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Application of magnetic field hyperthermia and superparamagnetic iron oxide nanoparticles to HIV-1-specific T-cell cytotoxicity.

机译:磁场热疗和超顺磁性氧化铁纳米粒子在HIV-1特异性T细胞细胞毒性中的应用。

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摘要

The latent HIV-1 reservoir remains the major barrier to HIV-1 eradication. Although successful at limiting HIV replication, highly active antiretroviral therapy is unable to cure HIV infection, thus novel therapeutic strategies are needed to eliminate the virus. Magnetic field hyperthermia (MFH) generates thermoablative cytotoxic temperatures in target-cell populations, and has delivered promising outcomes in animal models, as well as in several cancer clinical trials. MFH has been proposed as a strategy to improve the killing of HIV-infected cells and for targeting the HIV latent reservoirs. We wished to determine whether MFH could be used to enhance cytotoxic T-lymphocyte (CTL) targeting of HIV-infected cells in a proof-of-concept study. Here, for the first time, we apply MFH to an infectious disease (HIV-1) using the superparamagnetic iron oxide nanoparticle FeraSpin R. We attempt to improve the cytotoxic potential of T-cell receptor-transfected HIV-specific CTLs using thermotherapy, and assess superparamagnetic iron oxide nanoparticle toxicity, uptake, and effect on cell function using more sensitive methods than previously described. FeraSpin R exhibited only limited toxicity, demonstrated efficient uptake and cell-surface attachment, and only modestly impacted T-cell function. In contrast to the cancer models, insufficient MFH was generated to enhance CTL killing of HIV-infected cells. MFH remains an exciting new technology in the field of cancer therapeutics, which, as technology improves, may have significant potential to enhance CTL function and act as an adjunctive therapy in the eradication of latently infected HIV-positive cells.
机译:潜在的HIV-1储存库仍然是根除HIV-1的主要障碍。尽管成功地限制了HIV的复制,但高效的抗逆转录病毒疗法无法治愈HIV感染,因此需要新颖的治疗策略来消除该病毒。磁场热疗(MFH)在靶细胞群中产生热融化的细胞毒性温度,并已在动物模型以及一些癌症临床试验中取得了令人鼓舞的结果。已经提出MFH作为改善对HIV感染细胞的杀灭并靶向HIV潜在贮库的策略。我们希望在概念验证研究中确定MFH是否可用于增强针对HIV感染细胞的细胞毒性T淋巴细胞(CTL)的靶向性。在这里,我们首次使用超顺磁性氧化铁纳米颗粒FeraSpin R将MFH应用于传染病(HIV-1)。我们尝试通过热疗提高T细胞受体转染的HIV特异性CTL的细胞毒性潜力,以及用比以前描述的更敏感的方法评估超顺磁性氧化铁纳米颗粒的毒性,摄取以及对细胞功能的影响。 FeraSpin R仅表现出有限的毒性,表现出有效的摄取和细胞表面附着,并且仅对T细胞功能产生适度的影响。与癌症模型相反,没有产生足够的MFH来增强CTL杀死HIV感染细胞的能力。 MFH仍然是癌症治疗领域中令人兴奋的新技术,随着技术的进步,MFH在消除潜在感染的HIV阳性细胞方面可能具有增强CTL功能并作为辅助治疗的巨大潜力。

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