Suppr超能文献

用逆行示踪剂标记心脏和心脏培养物的实验数据以及。 (原文表述似乎不完整)

Experimental data of labeling the heart and cardiac cultures with a retrograde tracer and .

作者信息

Akgul Caglar Tuba, Gunal Mehmet Yalcin, Turhan Mehmet Ugurcan, Ozturk Gurkan, Cagavi Esra

机构信息

Regenerative and Restorative Medicine Research Center (REMER), Research Institute for Health Sciences and Technologies (SABITA), Istanbul Medipol University, Istanbul, Turkey.

Neuroscience Program, Institute of Health Sciences, Istanbul Medipol University, Istanbul, Turkey.

出版信息

Data Brief. 2021 Feb 4;35:106834. doi: 10.1016/j.dib.2021.106834. eCollection 2021 Apr.

Abstract

Retrograde dyes are often used in basic research to investigate neuronal innervations of an organ. This article describes the experimental data on the application of retrograde dyes on the mouse heart  and on the cardiac or neuronal cultures  By providing this information, cardiac or inneinnervations can be evaluated . Therefore, unknown cellular and molecular mechanisms and systemic interactions in the body can be investigated. In particular, we provided practical tips to lower mortality risks following the cardiac surgery and evaluated the staining capacity and fluorescent characteristics of the Di-8-ANEPPQ dye in the cardiac tissue and cell cultures. First, primary cultures of mouse nodose ganglia (NG) neurons and mouse neonatal cardiomyocytes were stained with Di-8-ANEPPQ. The Di-8-ANEPPQ signal from live cultures were visualized using spinning disk confocal microscopy to verify the lipophilic and fluorescent labeling capacity of Di-8-ANEPPQ. Next, the excitation and emission data of Di-8-ANEPPQ were collected between 415 nm and 690 nm using power spectrum module of confocal microscopy. This spectrum analysis could be useful for the researchers who plan to use Di-8-ANEPPQ in combination with other fluorescent dyes to eliminate any florescent overlap. In order to label the heart tissue with tracer dyes Di-8-ANEPPQ or DiI , the heart was exposed without damaging lungs or other tissues following anesthetization, then the retrograde dye was applied as a paste for DiI or injected to the apex of the heart for Di-8-ANEPPQ and the operation area was sutured. The surgical procedure required intubation to control the respiratory reflex without the need to perform a tracheotomy and yielded high viability. Following labeling the heart , the heart was dissected, and images of injection area were captured using confocal microscopy. All fluorescent images of Di-8-ANEPPQ labeled cells were analyzed by using the Fiji software. Overall, these data provide applicable data to other investigators to trace the sensory neurons innervating not only the heart but also other organs using Di-8-ANEPPQ. These data support the original research article titled "Evaluation of bilateral cardiac afferent distribution at the spinal and vagal ganglia by retrograde labeling" that was accepted for publication in Brain Research Journal [1].

摘要

逆行染料常用于基础研究,以探究器官的神经支配情况。本文描述了在小鼠心脏以及心脏或神经元培养物上应用逆行染料的实验数据。通过提供这些信息,可以评估心脏的神经支配情况。因此,可以研究体内未知的细胞和分子机制以及系统相互作用。特别是,我们提供了降低心脏手术后死亡风险的实用技巧,并评估了Di-8-ANEPPQ染料在心脏组织和细胞培养物中的染色能力和荧光特性。首先,用Di-8-ANEPPQ对小鼠结状神经节(NG)神经元和小鼠新生心肌细胞的原代培养物进行染色。使用转盘共聚焦显微镜观察活培养物中的Di-8-ANEPPQ信号,以验证Di-8-ANEPPQ的亲脂性和荧光标记能力。接下来,使用共聚焦显微镜的功率谱模块在415nm至690nm之间收集Di-8-ANEPPQ的激发和发射数据。这种光谱分析对于计划将Di-8-ANEPPQ与其他荧光染料结合使用以消除任何荧光重叠的研究人员可能有用。为了用示踪染料Di-8-ANEPPQ或DiI标记心脏组织,在麻醉后暴露心脏而不损伤肺或其他组织,然后将逆行染料以DiI糊剂的形式应用或注射到心脏尖部用于Di-8-ANEPPQ,然后缝合手术区域。手术过程需要插管以控制呼吸反射,无需进行气管切开术,并且具有较高的存活率。在标记心脏后,解剖心脏,并使用共聚焦显微镜拍摄注射区域的图像。使用Fiji软件分析Di-8-ANEPPQ标记细胞的所有荧光图像。总体而言,这些数据为其他研究人员提供了适用的数据,以便使用Di-8-ANEPPQ追踪不仅支配心脏而且支配其他器官的感觉神经元。这些数据支持了题为“通过逆行标记评估脊髓和迷走神经节的双侧心脏传入分布”的原始研究文章,该文章已被《脑研究杂志》[1]接受发表。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e575/7960933/280ceb3715ca/gr1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验