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首页> 外文期刊>ACS nano >Simultaneous diagnosis and gene therapy of immuno-rejection in rat allogeneic heart transplantation model using a T-cell-targeted theranostic nanosystem
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Simultaneous diagnosis and gene therapy of immuno-rejection in rat allogeneic heart transplantation model using a T-cell-targeted theranostic nanosystem

机译:T细胞靶向治疗纳米系统在大鼠同种异体心脏移植模型中免疫排斥反应的同时诊断和基因治疗

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As the final life-saving treatment option for patients with terminal organ failure, organ transplantation is far from an ideal solution. The concomitant allograft rejection, which is hardly detectable especially in the early acute rejection (AR) period characterized by an intense cellular and humoral attack on donor tissue, greatly affects the graft survival and results in rapid graft loss. Based on a magnetic resonance imaging (MRI)-visible and T-cell-targeted multifunctional polymeric nanocarrier developed in our lab, effective co-delivery of pDNA and superparamagnetic iron oxide nanoparticles into primary T cells expressing CD3 molecular biomarker was confirmed in vitro. In the heart transplanted rat model, this multifunctional nanocarrier showed not only a high efficiency in detecting post-transplantation acute rejection but also a great ability to mediate gene transfection in T cells. Upon intravenous injection of this MRI-visible polyplex of nanocarrier and pDNA, T-cell gathering was detected at the endocardium of the transplanted heart as linear strongly hypointense areas on the MRI T_2*-weighted images on the third day after cardiac transplantation. Systematic histological and molecular biology studies demonstrated that the immune response in heart transplanted rats was significantly suppressed upon gene therapy using the polyplex bearing the DGKα gene. More excitingly, the therapeutic efficacy was readily monitored by noninvasive MRI during the treatment process. Our results revealed the great potential of the multifunctional nanocarrier as a highly effective imaging tool for real-time and noninvasive monitoring and a powerful nanomedicine platform for gene therapy of AR with high efficiency.
机译:作为终末器官衰竭患者的最终挽救生命的治疗选择,器官移植远非理想的解决方案。伴随的同种异体移植排斥几乎很难检测到,特别是在早期急性排斥(AR)时期,其特征是对供体组织的强烈细胞和体液攻击,极大地影响了移植物的存活并导致移植物快速丢失。基于在我们实验室中开发的磁共振成像(MRI)可见和T细胞靶向多功能聚合物纳米载体,在体外证实了pDNA和超顺磁性氧化铁纳米颗粒可以有效地共递送至表达CD3分子生物标志物的原代T细胞中。在心脏移植的大鼠模型中,这种多功能纳米载体不仅显示出高效的移植后急性排斥反应检测能力,而且还具有介导T细胞基因转染的强大能力。静脉注射这种纳米载体和pDNA的MRI可见复合物后,在心脏移植后第三天,在MRI T_2 *加权图像上,在移植心脏的心内膜上检测到T细胞聚集为线性强烈的低眼点区域。系统的组织学和分子生物学研究表明,使用带有DGKα基因的复合物进行基因治疗后,心脏移植大鼠的免疫反应被显着抑制。更令人兴奋的是,在治疗过程中,无创MRI易于监测治疗效果。我们的研究结果表明,多功能纳米载体作为实时,无创监测的高效成像工具以及用于AR基因治疗的高效纳米药物平台,具有巨大的潜力。

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