AbstractAlthough store-operated calcium entry (SOCE) has been implicated in several neurological disorders, the exact mechanism for its role in traumatic brain injury (TBI) has not been elucidated. In this study, we found that TBI upregulated the expression of a calcium sensor protein called stromal interactive molecule 2 (STIM2); however, the levels of its homologue, STIM1, were unaffected. Both STIM1 and STIM2 are crucial components of SOCE, both in vivo and in vitro. Using shRNA, we discovered that downregulation of STIM2, but not STIM1, significantly improved neuronal survival in both an in vitro and in vivo model of TBI, decreasing neuronal apoptosis, and preserving neurological function. This neuroprotection was associated with allevi...
Traumatic brain injury (TBI) is a serious healthcare problem in the United States, with more than 40...
There is significant interest in the field of neuroscience to gain a better understanding of how neu...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...
AbstractAlthough store-operated calcium entry (SOCE) has been implicated in several neurological dis...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
Neuronal calcium (Ca2+) influx has long been ascribed mainly to voltage-gated Ca2+ channels and glut...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
Cell death and dysfunction after traumatic brain injury (TBI) is caused by a primary phase, related ...
In vitro models of traumatic brain injury (TBI) help to elucidate the pathological mechanisms respon...
A fundamental mechanism that is believed to contribute to neuronal injury and death following trauma...
Store-operated Ca2+-entry (SOCE) regulates basal and receptor-triggered Ca2+ signaling with STIM pro...
A fundamental mechanism that is believed to contribute to neuronal injury and death following trauma...
Traumatic brain injury (TBI) is brain damage due to external forces. Mild TBI (mTBI) is the most com...
Located at the level of the endoplasmic reticulum (ER) membrane, stromal interacting molecule 1 (STI...
Physiological Ca2+ signals are essential for cell function and survival. On the other hand, perturba...
Traumatic brain injury (TBI) is a serious healthcare problem in the United States, with more than 40...
There is significant interest in the field of neuroscience to gain a better understanding of how neu...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...
AbstractAlthough store-operated calcium entry (SOCE) has been implicated in several neurological dis...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
Neuronal calcium (Ca2+) influx has long been ascribed mainly to voltage-gated Ca2+ channels and glut...
In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integra...
Cell death and dysfunction after traumatic brain injury (TBI) is caused by a primary phase, related ...
In vitro models of traumatic brain injury (TBI) help to elucidate the pathological mechanisms respon...
A fundamental mechanism that is believed to contribute to neuronal injury and death following trauma...
Store-operated Ca2+-entry (SOCE) regulates basal and receptor-triggered Ca2+ signaling with STIM pro...
A fundamental mechanism that is believed to contribute to neuronal injury and death following trauma...
Traumatic brain injury (TBI) is brain damage due to external forces. Mild TBI (mTBI) is the most com...
Located at the level of the endoplasmic reticulum (ER) membrane, stromal interacting molecule 1 (STI...
Physiological Ca2+ signals are essential for cell function and survival. On the other hand, perturba...
Traumatic brain injury (TBI) is a serious healthcare problem in the United States, with more than 40...
There is significant interest in the field of neuroscience to gain a better understanding of how neu...
The high efficiency of the neuronal calcium signaling depends on the calcium distribution in intrace...