review article | Q7318358 |
scholarly article | Q13442814 |
P356 | DOI | 10.1002/JNR.490270302 |
P698 | PubMed publication ID | 2097376 |
P2093 | author name string | Brown IR | |
P2860 | cites work | Structure and expression of the human gene encoding major heat shock protein HSP70 | Q24618389 |
Cell damage in the brain: a speculative synthesis | Q34253066 | ||
Complex regulation of heat shock- and glucose-responsive genes in human cells | Q36781017 | ||
Changes in chromatin and the phosphorylation of nuclear proteins during heat shock of Achlya ambisexualis | Q40675346 | ||
The relationship of the rat brain 68 kDa microtubule-associated protein with synaptosomal plasma membranes and with the Drosophila 70 kDa heat-shock protein | Q42021438 | ||
Members of the 70-kilodalton heat shock protein family contain a highly conserved calmodulin-binding domain | Q43183832 | ||
Protein synthesis in postischemic rat brain: a two-dimensional electrophoretic analysis | Q44781078 | ||
Synthesis of heat shock proteins in rat brain cortex after transient ischemia | Q48315061 | ||
Selective gene expression in focal cerebral ischemia | Q48337421 | ||
P433 | issue | 3 | |
P921 | main subject | traumatic stress | Q16920843 |
P304 | page(s) | 247-255 | |
P577 | publication date | 1990-11-01 | |
P1433 | published in | Journal of Neuroscience Research | Q6295654 |
P1476 | title | Induction of heat shock (stress) genes in the mammalian brain by hyperthermia and other traumatic events: a current perspective | |
P478 | volume | 27 |
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Q40825878 | A new perspective on ischemic brain damage? |
Q35543649 | A review of heat shock protein induction following cerebellar injury |
Q34373006 | A role of Hsp60 in autoimmune diabetes: analysis in a transgenic model. |
Q95802226 | Adipose tissue-specific responses reveal an important role of lipogenesis during heat stress adaptation in pigs |
Q88265090 | Adipose tissue-specific responses reveal an important role of lipogenesis during heat stress adaptation in pigs1 |
Q48103035 | Alterations in tau immunostaining in the rat hippocampus following transient cerebral ischemia |
Q40912523 | Basic mechanisms of traumatic brain damage |
Q40631590 | Cell specific expression of Hsp70 in neurons and glia of the rat hippocampus after hyperthermia and kainic acid-induced seizure activity |
Q48271384 | Cellular localization of the heat shock transcription factors HSF1 and HSF2 in the rat brain during postnatal development and following hyperthermia |
Q36889467 | Cerebral neurons and glial cell types inducing heat shock protein Hsp70 following heat stress in the rat. |
Q47991885 | Chaperone suppression of aggregation and altered subcellular proteasome localization imply protein misfolding in SCA1. |
Q46921359 | Commentary on: Johnson MM, David JA, Michelhaugh SK, Schmidt CJ, Bannon MJ. Increased heat shock protein 70 gene expression in the brains of cocaine-related fatalities may be reflective of postdrug survival and intervention rather than excited delir |
Q72030725 | Constitutive and inducible expression of heat shock protein HSP72 in oligodendrocytes in culture |
Q46019467 | DNA fragmentation and HSP70 protein induction in hippocampus and cortex occurs in separate neurons following permanent middle cerebral artery occlusions. |
Q35742134 | Deficient induction of human hsp70 heat shock gene transcription in Y79 retinoblastoma cells despite activation of heat shock factor 1. |
Q28576964 | Differential expression of heat shock 70 proteins in primary cultures from rat cerebellum |
Q40651729 | Differential induction of heat shock mRNA in oligodendrocytes, microglia, and astrocytes following hyperthermia |
Q40740530 | Distribution of 72-kDa heat-shock protein in rat brain after hyperthermia |
Q40733053 | Distribution of constitutive- and hyperthermia-inducible heat shock mRNA species (hsp70) in the Purkinje layer of the rabbit cerebellum |
Q40672668 | Expression of mRNA species encoding heat shock protein 90 (hsp90) in control and hyperthermic rabbit brain |
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Q51092606 | Increased heat shock protein expression after stress in Japanese quail. |
Q36373576 | Induction and phosphorylation of the small heat shock proteins HspB1/Hsp25 and HspB5/αB-crystallin in the rat retina upon optic nerve injury |
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Q39132858 | Nerve and skin damage in leprosy is associated with increased intralesional heat shock protein |
Q48547219 | Neural overexcitation and implication of NMDA and AMPA receptors in a mouse model of temporal lobe epilepsy implying zinc chelation |
Q34320194 | Neuronal vacuole formation in the rat posterior cingulate/retrosplenial cortex after treatment with the N-methyl-D-aspartate (NMDA) antagonist MK-801 (dizocilpine maleate). |
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Q37533031 | Rapid induction of heme oxygenase 1 mRNA and protein by hyperthermia in rat brain: heme oxygenase 2 is not a heat shock protein |
Q48367716 | Relationships between stress protein induction and NMDA-mediated neuronal death in the entorhinal cortex. |
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Q48338015 | Role of heat shock protein Hsp25 in the response of the orofacial nuclei motor system to physiological stress |
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Q72330779 | Selective postmortem degradation of inducible heat shock protein 70 (hsp70) mRNAs in rat brain |
Q39958544 | Spatial analysis of cell death and Hsp70 induction in brain, thymus, and bone marrow of the hyperthermic rat. |
Q40825906 | Stress protein and proto-oncogene expression as indicators of neuronal pathophysiology after ischemia. |
Q44865790 | Stress protein synthesis and accumulation after traumatic injury of crayfish CNS. |
Q40371871 | Stress proteins: their role in the normal central nervous system and in disease states, especially multiple sclerosis |
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Q36349784 | The analysis of viability for mammalian cells treated at different temperatures and its application in cell shipment |
Q35083617 | The distribution of heat shock proteins in the nervous system of the unstressed mouse embryo suggests a role in neuronal and non-neuronal differentiation |
Q37489976 | The effect of hyperthermia on the induction of cell death in brain, testis, and thymus of the adult and developing rat. |
Q41491290 | The heat shock stress response after brain lesions: induction of 72 kDa heat shock protein (cell types involved, axonal transport, transcriptional regulation) and protein synthesis inhibition |
Q28261448 | The newly synthesized pool of dopamine determines the severity of methamphetamine-induced neurotoxicity |
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