Shaalan Abeer Kamal, Carpenter Guy, Proctor Gordon
Mucosal and Salivary Biology Division, Dental Institute, King's College London, Guy's Hospital, Floor 17, Tower Wing, London SE1 9 RT, UK.
J Biol Methods. 2017 Jul 17;4(3):e74. doi: 10.14440/jbm.2017.180. eCollection 2017.
Calcium ions (Ca) impact nearly every aspect of cellular life and intracellular calcium [Ca] is a critical factor in the regulation of a plethora of physiological functions, including: muscle contraction, saliva secretion, metabolism, gene expression, cell survival and death. By measuring the changes of [Ca] levels, critical physiologic functions can be characterized and aberrant pathologic conditions or drug responses can be efficiently monitored. We developed a protocol for assessment of Ca signaling in the acinar units of submandibular glands isolated from C57BL/6 mice, using benchtop, multi-mode, high throughput plate reader (FlexStation 3). This method represents a powerful tool for unlimited studies to monitor changes in receptor-mediated Ca responses while retaining functional and morphological features of a native setting.
钙离子(Ca)几乎影响细胞生命的方方面面,细胞内钙浓度([Ca])是众多生理功能调节中的关键因素,这些生理功能包括:肌肉收缩、唾液分泌、新陈代谢、基因表达、细胞存活与死亡。通过测量[Ca]水平的变化,可以表征关键生理功能,并能有效监测异常病理状况或药物反应。我们开发了一种方案,用于评估从C57BL/6小鼠分离的下颌下腺腺泡单位中的钙信号,该方案使用台式多模式高通量酶标仪(FlexStation 3)。这种方法是一种强大的工具,可用于进行大量研究,以监测受体介导的钙反应变化,同时保留天然环境的功能和形态特征。