Walters Brittany N, Whiddon Zachary D, McGee Aaron W, Krimm Robin F
Department of Anatomical Sciences and Neurobiology, University of Louisville School of Medicine, Louisville, KY, United States of America.
Department of Neurobiology, University of California San Diego, La Jolla, California, United States of America.
PLoS One. 2024 Dec 13;19(12):e0309366. doi: 10.1371/journal.pone.0309366. eCollection 2024.
Taste bud cells in the tongue transduce taste information from chemicals in food and transmit this information to gustatory neurons in the geniculate ganglion that innervate taste buds. The peripheral taste system is a dynamic environment where taste bud cells are continuously replaced, but further understanding of this phenomenon has been limited by the inability to directly observe this process. To overcome this challenge, we combined chronic in vivo two-photon laser scanning microscopy with genetic labeling of gustatory neurons and taste buds to observe how cells within the taste bud change over time. This method expands the investigative possibilities beyond those offered by fixed-tissue methods. This method permits direct observation of taste bud cell entry, cell differentiation, cell loss, and arbor plasticity. We demonstrate that a few stains/dyes can be used to observe nuclei and organelles in the taste bud in vivo. We also describe a workflow for reconstructing composite z-stacks with grayscale data of both cells and arbors using ImageJ, Neurolucida 360, and Neurolucida Explorer software. Together, the methodology and software options for analyses presented here provide a novel approach for longitudinally observing taste bud cells and arbors in the taste bud in vivo.
舌中的味蕾细胞将来自食物中化学物质的味觉信息进行转导,并将该信息传递给膝状神经节中支配味蕾的味觉神经元。外周味觉系统是一个动态环境,其中味蕾细胞不断更新,但由于无法直接观察这一过程,对该现象的进一步了解受到了限制。为了克服这一挑战,我们将慢性体内双光子激光扫描显微镜与味觉神经元和味蕾的基因标记相结合,以观察味蕾内的细胞如何随时间变化。这种方法拓展了研究可能性,超越了固定组织方法所能提供的范围。该方法允许直接观察味蕾细胞的进入、细胞分化、细胞丢失和树突可塑性。我们证明,一些染色剂/染料可用于在体内观察味蕾中的细胞核和细胞器。我们还描述了一种使用ImageJ、Neurolucida 360和Neurolucida Explorer软件重建细胞和树突灰度数据的复合z-stack的工作流程。总之,本文介绍的分析方法和软件选项为纵向观察体内味蕾中的味蕾细胞和树突提供了一种新方法。