疗神经保护的新潜力。

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Functionalized Magnetic Iron Oxide Nanoparticles (FMIONPs) are being explored for the development of various biomedical applications, e.g., cancer chemotherapy and/or several other radiological or diagnostic purposes. However, the effects of these NPs per se on the central nervous system (CNS) injury or repair are not well known. This review deals with different aspects of FMIONPs in relation to brain function based on the current literature as well as our own investigation in animal models of CNS injuries. It appears that FMIONPs are innocuous when administered intravenously within the CNS under normal conditions. However, abnormal reactions to FMIONPs in the brain or spinal cord could be seen if they are combined with CNS injuries e.g., hyperthermia or traumatic insults to the brain or spinal cord. Thus, administration of FMIONPs in vivo following whole body hyperthermia (WBH) or a focal spinal cord injury (SCI) exacerbates cellular damage. Since FMIONPs could help in diagnostic purposes or enhance the biological effects of radiotherapy/chemotherapy it is likely that these NPs may have some adverse reaction as well under disease condition. Thus, under such situation, adjuvant therapy e.g., Cerebrolysin (Ever NeuroPharma, Austria), a suitable combination of several neurotrophic factors and active peptide fragments are the need of the hour to contain such cellular damages caused by the FMIONPs in vivo. Our observations show that co-administration of Cerebrolysin prevents the FMIONPs induced pathologies associated with CNS injuries. These observations support the idea that FMIONPs are safe for the CNS in disease conditions when co-administered with cerebrolysin. This indicates that cerebrolysin could be used as an adjunct therapy to prevent cellular damages in disease conditions where the use of FMIONPs is required for better efficacy e.g., cancer treatment.
机译:为了开发各种生物医学应用,例如癌症化学疗法和/或几种其他放射学或诊断目的,正在探索功能化的磁性氧化铁纳米颗粒(FMIONP)。但是,这些NP本身对中枢神经系统(CNS)损伤或修复的影响尚不清楚。这篇综述基于当前文献以及我们自己对中枢神经系统损伤动物模型的研究,探讨了FMIONPs与脑功能相关的不同方面。当在正常情况下在CNS内静脉内给药时,FMIONP似乎无害。但是,如果将FMIONP与中枢神经系统损伤(例如热疗或对脑部或脊髓的外伤)相结合,可能会发现它们对大脑或脊髓中的FMIONP有异常反应。因此,在全身热疗(WBH)或局灶性脊髓损伤(SCI)之后在体内施用FMIONP会加剧细胞损伤。由于FMIONP可以帮助诊断或增强放射疗法/化学疗法的生物学作用,因此这些NP在疾病条件下也可能会产生一些不良反应。因此,在这种情况下,需要小时的辅助治疗,例如脑溶素(Ever NeuroPharma,奥地利),几种神经营养因子和活性肽片段的适当组合,以包含体内由FMIONP引起的细胞损伤。我们的观察结果表明,脑溶素的共同给药可预防FMIONPs引起的与CNS损伤相关的病理。这些观察结果支持这样的想法,即FMIONPs与脑溶素同时给药对疾病中枢神经系统是安全的。这表明脑溶素可以用作预防在疾病状况中的细胞损伤的辅助疗法,在所述疾病状况中需要使用FMIONP以获得更好的功效,例如癌症治疗。

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