通过双腺相关病毒载体与Cre重组对神经元进行稀疏和明亮标记的详细方案。

IF 1.7 4区 医学 Q3 ANATOMY & MORPHOLOGY
Megumu Takahashi, Hidenobu Mizuno, Masato Koike, Takuji Iwasato, Hiroyuki Hioki
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引用次数: 0

摘要

腺相关病毒(AAV)载体通过表达荧光蛋白被广泛用于标记单个神经元。为了详细分析神经元形态,实现荧光蛋白的稀疏和强表达对于清晰地观察细胞体、树突和轴突是很重要的。然而,注射高滴度的AAV载体往往会导致过度的细胞标记,而注射低滴度的AAV载体会降低信号强度。在这里,我们提供了一个详细的,一步一步的协议,实现稀疏和明亮的神经元标记使用双AAV载体与Cre重组,基于超新星系统。我们制备了两种类型的AAV载体:一种是驱动载体(AAV2/1-SYN-iCre-BGHpA),在神经元特异性启动子下表达Cre重组酶;另一种是报告载体(AAV2/1-SynTetOff FLEX-GFP),通过翻转切除开关(FLEX)和Tet-Off系统编码GFP。将连续稀释的报告载体和高滴度驱动载体的混合物立体定向注射到小鼠大脑中,标记神经元的数量和GFP的荧光强度呈剂量依赖性下降。相反,稀释驱动载体减少了表达GFP的细胞数量,而GFP的荧光强度仍然很高。此外,该方法被证明可以通过眶后注射AAV2/B10载体进行全身递送。该方案包括全面的试剂清单,逐步注射程序和故障排除提示,允许研究人员通过立体定向和后眼眶注射可重复地实现稀疏和明亮的标记。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A detailed protocol for sparse and bright labeling of neurons via dual adeno-associated virus vectors with Cre recombination.

Adeno-associated virus (AAV) vectors are widely used to label individual neurons by expressing fluorescent proteins. To analyze neuronal morphology in detail, it is important to achieve sparse and strong expression of fluorescent proteins for clearly visualizing cell bodies, dendrites, and axons. However, injections of high-titer AAV vectors often result in excessive cell labeling, while injecting low-titer AAV vectors reduces signal intensity. Here, we provide a detailed, step-by-step protocol for achieving sparse and bright neuronal labeling using dual AAV vectors with Cre recombination, based on the Supernova system. We prepared two types of AAV vectors: one is a driver vector (AAV2/1-SYN-iCre-BGHpA) that expresses Cre recombinase under a neuron-specific promoter, and the other is a reporter vector (AAV2/1-SynTetOff FLEX-GFP) that encodes GFP with a flip-excision switch (FLEX) and the Tet-Off system. When a mixture of a serially diluted reporter vector and a high-titer driver vector was stereotaxically injected into the mouse brain, the number of labeled neurons and the fluorescence intensity of GFP decreased in a dose-dependent manner. Conversely, diluting the driver vector decreased the number of GFP-expressing cells while the fluorescence intensity of GFP remained high. Furthermore, this approach proved effective for systemic delivery via retro-orbital injection of AAV2/B10 vectors. This protocol includes comprehensive reagent lists, stepwise injection procedures, and troubleshooting tips, allowing researchers to reproducibly achieve sparse and bright labeling through both stereotaxic and retro-orbital injections.

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来源期刊
Anatomical Science International
Anatomical Science International 医学-解剖学与形态学
CiteScore
2.80
自引率
8.30%
发文量
50
审稿时长
>12 weeks
期刊介绍: The official English journal of the Japanese Association of Anatomists, Anatomical Science International (formerly titled Kaibogaku Zasshi) publishes original research articles dealing with morphological sciences. Coverage in the journal includes molecular, cellular, histological and gross anatomical studies on humans and on normal and experimental animals, as well as functional morphological, biochemical, physiological and behavioral studies if they include morphological analysis.
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