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超高分辨率小鼠光学相干断层扫描技术辅助视网膜基因治疗研究中的眼内注射

Ultrahigh Resolution Mouse Optical Coherence Tomography to Aid Intraocular Injection in Retinal Gene Therapy Research.

作者信息

Butler Mark C, Sullivan Jack M

机构信息

Research Service, VA Western New York Healthcare System; Department of Ophthalmology, (Ross Eye Institute), Jacobs School of Medicine and Biomedical Sciences, University at Buffalo- SUNY.

Research Service, VA Western New York Healthcare System; Department of Ophthalmology, (Ross Eye Institute), Jacobs School of Medicine and Biomedical Sciences, University at Buffalo- SUNY; Pharmacology/Toxicology, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo- SUNY; Physiology/Biophysics, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo- SUNY; Neuroscience Program, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo- SUNY; The RNA Institute, University at Buffalo- SUNY; The SUNY Eye Institute;

出版信息

J Vis Exp. 2018 Nov 2(141). doi: 10.3791/55894.

Abstract

HR-SD-OCT is utilized to monitor the progression of photoreceptor degeneration in live mouse models, assess the delivery of therapeutic agents into the subretinal space, and to evaluate toxicity and efficacy in vivo. HR-SD-OCT uses near infrared light (800-880 nm) and has optics specifically designed for the unique optics of the mouse eye with sub-2-micron axial resolution. Transgenic mouse models of outer retinal (photoreceptor) degeneration and controls were imaged to assess the disease progression. Pulled glass microneedles were used to deliver sub retinal injections of adeno-associated virus (AAV) or nanoparticles (NP) via a trans-scleral and trans-choroidal approach. Careful positioning of the needle into the subretinal space was required prior to a calibrated pressure injection, which delivers fluid into the sub retinal space. Real time subretinal surgery was conducted on our retinal imaging system (RIS). HR-SD-OCT demonstrated progressive uniform retinal degeneration due to expression of a toxic mutant human mutant rhodopsin (P347S) (RHO) transgene in mice. HR-SD-OCT allows rigorous quantification of all the retinal layers. Outer nuclear layer (ONL) thickness and photoreceptor outer segment length (OSL) measurements correlate with photoreceptor vitality, degeneration, or rescue. The RIS delivery system allows real-time visualization of subretinal injections in neonatal (~P10-14) or adult mice, and HR-SD-OCT immediately determines success of delivery and maps areal extent. HR-SD-OCT is a powerful tool that can evaluate the success of subretinal surgery in mice, in addition to measuring vitality of photoreceptors in vivo. HR-SD-OCT can also be used to identify uniform animal cohorts to evaluate the extent of retinal degeneration, toxicity, and therapeutic rescue in preclinical gene therapy research studies.

摘要

高分辨率光谱域光学相干断层扫描(HR-SD-OCT)用于监测活体小鼠模型中光感受器变性的进展,评估治疗药物向视网膜下间隙的递送情况,并在体内评估毒性和疗效。HR-SD-OCT使用近红外光(800-880纳米),其光学系统是专门为具有亚2微米轴向分辨率的小鼠眼睛的独特光学特性而设计的。对视网膜外层(光感受器)变性的转基因小鼠模型和对照进行成像,以评估疾病进展。使用拉制的玻璃微针通过经巩膜和经脉络膜途径进行视网膜下注射腺相关病毒(AAV)或纳米颗粒(NP)。在进行校准压力注射之前,需要将针小心地定位到视网膜下间隙,校准压力注射将液体输送到视网膜下间隙。在我们的视网膜成像系统(RIS)上进行实时视网膜下手术。HR-SD-OCT显示,由于小鼠中有毒突变型人视紫红质(P347S)(RHO)转基因的表达,视网膜出现进行性均匀变性。HR-SD-OCT允许对所有视网膜层进行精确量化。外核层(ONL)厚度和光感受器外段长度(OSL)测量与光感受器活力、变性或挽救相关。RIS递送系统允许在新生(约P10-14)或成年小鼠中实时观察视网膜下注射情况,并且HR-SD-OCT可立即确定递送是否成功并绘制面积范围图。HR-SD-OCT是一种强大的工具,除了在体内测量光感受器活力外,还可以评估小鼠视网膜下手术的成功率。HR-SD-OCT还可用于识别均匀的动物群体,以评估临床前基因治疗研究中视网膜变性的程度、毒性和治疗挽救情况。

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A Novel, Real-Time, In Vivo Mouse Retinal Imaging System.一种新型的实时活体小鼠视网膜成像系统。
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