Regulation of aquaporin-4 in a traumatic brain injury model in rats (original) (raw)
Allen AR: Surgery of experimental lesion of spinal cord equivalent to crush injury of fracture dislocation of spinal column. JAMA 57:878–880, 1911 Allen AR: Surgery of experimental lesion of spinal cord equivalent to crush injury of fracture dislocation of spinal column. **JAMA 57:**878–880, 1911
PubMed Allen AR: Surgery of experimental lesion of spinal cord equivalent to crush injury of fracture dislocation of spinal column. JAMA 57: 878– 880, 1911 Allen AR: Surgery of experimental lesion of spinal cord equivalent to crush injury of fracture dislocation of spinal column. JAMA 57:878–880, 1911 )| false
Barzo P, , Marmarou A, & Fatouros P, et al: Contribution of vasogenic and cellular edema to traumatic brain swelling measured by diffusion-weighted imaging. J Neurosurg 87:900–907, 1997 Barzo P, Marmarou A, Fatouros P, et al: Contribution of vasogenic and cellular edema to traumatic brain swelling measured by diffusion-weighted imaging. **J Neurosurg 87:**900–907, 1997
PubMed Barzo P, Marmarou A, Fatouros P, et al: Contribution of vasogenic and cellular edema to traumatic brain swelling measured by diffusion-weighted imaging. J Neurosurg 87: 900– 907, 1997 Barzo P, Marmarou A, Fatouros P, et al: Contribution of vasogenic and cellular edema to traumatic brain swelling measured by diffusion-weighted imaging. J Neurosurg 87:900–907, 1997 10.3171/jns.1997.87.6.0900 )| false
Baskaya MK, , Dogan A, & Temiz C, et al: Application of 2,3,5-triphenyltetrazolium chloride staining to evaluate injury volume after controlled cortical impact brain injury: role of brain edema in evolution of injury volume. J Neurotrauma 17:93–99, 2000 Baskaya MK, Dogan A, Temiz C, et al: Application of 2,3,5-triphenyltetrazolium chloride staining to evaluate injury volume after controlled cortical impact brain injury: role of brain edema in evolution of injury volume. **J Neurotrauma 17:**93–99, 2000
PubMed Baskaya MK, Dogan A, Temiz C, et al: Application of 2,3,5-triphenyltetrazolium chloride staining to evaluate injury volume after controlled cortical impact brain injury: role of brain edema in evolution of injury volume. J Neurotrauma 17: 93– 99, 2000 Baskaya MK, Dogan A, Temiz C, et al: Application of 2,3,5-triphenyltetrazolium chloride staining to evaluate injury volume after controlled cortical impact brain injury: role of brain edema in evolution of injury volume. J Neurotrauma 17:93–99, 2000 10.1089/neu.2000.17.93 )| false
Baumgart E: Application of in situ hybridization, cytochemical and immunocytochemical techniques for the investigation of peroxisomes. Histochem Cell Biol 108:185–210, 1997 Baumgart E: Application of in situ hybridization, cytochemical and immunocytochemical techniques for the investigation of peroxisomes. **Histochem Cell Biol 108:**185–210, 1997
PubMed Baumgart E: Application of in situ hybridization, cytochemical and immunocytochemical techniques for the investigation of peroxisomes. Histochem Cell Biol 108: 185– 210, 1997 Baumgart E: Application of in situ hybridization, cytochemical and immunocytochemical techniques for the investigation of peroxisomes. Histochem Cell Biol 108:185–210, 1997 10.1007/s004180050160 )| false
Dixon CE, , Clifton GL, & Lighthall JW, et al: A controlled cortical impact model of traumatic brain injury in the rat. J Neurosci Methods 39:253–262, 1991 Dixon CE, Clifton GL, Lighthall JW, et al: A controlled cortical impact model of traumatic brain injury in the rat. **J Neurosci Methods 39:**253–262, 1991
PubMed Dixon CE, Clifton GL, Lighthall JW, et al: A controlled cortical impact model of traumatic brain injury in the rat. J Neurosci Methods 39: 253– 262, 1991 Dixon CE, Clifton GL, Lighthall JW, et al: A controlled cortical impact model of traumatic brain injury in the rat. J Neurosci Methods 39:253–262, 1991 10.1016/0165-0270(91)90104-8 )| false
Ducker TB: Experimental injury of the spinal cord, in Vinken PJ, & Bruyn GW (eds): Handbook of Clinical Neurology. Vol 25: Injuries of the Spine and Spinal Cord. Part I. Amsterdam: North-Holland, 1976, pp 9–26 Ducker TB: Experimental injury of the spinal cord, in Vinken PJ, Bruyn GW (eds): Handbook of Clinical Neurology. Vol 25: Injuries of the Spine and Spinal Cord. Part I. Amsterdam: North-Holland, 1976, pp 9–26
PubMed Ducker TB: Experimental injury of the spinal cord, in Vinken PJ, Bruyn GW (eds): Handbook of Clinical Neurology. Vol 25: Injuries of the Spine and Spinal Cord. Part I. Amsterdam: North-Holland, 1976, pp 9– 26 Ducker TB: Experimental injury of the spinal cord, in Vinken PJ, Bruyn GW (eds): Handbook of Clinical Neurology. Vol 25: Injuries of the Spine and Spinal Cord. Part I. Amsterdam: North-Holland, 1976, pp 9–26 )| false
Elkjaer M, , Vajda Z, & Nejsum LN, et al: Immunolocalization of AQP9 in liver, epididymis, testis, spleen, and brain. Biochem Biophys Res Commun 276:1118–1128, 2000 Elkjaer M, Vajda Z, Nejsum LN, et al: Immunolocalization of AQP9 in liver, epididymis, testis, spleen, and brain. **Biochem Biophys Res Commun 276:**1118–1128, 2000
PubMed Elkjaer M, Vajda Z, Nejsum LN, et al: Immunolocalization of AQP9 in liver, epididymis, testis, spleen, and brain. Biochem Biophys Res Commun 276: 1118– 1128, 2000 Elkjaer M, Vajda Z, Nejsum LN, et al: Immunolocalization of AQP9 in liver, epididymis, testis, spleen, and brain. Biochem Biophys Res Commun 276:1118–1128, 2000 10.1006/bbrc.2000.3505 )| false
Feeney DM, , Boyeson MD, & Linn RT: Responses to cortical injury: I. Methodology and local effects of contusions in the rat. Brain Res 211:67–77, 1981 Feeney DM, Boyeson MD, Linn RT: Responses to cortical injury: I. Methodology and local effects of contusions in the rat. **Brain Res 211:**67–77, 1981
PubMed Feeney DM, Boyeson MD, Linn RT: Responses to cortical injury: I. Methodology and local effects of contusions in the rat. Brain Res 211: 67– 77, 1981 Feeney DM, Boyeson MD, Linn RT: Responses to cortical injury: I. Methodology and local effects of contusions in the rat. Brain Res 211:67–77, 1981 10.1016/0006-8993(81)90067-6 )| false
Frigeri A, , Gropper MA, & Turck CW, et al: Immunolocalization of the mercurial-insensitive water channel and glycerol intrinsic protein in epithelial cell plasma membranes. Proc Natl Acad Sci USA 92:4328–4331, 1995 Frigeri A, Gropper MA, Turck CW, et al: Immunolocalization of the mercurial-insensitive water channel and glycerol intrinsic protein in epithelial cell plasma membranes. **Proc Natl Acad Sci USA 92:**4328–4331, 1995
PubMed Frigeri A, Gropper MA, Turck CW, et al: Immunolocalization of the mercurial-insensitive water channel and glycerol intrinsic protein in epithelial cell plasma membranes. Proc Natl Acad Sci USA 92: 4328– 4331, 1995 Frigeri A, Gropper MA, Turck CW, et al: Immunolocalization of the mercurial-insensitive water channel and glycerol intrinsic protein in epithelial cell plasma membranes. Proc Natl Acad Sci USA 92:4328–4331, 1995 10.1073/pnas.92.10.4328 )| false
Frigeri A, , Gropper MA, & Umenishi F, et al: Localization of MIWC and GLIP water channel homologs in neuromuscular, epithelial and glandular tissues. J Cell Sci 108:2993–3002, 1995 Frigeri A, Gropper MA, Umenishi F, et al: Localization of MIWC and GLIP water channel homologs in neuromuscular, epithelial and glandular tissues. **J Cell Sci 108:**2993–3002, 1995
PubMed Frigeri A, Gropper MA, Umenishi F, et al: Localization of MIWC and GLIP water channel homologs in neuromuscular, epithelial and glandular tissues. J Cell Sci 108: 2993– 3002, 1995 Frigeri A, Gropper MA, Umenishi F, et al: Localization of MIWC and GLIP water channel homologs in neuromuscular, epithelial and glandular tissues. J Cell Sci 108:2993–3002, 1995 10.1242/jcs.108.9.2993 )| false
Fushimi K, , Uchida S, & Hara Y, et al: Cloning and expression of apical membrane water channel of rat kidney collecting tubule. Nature 361:549–552, 1993 Fushimi K, Uchida S, Hara Y, et al: Cloning and expression of apical membrane water channel of rat kidney collecting tubule. **Nature 361:**549–552, 1993
PubMed Fushimi K, Uchida S, Hara Y, et al: Cloning and expression of apical membrane water channel of rat kidney collecting tubule. Nature 361: 549– 552, 1993 Fushimi K, Uchida S, Hara Y, et al: Cloning and expression of apical membrane water channel of rat kidney collecting tubule. Nature 361:549–552, 1993 10.1038/361549a0 )| false
Hasegawa H, , Ma T, & Skach W, et al: Molecular cloning of a mercurial-insensitive water channel expressed in selected water-transporting tissues. J Biol Chem 269:5497–5500, 1994 Hasegawa H, Ma T, Skach W, et al: Molecular cloning of a mercurial-insensitive water channel expressed in selected water-transporting tissues. **J Biol Chem 269:**5497–5500, 1994
PubMed Hasegawa H, Ma T, Skach W, et al: Molecular cloning of a mercurial-insensitive water channel expressed in selected water-transporting tissues. J Biol Chem 269: 5497– 5500, 1994 Hasegawa H, Ma T, Skach W, et al: Molecular cloning of a mercurial-insensitive water channel expressed in selected water-transporting tissues. J Biol Chem 269:5497–5500, 1994 10.1016/S0021-9258(17)37486-0 )| false
Jackson PS, & Madsen JR: Identification of the volume-sensitive organic osmolyte/anion channel in human glial cells. Pediatr Neurosurg 27:286–291, 1997 Jackson PS, Madsen JR: Identification of the volume-sensitive organic osmolyte/anion channel in human glial cells. **Pediatr Neurosurg 27:**286–291, 1997
PubMed Jackson PS, Madsen JR: Identification of the volume-sensitive organic osmolyte/anion channel in human glial cells. Pediatr Neurosurg 27: 286– 291, 1997 Jackson PS, Madsen JR: Identification of the volume-sensitive organic osmolyte/anion channel in human glial cells. Pediatr Neurosurg 27:286–291, 1997 10.1159/000121272 )| false
Jung JS, , Bhat RV, & Preston GM, et al: Molecular characterization of an aquaporin cDNA from brain: candidate osmoreceptor and regulator of water balance. Proc Natl Acad Sci USA 91:13052–13056, 1994 Jung JS, Bhat RV, Preston GM, et al: Molecular characterization of an aquaporin cDNA from brain: candidate osmoreceptor and regulator of water balance. **Proc Natl Acad Sci USA 91:**13052–13056, 1994
PubMed Jung JS, Bhat RV, Preston GM, et al: Molecular characterization of an aquaporin cDNA from brain: candidate osmoreceptor and regulator of water balance. Proc Natl Acad Sci USA 91: 13052– 13056, 1994 Jung JS, Bhat RV, Preston GM, et al: Molecular characterization of an aquaporin cDNA from brain: candidate osmoreceptor and regulator of water balance. Proc Natl Acad Sci USA 91:13052–13056, 1994 10.1073/pnas.91.26.13052 )| false
Kimelberg HK: Current concepts of brain edema. Review of laboratory investigations. J Neurosurg 83:1051–1059, 1995 Kimelberg HK: Current concepts of brain edema. Review of laboratory investigations. **J Neurosurg 83:**1051–1059, 1995
Manley GT, , Fujimura M, & Ma T, et al: Aquaporin-4 deletion in mice reduces brain edema after acute water intoxication and ischemic stroke. Nat Med 6:159–163, 2000 Manley GT, Fujimura M, Ma T, et al: Aquaporin-4 deletion in mice reduces brain edema after acute water intoxication and ischemic stroke. **Nat Med 6:**159–163, 2000
PubMed Manley GT, Fujimura M, Ma T, et al: Aquaporin-4 deletion in mice reduces brain edema after acute water intoxication and ischemic stroke. Nat Med 6: 159– 163, 2000 Manley GT, Fujimura M, Ma T, et al: Aquaporin-4 deletion in mice reduces brain edema after acute water intoxication and ischemic stroke. Nat Med 6:159–163, 2000 10.1038/72256 )| false
Nagelhus EA, , Veruki ML, & Torp R, et al: Aquaporin-4 water channel protein in the rat retina and optic nerve: polarized expression in Muller cells and fibrous astrocytes. J Neurosci 18:2506–2519, 1998 Nagelhus EA, Veruki ML, Torp R, et al: Aquaporin-4 water channel protein in the rat retina and optic nerve: polarized expression in Muller cells and fibrous astrocytes. **J Neurosci 18:**2506–2519, 1998
PubMed Nagelhus EA, Veruki ML, Torp R, et al: Aquaporin-4 water channel protein in the rat retina and optic nerve: polarized expression in Muller cells and fibrous astrocytes. J Neurosci 18: 2506– 2519, 1998 Nagelhus EA, Veruki ML, Torp R, et al: Aquaporin-4 water channel protein in the rat retina and optic nerve: polarized expression in Muller cells and fibrous astrocytes. J Neurosci 18:2506–2519, 1998 10.1523/JNEUROSCI.18-07-02506.1998 )| false
Nakahama K, , Nagano M, & Fujioka A, et al: Effect of TPA on aquaporin 4 mRNA expression in cultured rat astrocytes. Glia 25:240–246, 1999 Nakahama K, Nagano M, Fujioka A, et al: Effect of TPA on aquaporin 4 mRNA expression in cultured rat astrocytes. **Glia 25:**240–246, 1999
PubMed Nakahama K, Nagano M, Fujioka A, et al: Effect of TPA on aquaporin 4 mRNA expression in cultured rat astrocytes. Glia 25: 240– 246, 1999 Nakahama K, Nagano M, Fujioka A, et al: Effect of TPA on aquaporin 4 mRNA expression in cultured rat astrocytes. Glia 25:240–246, 1999 10.1002/(SICI)1098-1136(19990201)25:3<240::AID-GLIA4>3.0.CO;2-C )| false
Nielsen S, , Nagelhus EA, & Amiry-Moghaddam M, et al: Specialized membrane domains for water transport in glial cells: high-resolution immunogold cytochemistry of aquaporin-4 in rat brain. J Neurosci 17:171–180, 1997 Nielsen S, Nagelhus EA, Amiry-Moghaddam M, et al: Specialized membrane domains for water transport in glial cells: high-resolution immunogold cytochemistry of aquaporin-4 in rat brain. **J Neurosci 17:**171–180, 1997
PubMed Nielsen S, Nagelhus EA, Amiry-Moghaddam M, et al: Specialized membrane domains for water transport in glial cells: high-resolution immunogold cytochemistry of aquaporin-4 in rat brain. J Neurosci 17: 171– 180, 1997 Nielsen S, Nagelhus EA, Amiry-Moghaddam M, et al: Specialized membrane domains for water transport in glial cells: high-resolution immunogold cytochemistry of aquaporin-4 in rat brain. J Neurosci 17:171–180, 1997 10.1523/JNEUROSCI.17-01-00171.1997 )| false
Nielsen S, , Smith BL, & Christensen EI, et al: CHIP28 water channels are localized in constitutively water-permeable segments of the nephron. J Cell Biol 120:371–383, 1993 Nielsen S, Smith BL, Christensen EI, et al: CHIP28 water channels are localized in constitutively water-permeable segments of the nephron. **J Cell Biol 120:**371–383, 1993
PubMed Nielsen S, Smith BL, Christensen EI, et al: CHIP28 water channels are localized in constitutively water-permeable segments of the nephron. J Cell Biol 120: 371– 383, 1993 Nielsen S, Smith BL, Christensen EI, et al: CHIP28 water channels are localized in constitutively water-permeable segments of the nephron. J Cell Biol 120:371–383, 1993 10.1083/jcb.120.2.371 )| false
Nielsen S, , Smith BL, & Christensen EI, et al: Distribution of the aquaporin CHIP in secretory resorptive epithelia and capillary endothelia. Proc Natl Acad Sci USA 90:7275–7279, 1993 Nielsen S, Smith BL, Christensen EI, et al: Distribution of the aquaporin CHIP in secretory resorptive epithelia and capillary endothelia. **Proc Natl Acad Sci USA 90:**7275–7279, 1993
PubMed Nielsen S, Smith BL, Christensen EI, et al: Distribution of the aquaporin CHIP in secretory resorptive epithelia and capillary endothelia. Proc Natl Acad Sci USA 90: 7275– 7279, 1993 Nielsen S, Smith BL, Christensen EI, et al: Distribution of the aquaporin CHIP in secretory resorptive epithelia and capillary endothelia. Proc Natl Acad Sci USA 90:7275–7279, 1993 10.1073/pnas.90.15.7275 )| false
Preston GM, & Agre P: Isolation of the cDNA for erythrocyte integral membrane protein of 28 kilodaltons: member of an ancient channel family. Proc Natl Acad Sci USA 88:11110–11114, 1991 Preston GM, Agre P: Isolation of the cDNA for erythrocyte integral membrane protein of 28 kilodaltons: member of an ancient channel family. **Proc Natl Acad Sci USA 88:**11110–11114, 1991
PubMed Preston GM, Agre P: Isolation of the cDNA for erythrocyte integral membrane protein of 28 kilodaltons: member of an ancient channel family. Proc Natl Acad Sci USA 88: 11110– 11114, 1991 Preston GM, Agre P: Isolation of the cDNA for erythrocyte integral membrane protein of 28 kilodaltons: member of an ancient channel family. Proc Natl Acad Sci USA 88:11110–11114, 1991 10.1073/pnas.88.24.11110 )| false
Stewart-Wallace AM: A biochemical study of cerebral tissue, and of the changes in cerebral oedema. Brain 62:426–438, 1939 Stewart-Wallace AM: A biochemical study of cerebral tissue, and of the changes in cerebral oedema. **Brain 62:**426–438, 1939
PubMed Stewart-Wallace AM: A biochemical study of cerebral tissue, and of the changes in cerebral oedema. Brain 62: 426– 438, 1939 Stewart-Wallace AM: A biochemical study of cerebral tissue, and of the changes in cerebral oedema. Brain 62:426–438, 1939 10.1093/brain/62.4.426 )| false
Taniguchi M, , Yamashita T, & Kumura E, et al: Induction of aquaporin-4 water channel mRNA after focal cerebral ischemia in rat. Brain Res Mol Brain Res 78:131–137, 2000 Taniguchi M, Yamashita T, Kumura E, et al: Induction of aquaporin-4 water channel mRNA after focal cerebral ischemia in rat. **Brain Res Mol Brain Res 78:**131–137, 2000
PubMed Taniguchi M, Yamashita T, Kumura E, et al: Induction of aquaporin-4 water channel mRNA after focal cerebral ischemia in rat. Brain Res Mol Brain Res 78: 131– 137, 2000 Taniguchi M, Yamashita T, Kumura E, et al: Induction of aquaporin-4 water channel mRNA after focal cerebral ischemia in rat. Brain Res Mol Brain Res 78:131–137, 2000 10.1016/S0169-328X(00)00084-X )| false
Vajda Z, , Promeneur D, & Dóczi T, et al: Increased aquaporin-4 immunoreactivity in rat brain in response to systemic hyponatremia. Biochem Biophys Res Commun 270:495–503, 2000 Vajda Z, Promeneur D, Dóczi T, et al: Increased aquaporin-4 immunoreactivity in rat brain in response to systemic hyponatremia. **Biochem Biophys Res Commun 270:**495–503, 2000
PubMed Vajda Z, Promeneur D, Dóczi T, et al: Increased aquaporin-4 immunoreactivity in rat brain in response to systemic hyponatremia. Biochem Biophys Res Commun 270: 495– 503, 2000 Vajda Z, Promeneur D, Dóczi T, et al: Increased aquaporin-4 immunoreactivity in rat brain in response to systemic hyponatremia. Biochem Biophys Res Commun 270:495–503, 2000 10.1006/bbrc.2000.2472 )| false
Vizuete ML, , Venero JL, & Vargas C, et al: Differential upregulation of aquaporin-4 mRNA expression in reactive astrocytes after brain injury: potential role in brain edema. Neurobiol Dis 6:245–258, 1999 Vizuete ML, Venero JL, Vargas C, et al: Differential upregulation of aquaporin-4 mRNA expression in reactive astrocytes after brain injury: potential role in brain edema. **Neurobiol Dis 6:**245–258, 1999