Dipartimento di Medicina Pubblica Clinica e Preventiva, Seconda Università di Napoli, Napoli, Italy.
Neural Plast. 2012;2012:425818. doi: 10.1155/2012/425818. Epub 2012 Oct 2.
Astrocytic Ca(2+) dynamics have been extensively studied in ex vivo models; however, the recent development of two-photon microscopy and astrocyte-specific labeling has allowed the study of Ca(2+) signaling in living central nervous system. Ca(2+) waves in astrocytes have been described in cultured cells and slice preparations, but evidence for astrocytic activation during sensory activity is lacking. There are currently few methods to image living spinal cord: breathing and heart-beating artifacts have impeded the widespread application of this technique. We here imaged the living spinal cord by two-photon microscopy in C57BL6/J mice. Through pressurized injection, we specifically loaded spinal astrocytes using the red fluorescent dye sulforhodamine 101 (SR101) and imaged astrocytic Ca(2+) levels with Oregon-Green BAPTA-1 (OGB). Then, we studied astrocytic Ca(2+) levels at rest and after right electrical hind paw stimulation. Sensory stimulation significantly increased astrocytic Ca(2+) levels within the superficial dorsal horn of the spinal cord compared to rest. In conclusion, in vivo morphofunctional imaging of living astrocytes in spinal cord revealed that astrocytes actively participate to sensory stimulation.
星形细胞 Ca(2+)动力学在离体模型中得到了广泛研究;然而,双光子显微镜和星形细胞特异性标记的最新发展使得在活体中枢神经系统中研究 Ca(2+)信号成为可能。星形细胞中的 Ca(2+)波在培养细胞和切片中得到了描述,但缺乏在感觉活动期间星形细胞激活的证据。目前有几种方法可以对活体脊髓进行成像:呼吸和心跳伪影阻碍了这项技术的广泛应用。我们在这里通过 C57BL6/J 小鼠的双光子显微镜对活体脊髓进行成像。通过加压注射,我们使用红色荧光染料 sulforhodamine 101(SR101)特异性地加载脊髓星形细胞,并使用 Oregon-Green BAPTA-1(OGB)来成像星形细胞 Ca(2+)水平。然后,我们研究了休息和右后爪电刺激后星形细胞 Ca(2+)水平。与休息相比,感觉刺激显著增加了脊髓浅层背角中的星形细胞 Ca(2+)水平。总之,活体脊髓中星形细胞的形态功能成像表明,星形细胞积极参与感觉刺激。