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Viral Transgene Expression Delivered by Repeat Intraocular Adenoviral Vector Injection: In Vivo Live Imaging Study

机译:重复眼内腺病毒载体注射提供的病毒转基因表达:体内实时成像研究

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摘要

We delivered adenovirus vector (Ad) via intravitreous injection and monitored transgene (luciferase) expression in living mice (BALB/ c) at multiple time points. In vivo live imaging technology was able to assess dynamically intraocular luciferase expression in a single animal population throughout the entire experiment period. Using this information, we were able to determine the optimal time point for readministration of Ad into the eyes and to dynamically study the time course of expression of a second Ad administration. Optical imaging demonstrated the limited period of transgene expression in eyes. Significant transgene signal was also detected in livers. The repeat intraocular delivery of the adenovirus resulted in significant blunting of transgene expression in both eyes and livers compared to the initial delivery. Periocular corticosteroid (triamcinolone acetonide) injection combined with initial Ad delivery was effective to rescue luciferase expression on repeat Ad vector delivery. However, this effect was not observed when corticosteroid was combined with repeat Ad delivery. Although corticosteroid enhanced ocular transgene expression, it also increased transgene expression in liver, which has potential safety implications. This dynamic transgene expression in eyes was successfully traced and monitored via a live imaging technique.
机译:我们通过玻璃体内注射递送腺病毒载体(Ad),并在多个时间点监测了活小鼠(BALB / c)中的转基因(荧光素酶)表达。体内实时成像技术能够在整个实验期间动态评估单个动物种群中眼内荧光素酶的表达。使用此信息,我们能够确定将Ad重新投放到眼睛中的最佳时间点,并动态研究第二次Ad投放的表达时间过程。光学成像表明在眼睛中转基因表达的时间有限。在肝脏中也检测到重要的转基因信号。与初始递送相比,腺病毒的眼内重复递送导致转基因在眼睛和肝脏中的表达明显减弱。眼周皮质类固醇(醋酸曲安奈德)注射液与最初的Ad输送结合可有效挽救重复Ad载体输送时的萤光素酶表达。但是,当皮质类固醇与重复的Ad递送结合使用时,未观察到这种效果。尽管皮质类固醇增强了眼转基因表达,但它也增加了肝脏中的转基因表达,这具有潜在的安全隐患。通过实时成像技术成功追踪和监测了眼中这种动态转基因表达。

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  • 来源
    《Molecular imaging》 |2012年第5期|p.361-371|共11页
  • 作者单位

    Department of Ophthalmology, Johns Hopkins University,School of Medicine, Baltimore, MD, Department of Ophthalmology,Montefiore Medical Center, Albert Einstein College of Medicine, Bronx,NY, Department of Microbiology and Immunology, Cancer Research Institute, Tumor Immunity Medical Research Center, Seoul National University, College of Medicine, Seoul, South Korea, and Department of Ophthalmology, Dongguk University Ilsan Hospital, Koyang, South Korea;

    Department of Ophthalmology, Johns Hopkins University,School of Medicine, Baltimore, MD, Department of Ophthalmology,Montefiore Medical Center, Albert Einstein College of Medicine, Bronx,NY, Department of Microbiology and Immunology, Cancer Research Institute, Tumor Immunity Medical Research Center, Seoul National University, College of Medicine, Seoul, South Korea, and Department of Ophthalmology, Dongguk University Ilsan Hospital, Koyang, South Korea;

    Department of Ophthalmology, Johns Hopkins University,School of Medicine, Baltimore, MD, Department of Ophthalmology,Montefiore Medical Center, Albert Einstein College of Medicine, Bronx,NY, Department of Microbiology and Immunology, Cancer Research Institute, Tumor Immunity Medical Research Center, Seoul National University, College of Medicine, Seoul, South Korea, and Department of Ophthalmology, Dongguk University Ilsan Hospital, Koyang, South Korea;

    Department of Ophthalmology, Johns Hopkins University,School of Medicine, Baltimore, MD, Department of Ophthalmology,Montefiore Medical Center, Albert Einstein College of Medicine, Bronx,NY, Department of Microbiology and Immunology, Cancer Research Institute, Tumor Immunity Medical Research Center, Seoul National University, College of Medicine, Seoul, South Korea, and Department of Ophthalmology, Dongguk University Ilsan Hospital, Koyang, South Korea MD, Department of Ophthalmology, Dongguk University, Graduate School of Medicine,Dongguk University Ilsan Hospital, 814, Siksadong, Ilsan-dong-gu,Koyang, Kyunggido, South Korea, 410-773;

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  • 入库时间 2022-08-18 00:39:13

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