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载体递送技术影响体内角膜中的基因转移。

Vector delivery technique affects gene transfer in the cornea in vivo.

作者信息

Mohan Rajiv R, Sharma Ajay, Cebulko Tyler C, Tandon Ashish

机构信息

Mason Eye Institute, School of Medicine, Department of Ophthalmology, College of Veterinary Medicine, University of Missouri, and Ophthalmology Research, Harry S. Truman Memorial Veterans' Hospital, Columbia, MO 65212, USA.

出版信息

Mol Vis. 2010 Nov 27;16:2494-501.

Abstract

PURPOSE

This study tested whether controlled drying of the cornea increases vector absorption in mouse and rabbit corneas in vivo and human cornea ex vivo, and studied the effects of corneal drying on gene transfer, structure and inflammatory reaction in the mouse cornea in vivo.

METHODS

Female C57 black mice and New Zealand White rabbits were used for in vivo studies. Donor human corneas were used for ex vivo experiments. A hair dryer was used for drying the corneas after removing corneal epithelium by gentle scraping. The corneas received no, once, twice, thrice, or five times warm air for 10 s with a 5 s interval after each 10 s hair dryer application. Thereafter, balanced salt solution (BSS) was topically applied immediately on the cornea for 2 min using a custom-cloning cylinder. The absorbed BSS was quantified using Hamilton microsyringes. The adeno-associated virus 8 (AAV8) vector (1.1×10(8) genomic copies/µl) expressing marker gene was used to study the effect of corneal drying on gene transfer. Animals were sacrificed on day 14 and gene expression was analyzed using commercial staining kit. Morphological changes and infiltration of inflammatory cells were examined with H & E staining and immunocytochemistry.

RESULTS

Mice, rabbit or human corneas subjected to no or 10 s drying showed 6%-8% BSS absorption whereas 20, 30, or 50 s corneal drying showed significantly high 14%-19% (p<0.001), 21%-22% (p<0.001), and 25%-27% (p<0.001) BSS absorption, respectively. The AAV8 application on mouse cornea after 50 s drying showed significantly higher transgene delivery (p<0.05) in vivo with mild-to-moderate changes in corneal morphology. The 30 s of drying also showed significantly (p<0.05) high transgene delivery in mouse stroma in vivo without jeopardizing corneal morphology whereas 10 or 20 s drying showed moderate degree of gene transfer with no altered corneal morphology. Corneas that underwent 50 s drying showed high CD11b-positive cells (p<0.01) compared to control corneas whereas 20 or 30 s air-dried corneas showed insignificant CD11b-positive cells compared to control corneas.

CONCLUSIONS

Controlled corneal drying with hair dryer increases vector absorption significantly. The dispensing of efficacious AAV serotype into cornea with optimized minimally invasive topical application technique could provide high and targeted expression of therapeutic genes in the stroma in vivo without causing significant side effects.

摘要

目的

本研究检测了在小鼠和兔的体内角膜以及人离体角膜中,角膜的可控干燥是否会增加载体吸收,并研究了角膜干燥对小鼠体内角膜基因转移、结构和炎症反应的影响。

方法

雌性C57黑小鼠和新西兰白兔用于体内研究。供体人角膜用于离体实验。通过轻轻刮除角膜上皮后,使用吹风机干燥角膜。角膜分别接受0次、1次、2次、3次或5次热风处理,每次吹风机处理10秒,每次处理后间隔5秒。此后,立即使用定制克隆柱在角膜上局部应用平衡盐溶液(BSS)2分钟。使用汉密尔顿微量注射器对吸收的BSS进行定量。使用表达标记基因的腺相关病毒8(AAV8)载体(1.1×10⁸基因组拷贝/微升)来研究角膜干燥对基因转移的影响。在第14天处死动物,并使用商业染色试剂盒分析基因表达。用苏木精和伊红染色以及免疫细胞化学检查形态学变化和炎性细胞浸润。

结果

未干燥或干燥10秒的小鼠、兔或人角膜显示BSS吸收为6%-8%,而角膜干燥20秒、30秒或50秒分别显示BSS吸收显著升高,为14%-19%(p<0.001)、21%-22%(p<0.001)和25%-27%(p<0.001)。在50秒干燥后将AAV8应用于小鼠角膜,在体内显示出显著更高的转基因递送(p<0.05),角膜形态有轻度至中度变化。30秒干燥在小鼠基质体内也显示出显著(p<0.05)高的转基因递送,且不损害角膜形态,而10秒或20秒干燥显示出中等程度的基因转移,角膜形态无改变。与对照角膜相比,经历50秒干燥的角膜显示CD11b阳性细胞较高(p<0.01),而与对照角膜相比,20秒或30秒风干的角膜显示CD11b阳性细胞不显著。

结论

用吹风机进行可控的角膜干燥可显著增加载体吸收。采用优化的微创局部应用技术将有效的AAV血清型递送至角膜,可在体内基质中提供治疗性基因的高靶向表达,且不会引起明显的副作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a5e/2997332/ec69efaa35d7/mv-v16-2494-f1.jpg

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