Astrocytes perinuclear zone is an intracellular region of great interest for its role in calcium intracellular dynamics regulation. Indeed IP3R and SERCA molecules, located on the membrane of the Endoplasmic Reticulum (ER) in the perinuclear region, show a clustering self-organizing capacity that influences intracellular calcium signaling. IP3Rs and SERCA pumps have respectively the role to release cal-cium ions into the cytoplasm and segregate them into the ER. In this work astrocytes fluorescence recordings were acquired with a confocal microscope and calcium activity was stimu-lated by the use of ionomycin. A fluorescence image processing method to study the organization, localization and dimension of these molecular clusters was develop...
For the analysis of Ca(2+)-dependent signaling, acetoxymethyl (AM)-derivatized ion indicators have b...
Ca(2+) signaling is the astrocyte form of excitability and the endoplasmic reticulum (ER) plays an i...
Our understanding of the role of astrocytes in the brain has been completely overturned in the last ...
Astrocytes perinuclear zone is an intracellular region of great interest for its role in calcium int...
Calcium (Ca 2+) waves and Ca 2+ oscillations within cells initiate a wide range of physiological pro...
The endoplasmic reticulum (ER) is a complex and highly dynamic three-dimensional intracellular membr...
Endoplasmic reticulum calcium homeostasis is critical for cellular functions and is disrupted in div...
The brain contains glial cells. Astrocytes, a type of glial cell, have long been known to provide a ...
<div><p>Endoplasmic reticulum calcium homeostasis is critical for cellular functions and is disrupte...
Intracellular Ca(2+) transients are considered a primary signal by which astrocytes interact with ne...
<p><b>A</b>) Two-photon fluorescence images of brain slices taken from GLAST-Cre LSL-GCaMP3 mice. Th...
Modern biological research has benefited from a renaissance in light microscopy, brought about by th...
The microenvironment has been shown to regulate cellular functions including cell growth, differenti...
Capítulo 17.-- Editores: Preston B. Rich; Christelle Douillet.-- El pdf es la versión pre-print.Ca2+...
With the development of calcium-sensitive fluorescent dyes and videomicroscopic imaging, several inv...
For the analysis of Ca(2+)-dependent signaling, acetoxymethyl (AM)-derivatized ion indicators have b...
Ca(2+) signaling is the astrocyte form of excitability and the endoplasmic reticulum (ER) plays an i...
Our understanding of the role of astrocytes in the brain has been completely overturned in the last ...
Astrocytes perinuclear zone is an intracellular region of great interest for its role in calcium int...
Calcium (Ca 2+) waves and Ca 2+ oscillations within cells initiate a wide range of physiological pro...
The endoplasmic reticulum (ER) is a complex and highly dynamic three-dimensional intracellular membr...
Endoplasmic reticulum calcium homeostasis is critical for cellular functions and is disrupted in div...
The brain contains glial cells. Astrocytes, a type of glial cell, have long been known to provide a ...
<div><p>Endoplasmic reticulum calcium homeostasis is critical for cellular functions and is disrupte...
Intracellular Ca(2+) transients are considered a primary signal by which astrocytes interact with ne...
<p><b>A</b>) Two-photon fluorescence images of brain slices taken from GLAST-Cre LSL-GCaMP3 mice. Th...
Modern biological research has benefited from a renaissance in light microscopy, brought about by th...
The microenvironment has been shown to regulate cellular functions including cell growth, differenti...
Capítulo 17.-- Editores: Preston B. Rich; Christelle Douillet.-- El pdf es la versión pre-print.Ca2+...
With the development of calcium-sensitive fluorescent dyes and videomicroscopic imaging, several inv...
For the analysis of Ca(2+)-dependent signaling, acetoxymethyl (AM)-derivatized ion indicators have b...
Ca(2+) signaling is the astrocyte form of excitability and the endoplasmic reticulum (ER) plays an i...
Our understanding of the role of astrocytes in the brain has been completely overturned in the last ...