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61.
Christine A. Ellis Susan F. Brooks Gavin Brooks A. Tudor Evans Nicholas Morrice Fred. J. Evans Alastair Aitken 《Phytotherapy research : PTR》1987,1(4):187-190
The sapintoxins are a series of naturally occurring fluorescent phorbol esters with a range of selective biological activities (e.g. pro-inflammatory but non-tumour promoting). Their ability to activate protein kinase C (PKC) in vitro has been studied. Both tumour promoting and non-promoting phorbol derivatives activate the enzyme in vitro at low concentrations. 12-deoxyphorbol-13-phenylacetate-20 acetate (DOPPA) acts as a partial agonist in the activation of protein kinase C. Structurally distinct phorbol esters may therefore preferentially activate different forms of protein kinase C. α-sapinine, a biologically inactive compound, binds to protein kinase C without stimulating the enzyme and prevents subsequent activation by phorbol esters such as 12-O-tetradecanoyl phorbol-13-acetate (TPA). 相似文献
62.
V. EVANGELISTA G. DE BERARDIS† L. TOTANI F. AVANZINI‡ C. B. GIORDA§ L. BRERO¶ G. LEVANTESI G. MARELLI†† M. PUPILLO‡‡ G. IACUITTI‡ G. POZZOLI‡ P. DI SUMMA¶ E. NADA§ G. DE SIMONE G. DELL'ELBA C. AMORE S. MANARINI R. PECCE A. MAIONE† G. TOGNONI† A. NICOLUCCI† 《Journal of thrombosis and haemostasis》2007,5(11):2197-2203
BACKGROUND: The percentage of diabetic patients who do not benefit from the protective effect of aspirin is larger than in other populations at cardiovascular risk. OBJECTIVE: We compared the ability of aspirin to suppress TxA2 and platelet activation in vivo, in type-2 diabetics vs. high-risk non-diabetic patients. METHODS: Urinary 11-dehydro-TXB2, plasma sCD40 L, and sP-selectin were measured, together with indices of low-grade inflammation, glycemic control, and lipid profile, in 82 patients with type-2 diabetes and 39 without diabetes, treated with low doses of aspirin. RESULTS: Urinary 11-dehydro-TxB2, plasma sCD40L and sP-selectin were significantly higher in diabetics than in controls: [38.9 (27.8-63.3) vs. 28.5 (22.5-43.9) ng mmol(-1) of creatinine, P = 0.02], [1.06 (0.42-3.06) vs. 0.35 (0.22-0.95) ng mL(-1); P = 0.0001], [37.0 (16.8-85.6) vs. 20.0 (11.2-35.6) ng mL(-1), P = 0.0001], respectively. The proportion of individuals with diabetes increased across quartiles of 11-dehydro-TxB2, sCD40L, and sP-selectin, with the highest quartiles of 11-dehydro-TxB2, sCD40L and sP-selectin, including 66%, 93.3%, and 93.3% of individuals with diabetes. Markers of platelet activation positively correlated with indices of glycemic control but not with markers of low-grade inflammation. CONCLUSIONS: Platelet dysfunction associated with insufficient glycemic control, may mediate persistent platelet activation under aspirin treatment. 相似文献
63.
P. Schubert T. Ogata S. Ferroni A. McRae Y. Nakamura K. Rudolphi 《Journal of molecular neuroscience : MN》1996,28(1-3):185-190
In view of the increasing evidence that a pathological glial activation plays a significant role in the development of neurodegenerative
diseases, we investigated the underlying molecular signaling as a possible target for a pharmacological therapy. Here, we
are particularly focusing on the endogenous modulation of the Ca2+ and cyclic nucleotide-dependent signaling by the nucleoside adenosine and its reinforcement by the xanthine derivative propentofylline
(PPF). As an experimental model, we used cultured rat microglial cells and astrocytes that are immature, show a high proliferation
rate, and resemble in several aspects pathologically activated glial cells. A prolonged increase of the cellular cAMP level
favored the differentiation of cultured astrocytes and associated properties required for the physiological nerve cell function.
On the other hand, a strengthening of the cyclic nucleotide-dependent signaling inhibited potentially neurotoxic properties
of cultured microglial cells. Similar effects were obtained by treatment with propentofylline, which mimicked modulatory adenosine
effects and increased the intracellular level of cAMP and cGMP. Such a pharmacological glial cell conditioning, obtained by
modifying the strength and the timing of these second messengers, may provide a therapy of neurodegenerative diseases in which
a pathological activation of microglial cells and astrocytes is discussed to play a pathogenic role. 相似文献
64.
Klaus-Dietmar Merboldt Gunnar Krüger Wolfgang Hnicke Andreas Kleinschmidt Jens Frahm 《Magnetic resonance in medicine》1995,34(4):639-644
Functional mapping of human brain activation has been accomplished at high spatial and temporal resolution (voxel size 4.9 μl, temporal increment 100 ms). The approach was based on oxygenation-sensitive long-echo time FLASH MRI sequences synchronized to multiply repeated cycles of visual stimulation in a CINE acquisition mode. This high temporal resolution revealed that stimulus-related signal intensity changes in human visual cortex display an initial latency followed by increases extending over several seconds. Furthermore, the temporal characteristics of the complete CINE MRI signal time course depended on the absolute and relative durations of activation and control periods and, for example, caused an apparent absence of a poststimulation “undershoot” phenomenon. Complementing hyperoxygenation due to rapid hemodynamic adjustments, these results suggest signal intensity modulation by enhanced oxygen consumption and concomitant deoxygenation during prolonged and/or repetitive stimulation. 相似文献
65.
巨噬细胞是先天免疫系统的主要细胞,具有可塑性和异质性,在机体的免疫应答、组织稳态、重塑等多方面发挥重要功能。根据功能极性可分为M1(促炎)和M2(抗炎)2个亚型。M1/M2巨噬细胞在响应局部微环境的刺激反应过程中,通过改变其功能极化,获得特定的功能表型并分泌不同的细胞因子。巨噬细胞通过改变代谢重编程以适应其功能变化。M2巨噬细胞以氧化磷酸化和脂肪酸为能量代谢的主要方式,而M1巨噬细胞为无氧糖酵解。目前研究发现在心血管疾病中,巨噬细胞可能通过其功能极性变化引起巨噬细胞激活、组织浸润、释放促炎性细胞因子而参与心血管疾病的发生。本文对巨噬细胞功能极化、代谢重编程在心血管疾病中的作用进行综述。 相似文献
66.
N. Negoro Y. Kanayama T. Takeda M. Fujisawa M. Okamura T. Inoue 《Rheumatology international》1989,8(6):273-277
Summary We measured 2-plasmin inhibitor-plasmin complexes (PI-PC) in plasma of patients with systemic lupus erythematosus (SLE) to examine the plasminogen activation in SLE. The plasma PI-PC level in 23 patients with SLE was significantly higher than that in 18 normal subjects (P<0.001) and the SLE patients with nephrotic syndrome had higher plasma PI-PC levels than those without nephrotic syndrome (P<0.01). In addition, the plasma PI-PC level was significantly correlated with the level of plasma C3 breakdown products (iC3b/C3dg) in the patients with SLE (r=0.53, P<0.01). These results suggest that plasminogen is activated in plasma of patients with SLE and that the plasminogen activation may be associated with the activation of complement in SLE. 相似文献
67.
It has been demonstrated that in vivo T cell priming requires CD154-CD40 interaction, which is suggested to be critical in the induction of co-stimulatory activities on antigen-presenting cells (APC). In the current study, we demonstrate that in vivo administration of a high dose of a superantigen, staphylococcal enterotoxin A (SEA), could up-regulate B7-2 on most splenic APC independently of the CD154-CD40 interaction, followed by efficient expansion of SEA-reactive V(beta)3(+) T cells in CD154- or CD40-deficient mice. However, the CD154-CD40 interaction may be involved in SEA-mediated T cell activation, since a contribution of the CD154-CD40 interaction was observed when a lower dose of SEA was injected. CD154-independent T cell priming by SEA appeared also independent of the TRANCE-RANK pathway, which was shown to be capable of mediating CD154-independent activation of naive T cells during the infection of some viruses. These results indicate that SEA, which provokes rapid and efficient T cell responses without adjuvant, could utilize multiple CD154/TRANCE-independent pathways, to prime T cells. 相似文献
68.
69.
Ca2+-and voltage activated K+ channel in apical cell membrane of gallbladder epithelium fromTriturus
Y. Maruyama H. Matsunaga T. Hoshi 《Pflügers Archiv : European journal of physiology》1986,406(6):563-567
The presence of Ca2+- and voltage-activated K+ channels was directly demonstrated in the apical cell membrane of gallbladder epithelium by patch-clamp single-channel current recording. In K+-depolarized epithelial cells, negative pipette potentials induced outward current steps when the patch-pipette was filled with Na+-rich solution and these current steps were not affected by the presence or absence of Cl–. When K+-rich solution was in the pipette and K+-depolarized cells were examined, the current-voltage relations were linear with a single-channel conductance of 140 pS and polarity was reversed at 0 mV. In excised inside-out membrane patches, raising the free Ca2+ concentration of the medium facing the inner side of the membrane from 10–7 to 10–6 M evoked a marked increase in open state probability of the channels without affecting the elementary current steps. This suggests that intracellular Ca2+ as a second messenger plays a crucial role in the regulatory mechanism of the membrane potential by modulating the high-conductance apical K+ channels. 相似文献
70.
Bonnie B. Punske Wayne E. Cascio Connie Engle H. Troy Nagle Leonard S. Gettes Timothy A. Johnson 《Annals of biomedical engineering》1998,26(6):1010-1021
This study applied zero-delay wave number spectral estimation as a means of quantifying the changes in activation and recovery sequences of propagating plane waves on the epicardial surface of in situ porcine hearts during regional hyperkalemia and ischemia. Unipolar electrograms (104) were recorded from the left ventricular surface of nine hearts using a plaque electrode array with 1 mm spatial sampling intervals. The objectives were (1) to define a set of parameters capable of quantifying the spatial and temporal changes in measured extracellular potentials associated with localized ischemia prior to the onset of conduction block; (2) to elevate regional levels of extracellular potassium ion concentration and quantify potential changes due to this known physiologic manipulation; and (3) to use quantitative parameters to make statistical comparisons in order to distinguish wave fronts during normal, ischemic and hyperkalemic conditions. Results showed that the parameters of wave number and average temporal frequency and the associated power, as determined from the wave number spectrum, provided statistically significant (p < 0.05) quantification of changes in wave front features during normal and ischemic or hyperkalemic conditions. The results were consistent with results obtained from conventional time–space domain methods like isochronal mapping and electrograms, with the advantage of a quantitative result enabling simple comparisons and trend analysis for large numbers of heart beats. © 1998 Biomedical Engineering Society.
PAC98: 8759Wc, 8722Fy, 8780+s 相似文献