Two‐Photon Imaging of Astrocytic Ca2+ Signaling and the Microvasculature in Experimental Mice Models of Alzheimer's Disease
暂无分享,去创建一个
Takahiro Takano | Maiken Nedergaard | Berislav Zlokovic | Xiaoning Han | T. Takano | Xiaoning Han | M. Nedergaard | R. Deane | B. Zlokovic | Rashid Deane
[1] T. Takano,et al. Astrocytic Ca2+ signaling evoked by sensory stimulation in vivo , 2006, Nature Neuroscience.
[2] D. Dickstein,et al. Blood—Brain Barrier Permeability Precedes Senile Plaque Formation in an Alzheimer Disease Model , 2003 .
[3] W. Gan,et al. ATP mediates rapid microglial response to local brain injury in vivo , 2005, Nature Neuroscience.
[4] Don L. Armstrong,et al. Role of the MEOX2 homeobox gene in neurovascular dysfunction in Alzheimer disease , 2005, Nature Medicine.
[5] C. Iadecola. Neurovascular regulation in the normal brain and in Alzheimer's disease , 2004, Nature Reviews Neuroscience.
[6] S. Greenberg,et al. Pathogenic effects of D23N Iowa mutant amyloid beta -protein. , 2001, The Journal of biological chemistry.
[7] A. Verkhratsky,et al. Glial calcium: homeostasis and signaling function. , 1998, Physiological reviews.
[8] B. MacVicar,et al. Calcium transients in astrocyte endfeet cause cerebrovascular constrictions , 2004, Nature.
[9] P. Hof,et al. The nature and effects of cortical microvascular pathology in aging and Alzheimer's disease , 2004, Neurological research.
[10] S. Finkbeiner,et al. Ca2+ waves in astrocytes. , 1991, Cell calcium.
[11] P. Luiten,et al. Cerebral microvascular pathology in aging and Alzheimer's disease , 2001, Progress in Neurobiology.
[12] G. Feng,et al. Imaging Neuronal Subsets in Transgenic Mice Expressing Multiple Spectral Variants of GFP , 2000, Neuron.
[13] R. Deane,et al. Early-onset and Robust Cerebral Microvascular Accumulation of Amyloid β-Protein in Transgenic Mice Expressing Low Levels of a Vasculotropic Dutch/Iowa Mutant Form of Amyloid β-Protein Precursor* , 2004, Journal of Biological Chemistry.
[14] M. C. Angulo,et al. Neuron-to-astrocyte signaling is central to the dynamic control of brain microcirculation , 2003, Nature Neuroscience.
[15] S. Greenberg,et al. Pathogenic Effects of D23N Iowa Mutant Amyloid β-Protein* , 2001, The Journal of Biological Chemistry.
[16] M. Mattson,et al. Triple-Transgenic Model of Alzheimer's Disease with Plaques and Tangles Intracellular Aβ and Synaptic Dysfunction , 2003, Neuron.
[17] A. Fine,et al. Live astrocytes visualized by green fluorescent protein in transgenic mice. , 1997, Developmental biology.
[18] J. Meldolesi,et al. Astrocytes, from brain glue to communication elements: the revolution continues , 2005, Nature Reviews Neuroscience.
[19] T. Takano,et al. Signaling at the Gliovascular Interface , 2003, The Journal of Neuroscience.
[20] Berislav V. Zlokovic,et al. Neurovascular mechanisms of Alzheimer's neurodegeneration , 2005, Trends in Neurosciences.
[21] T. Takano,et al. Astrocyte-mediated control of cerebral blood flow , 2006, Nature Neuroscience.
[22] S. Finkbeiner,et al. Glutamate induces calcium waves in cultured astrocytes: long-range glial signaling. , 1990, Science.
[23] M. Sanderson,et al. Intercellular calcium waves mediated by inositol trisphosphate. , 2007, Ciba Foundation symposium.
[24] Maiken Nedergaard,et al. Astrocyte-mediated control of cerebral microcirculation , 2003, Trends in Neurosciences.
[25] A. Araque,et al. Tripartite synapses: glia, the unacknowledged partner , 1999, Trends in Neurosciences.
[26] S. Younkin,et al. Correlative Memory Deficits, Aβ Elevation, and Amyloid Plaques in Transgenic Mice , 1996, Science.
[27] F. Helmchen,et al. Resting Microglial Cells Are Highly Dynamic Surveillants of Brain Parenchyma in Vivo , 2005, Science.