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101.
102.
Choroid plexus recovery after transient forebrain ischemia: role of growth factors and other repair mechanisms 总被引:3,自引:0,他引:3
Johanson CE Palm DE Primiano MJ McMillan PN Chan P Knuckey NW Stopa EG 《Cellular and molecular neurobiology》2000,20(2):197-216
1. Transient forebrain ischemia in adult rats, induced by 10 min of bilateral carotid occlusion and an arterial hypotension of 40 mmHg, caused substantial damage not only to CA-1 neurons in hippocampus but also to epithelial cells in lateral ventricle choroid plexus.2. When transient forebrain ischemia was followed by reperfusion (recovery) intervals of 0 to 12 hr, there was moderate to severe damage to many frond regions of the choroidal epithelium. In some areas, epithelial debris was sloughed into cerebrospinal fluid (CSF). Although some epithelial cells were disrupted and necrotic, their neighbors exhibited normal morphology. This patchy response to ischemia was probably due to regional differences in reperfusion or cellular metabolism.3. Between 12 and 24 hr postischemia, there was marked restoration of the Na+, K+, water content, and ultrastructure of the choroid plexus epithelium. Since there was no microscopical evidence for mitosis, we postulate that healthy epithelial cells either were compressed together on the villus or migrated from the choroid plexus stalk to more distal regions, in order to fill in gaps along the basal lamina caused by necrotic epithelial cell disintegration.4. Epithelial cells of mammalian choroid plexus synthesize and secrete many growth factors and other peptides that are of trophic benefit following injury to regions of the cerebroventricular system. For example, several growth factors are upregulated in choroid plexus after ischemic and traumatic insults to the central nervous system.5. The presence of numerous types of growth factor receptors in choroid plexus allows growth factor mediation of recovery processes by autocrine and paracrine mechanisms.6. The capability of choroid plexus after acute ischemia to recover its barrier and CSF formation functions is an important factor in stabilizing brain fluid balance.7. Moreover, growth factors secreted by choroid plexus into CSF are distributed by diffusion and convection into brain tissue near the ventricular system, e.g., hippocampus. By this endocrine-like mechanism, growth factors are conveyed throughout the choroid plexus–CSF–brain nexus and can consequently promote repair of ischemia-damaged tissue in the ventricular wall and underlying brain. 相似文献
103.
Mishima A Shigematsu K Harada N Himeno A Taguchi T Ishinaga Y Nabika T 《Cellular and molecular neurobiology》2000,20(6):633-652
SUMMARY
1. In situ hybridization done using a 35S-cRNA probe was carried out to obtain information on the expressions of the SA gene in brains and kidneys of the spontaneously hypertensive rat (SHR) strain obtained from the Izumo colony (/Izm) and from Charles River Laboratories (/Crj).2. In the brain, SA mRNA expression was most abundantly observed in epithelial cells of the choroid plexus. High to moderate levels was present on neurons of the CA1–CA4 pyramidal cell layer and the dentate gyrus of the hippocampus and the cerebellar Purkinje cell layer. The solitary tract nucleus and the dorsal motor nucleus of the vagus expressed the SA gene at very low levels. An increase in the expression was noted in the choroid plexus of WKY/Crj; there was no difference, however, in expression levels of other brain areas between WKY/Izm, SHR/Izm, and SHRSP/Izm, and between WKY/Crj and SHR/Crj.3. In the kidney, expression signals of SA mRNA were observed in renal medullary rays and focal cortex of WKY/Izm, SHR/Izm, SHRSP/Izm, and SHR/Crj, whereas mRNA expression in the WKY/Crj kidney was observed in medullary rays and outer strips of the outer medulla. Microscopically, hybridization signals were predominant in the proximal tubules.4. Expression densities decreased only in the kidney of WKY/Crj in 4-and 8-week-old rats, but not in the WKY/Izm kidney, compared with findings in SHR and SHRSP kidneys. These observations are in good agreement with data from Northern blot analysis.5. The SA gene expressions in the brain and the kidney seem not to relate to states of elevated blood pressure, but rather to strain differences. Abundant expressions in the brain and the kidney may mean that the SA gene plays a role in the water–electrolyte transport system. It is noteworthy that there are neuronal expressions of the SA gene in hippocampal pyramidal cells and cerebellar Purkinje cells. 相似文献
104.
105.
Establishment and characterization of a human malignant choroids plexus papilloma cell line (HIBCPP)
Ishiwata I Ishiwata C Ishiwata E Sato Y Kiguchi K Tachibana T Hashimoto H Ishikawa H 《Human cell》2005,18(1):67-72
A cell line designated "HIBSPP" was established from a human malignant choroids plexus papilloma of 29-year-old Japanese woman. This line grew well without interruption for 3 years and was subcultivated over 70 times. The cells were spindle, oval, and polygonal in shape, and neoplastic and pleomorphic features, a jigsaw puzzle-like arrangement, multilayering and forming papillary structures without contact inhibition. The cells proliferated slowly, and the population doubling time was about 69 hours. The chromosome number showed a wide distribution of aneuploidy. The mode was in the hypotetraploid range, and many marker chromosomes were observed. The culture cells were easily transplanted into the subcutis of nude mice and produced the tumor resembling the original tumor. 相似文献
106.
Chronic sympathetic denervation entails subsensitivity to alpha(2)-adrenoceptor agonists and supersensitivity to kappa- and mu-opioid receptor agonists modulating cholinergic neurons in the guinea pig colon. A possible role for signal transduction G proteins in contributing to development of these sensitivity changes was investigated. Pertussis toxin (PTX), a blocker of the G(i/o)-type family of G proteins significantly reduced the inhibitory effects of UK14,304 (alpha(2)-adrenoceptor agonist), U69593 (kappa-opioid receptor agonist) and DAMGO (mu-opioid receptor agonist) on acetylcholine (ACh) overflow in preparations obtained from normal animals, but not in those obtained from sympathetically denervated animals. In this experimental condition, immunoblot analysis revealed reduced levels of G(alphao), G(alphai2), G(alphai3) and G(beta) in myenteric plexus synaptosomes. On reverse, synaptosomal levels of G(alphai1) and G(alphaz), a PTX-insensitive G-protein, increased after chronic ablation of the sympathetic pathways. These data suggest that changes in the function and expression of inhibitory G proteins coupled to alpha(2)-adrenoceptors, kappa- and mu-opioid receptors occur in the myenteric plexus of the guinea pig colon after chronic sympathetic denervation. The possibility that regulation of G proteins represents one of the biochemical mechanisms at the basis of the changes in sensitivity of enteric cholinergic neurons to alpha(2)-adrenoceptor, kappa- and mu-opioid receptor agonists is discussed. 相似文献
107.
邓继红丰亮黄杰锋周志军杨艳 《现代生物医学进展》2011,11(19):3760-3761
目的:比较不同浓度的罗派卡因对老年患者臂丛神经感觉、运动神经阻滞起效和维持时间的影响。方法:选择60例行择期上肢手术老年患者。男38例,女21例,年龄65-78岁。ASAⅠ-Ⅲ级。随机分为两组。定时记录感觉、运动神经完全阻滞起效时间和维持时间,观察并记录术中生命体征的变化和有无并发症发生。结果:两组患者感觉和运动神经阻滞的起效时间和维持时间有极显著性差异(P<0.05),术中生命体征和并发症发生率无显著性差异。结论:0.37%相较0.25%罗哌卡因用于老年患者臂丛神经阻滞麻醉起效更快,维持时间更长,副作用风险未见增加,可常规用于老年患者的上肢手术麻醉。 相似文献
108.
109.
Fujiyoshi M Tachikawa M Ohtsuki S Ito S Uchida Y Akanuma S Kamiie J Hashimoto T Hosoya K Iwatsubo T Terasaki T 《Journal of neurochemistry》2011,118(3):407-415
Amyloid-β peptide (Aβ) concentration in CSF is potentially a diagnostic and therapeutic target for Alzheimer's disease (AD). The purpose of this study was to clarify the elimination mechanism of human Aβ(1-40) [hAβ (1-40)] from CSF. After intracerebroventricular (ICV) administration, [(125) I]hAβ(1-40) was eliminated from the rat CSF with a half-life of 17.3 min. The elimination of [(125) I]hAβ(1-40) was significantly inhibited by human receptor-associated protein (RAP) and the elimination was attenuated in either anti-low-density lipoprotein receptor-related protein (LRP)1 antibody-treated or RAP-deficient mice, suggesting that a member(s) of the low-density lipoprotein receptor gene family is involved in the elimination of hAβ(1-40) from CSF. The amounts of LRP1 and LRP2 proteins were determined by means of liquid chromatography-tandem mass spectrometry, and the LRP1 content in rat choroid plexus was determined to be 3.7 fmol/μg protein, whereas the LRP2 content was below the detection limit (<0.2 fmol/μg protein). Conditionally, immortalized rat choroid plexus epithelial cells exhibited predominant apical-to-basal and apical-to-cell transport of [(125) I]hAβ(1-40). These results indicated that hAβ(1-40) is actively eliminated from CSF and this process is at least partly mediated by LRP1 expressed at choroid plexus epithelial cells, which therefore play a role in determining CSF concentrations of hAβ(1-40). 相似文献
110.
Mathew TC 《Molecular and cellular biochemistry》2007,301(1-2):235-239
It is generally known that the luminal surface of the choroidal epithelial cells is covered with a luxuriant coat of slender
microvilli and cilia. However, extensive ultrastructural studies on the surface morphology of choroidal epithelial cells are
lacking. This study, therefore, is focused on the detailed surface morphology of the choroid plexus of the lateral ventricle
of adult Wistar rats using transmission and scanning electron microscopy. The animals were anesthetized, perfused with 0.9%
oxygenated saline followed by 3% gluteraldehyde and the choroid plexus was processed for routine electron microscopy. The
results of the ultrastructural observations presented in this study show that even the neighboring choroidal epithelial cells
may express distinct morphology. In addition to the usually described morphology of choroidal epithelial cells, in this study,
the presence of cells with uniform small blebs, crenulated or doughnut shaped structures, large mature blebs, or cells with
an extensive network of fibers were observed. Although, dissimilar surface morphology of adjacent choroidal epithelial cells
may indicate their distinct functional status, further studies are necessary to understand the physiological relevance of
the varied surface morphology of choroidal epithelial cells. 相似文献