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排序方式: 共有155条查询结果,搜索用时 15 毫秒
131.
Activated carbon derived from rice husk by NaOH activation and its application in supercapacitor 总被引:1,自引:0,他引:1
Four activated carbon(AC) samples prepared from rice husk under different activation temperatures have been characterized by N2adsorption–desorption isotherms, thermogravimetric analysis(TGA–DTA), Fourier transform infrared spectroscopy(FTIR) and scanning electron microscopy(SEM). The specific surface area of AC sample reached 2681 m2 g 1under activation temperature of 800 1C. The AC samples were then tested as electrode material; the specific capacitance of the as-prepared activated carbon electrode was found to be 172.3 F g 1using cyclic voltammetry at a scan rate of 5 mV s 1and 198.4 F g 1at current density 1000 mA g 1in the charge/discharge mode.& 2014 Chinese Materials Research Society. Production and hosting by Elsevier B.V. All rights reserved. 相似文献
132.
Dosage compensation of the active X chromosome in mammals 总被引:20,自引:0,他引:20
Monosomy of the X chromosome owing to divergence between the sex chromosomes leads to dosage compensation mechanisms to restore balanced expression between the X and the autosomes. In Drosophila melanogaster, upregulation of the male X leads to dosage compensation. It has been hypothesized that mammals likewise upregulate their active X chromosome. Together with X inactivation, this mechanism would maintain balanced expression between the X chromosome and autosomes and between the sexes. Here, we show that doubling of the global expression level of the X chromosome leads to dosage compensation in somatic tissues from several mammalian species. X-linked genes are highly expressed in brain tissues, consistent with a role in cognitive functions. Furthermore, the X chromosome is expressed but not upregulated in spermatids and secondary oocytes, preserving balanced expression of the genome in these haploid cells. Upon fertilization, upregulation of the active X must occur to achieve the observed dosage compensation in early embryos. 相似文献
133.
Anh D. Nguyen 《Journal of Natural History》2017,51(39-40):2331-2343
A second Vietnamorpha species is described from Pu Mat National Park, north-central Vietnam. The new species is distinguished by the gonopod femorite being erect and cylindrically elongate; and the solenomere being completely sheathed by the solenophore, and being only exposed at the tip. The relationship between Vietnamorpha and several sulciferinine genera was analysed using a combination of a mitochondrial gene (16S rRNA) and two nuclear genes (18S and 28S rRNA). The genus Vietnamorpha is more closely related to the genus Anoplodesmus than to other sulciferinine genera.
www.zobank.org/urn:lsid:zoobank.org:pub:C8A19CFD-1329-427A-B380-08542BB25718 相似文献
134.
135.
Iain R. Murray Christopher C. West Winters R. Hardy Aaron W. James Tea Soon Park Alan Nguyen Tulyapruek Tawonsawatruk Lorenza Lazzari Chia Soo Bruno Péault 《Cellular and molecular life sciences : CMLS》2014,71(8):1353-1374
Mesenchymal stem/stromal cells (MSCs) can regenerate tissues by direct differentiation or indirectly by stimulating angiogenesis, limiting inflammation, and recruiting tissue-specific progenitor cells. MSCs emerge and multiply in long-term cultures of total cells from the bone marrow or multiple other organs. Such a derivation in vitro is simple and convenient, hence popular, but has long precluded understanding of the native identity, tissue distribution, frequency, and natural role of MSCs, which have been defined and validated exclusively in terms of surface marker expression and developmental potential in culture into bone, cartilage, and fat. Such simple, widely accepted criteria uniformly typify MSCs, even though some differences in potential exist, depending on tissue sources. Combined immunohistochemistry, flow cytometry, and cell culture have allowed tracking the artifactual cultured mesenchymal stem/stromal cells back to perivascular anatomical regions. Presently, both pericytes enveloping microvessels and adventitial cells surrounding larger arteries and veins have been described as possible MSC forerunners. While such a vascular association would explain why MSCs have been isolated from virtually all tissues tested, the origin of the MSCs grown from umbilical cord blood remains unknown. In fact, most aspects of the biology of perivascular MSCs are still obscure, from the emergence of these cells in the embryo to the molecular control of their activity in adult tissues. Such dark areas have not compromised intents to use these cells in clinical settings though, in which purified perivascular cells already exhibit decisive advantages over conventional MSCs, including purity, thorough characterization and, principally, total independence from in vitro culture. A growing body of experimental data is currently paving the way to the medical usage of autologous sorted perivascular cells for indications in which MSCs have been previously contemplated or actually used, such as bone regeneration and cardiovascular tissue repair. 相似文献
136.
Khor CC Chau TN Pang J Davila S Long HT Ong RT Dunstan SJ Wills B Farrar J Van Tram T Gan TT Binh NT Tri le T Lien le B Tuan NM Tham NT Lanh MN Nguyet NM Hieu NT Van N Vinh Chau N Thuy TT Tan DE Sakuntabhai A Teo YY Hibberd ML Simmons CP 《Nature genetics》2011,43(11):1139-1141
Hypovolemic shock (dengue shock syndrome (DSS)) is the most common life-threatening complication of dengue. We conducted a genome-wide association study of 2,008 pediatric cases treated for DSS and 2,018 controls from Vietnam. Replication of the most significantly associated markers was carried out in an independent Vietnamese sample of 1,737 cases and 2,934 controls. SNPs at two loci showed genome-wide significant association with DSS. We identified a susceptibility locus at MICB (major histocompatibility complex (MHC) class I polypeptide-related sequence B), which was within the broad MHC region on chromosome 6 but outside the class I and class II HLA loci (rs3132468, P(meta) = 4.41 × 10(-11), per-allele odds ratio (OR) = 1.34 (95% confidence interval: 1.23-1.46)). We identified associated variants within PLCE1 (phospholipase C, epsilon 1) on chromosome 10 (rs3765524, P(meta) = 3.08 × 10(-10), per-allele OR = 0.80 (95% confidence interval: 0.75-0.86)). We identify two loci associated with susceptibility to DSS in people with dengue, suggesting possible mechanisms for this severe complication of dengue. 相似文献
137.
Lemaire SA McDonald ML Guo DC Russell L Miller CC Johnson RJ Bekheirnia MR Franco LM Nguyen M Pyeritz RE Bavaria JE Devereux R Maslen C Holmes KW Eagle K Body SC Seidman C Seidman JG Isselbacher EM Bray M Coselli JS Estrera AL Safi HJ Belmont JW Leal SM Milewicz DM 《Nature genetics》2011,43(10):996-1000
Although thoracic aortic aneurysms and dissections (TAAD) can be inherited as a single-gene disorder, the genetic predisposition in the majority of affected people is poorly understood. In a multistage genome-wide association study (GWAS), we compared 765 individuals who had sporadic TAAD (STAAD) with 874 controls and identified common SNPs at a 15q21.1 locus that were associated with STAAD, with odds ratios of 1.6-1.8 that achieved genome-wide significance. We followed up 107 SNPs associated with STAAD with P < 1 × 10(-5) in the region, in two separate STAAD cohorts. The associated SNPs fall into a large region of linkage disequilibrium encompassing FBN1, which encodes fibrillin-1. FBN1 mutations cause Marfan syndrome, whose major cardiovascular complication is TAAD. This study shows that common genetic variants at 15q21.1 that probably act via FBN1 are associated with STAAD, suggesting a common pathogenesis of aortic disease in Marfan syndrome and STAAD. 相似文献
138.
Summary A moderate elevation of external (K
0
+
) (5–10 mM) induces relaxation in bovine facial and human saphenous veins. A further increase of (K
0
+
) leads to biphasic reactions (relaxation followed by contraction). Concentrations of (K
0
+
) higher than about 15 mM cause contractions only. The potassium-induced relaxation may be explained by the stimulation of an electrogenic sodium pump. 相似文献
139.
Picrotoxin-diazepam interaction in a behavioural schedule of differential reinforcement of low rates
P. Soubrié M. H. Thiébot A. Jobert 《Cellular and molecular life sciences : CMLS》1978,34(12):1621-1622
Summary In rats working in a behavioural schedule of differential reinforcement of low rates (6 or 10 sec), picrotoxin (1 mg kg–1) decreased the number of premature responses and increased (in DRL 10 sec only) the number of rewarded responses. The effect of picrotoxin was antagonized by diazepam (2 mg kg–1). In contrast to picrotoxin, strychnine (1.5 mg kg–1) increased the number of premature responses.This work was supported by a grant of I.N.S.E.R.M. (ATP 39-76-71). 相似文献
140.
Activated T cells regulate bone loss and joint destruction in adjuvant arthritis through osteoprotegerin ligand 总被引:124,自引:0,他引:124
Kong YY Feige U Sarosi I Bolon B Tafuri A Morony S Capparelli C Li J Elliott R McCabe S Wong T Campagnuolo G Moran E Bogoch ER Van G Nguyen LT Ohashi PS Lacey DL Fish E Boyle WJ Penninger JM 《Nature》1999,402(6759):304-309
Bone remodelling and bone loss are controlled by a balance between the tumour necrosis factor family molecule osteoprotegerin ligand (OPGL) and its decoy receptor osteoprotegerin (OPG). In addition, OPGL regulates lymph node organogenesis, lymphocyte development and interactions between T cells and dendritic cells in the immune system. The OPGL receptor, RANK, is expressed on chondrocytes, osteoclast precursors and mature osteoclasts. OPGL expression in T cells is induced by antigen receptor engagement, which suggests that activated T cells may influence bone metabolism through OPGL and RANK. Here we report that activated T cells can directly trigger osteoclastogenesis through OPGL. Systemic activation of T cells in vivo leads to an OPGL-mediated increase in osteoclastogenesis and bone loss. In a T-cell-dependent model of rat adjuvant arthritis characterized by severe joint inflammation, bone and cartilage destruction and crippling, blocking of OPGL through osteoprotegerin treatment at the onset of disease prevents bone and cartilage destruction but not inflammation. These results show that both systemic and local T-cell activation can lead to OPGL production and subsequent bone loss, and they provide a novel paradigm for T cells as regulators of bone physiology. 相似文献