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1.
发作性睡病是致残性白天睡眠增多的最常见原因之一,其治疗旨在减少白天睡眠增多和猝倒,改善夜间睡眠紊乱、睡眠瘫痪及与睡眠有关的幻觉。2019年,组胺H3受体拮抗剂替洛利生(Pitolisant)和多巴胺及去甲肾上腺素再摄取抑制剂索利氨酯(Solriamfetol)分别在欧盟和美国上市,前者具有促醒和抗猝倒作用,后者也有促醒作用,且戒断症状和滥用的发生率更低。目前,控释型羟丁酸钠(FT218)、低钠型羟丁酸盐(JZP-258)、选择性去甲肾上腺素再摄取抑制剂(瑞波西汀,又称AXS-12)以及莫达非尼联合氟卡尼制剂(THN102)等药物仍在开发和测试中,均可作为治疗发作性睡病相关白天睡眠增多和猝倒的潜在药物。本文重点介绍这些最近研发的发作性睡病治疗药物。  相似文献   
2.
Antioxidant preservatives prolong the quality of food and ensure the nutritional adequacy, palatability and safety of many processed foods and beverages. Effects of sodium sulfite (E221) and sorbic acid (E200) were investigated in human peripheral blood mononuclear cells (PBMC) which were purified from blood of healthy donors. Cells were stimulated with the mitogen phytohaemagglutinin in vitro, which induces proliferation of T-cells and the production of Th1-type cytokines like interferon-γ. The latter triggers enzyme indoleamine (2,3)-dioxygenase, which degrades tryptophan, and GTP cyclohydrolase I, which leads to increased neopterin production, in monocyte-derived macrophages. Sodium sulfite and sorbic acid suppressed both these biochemical changes in a dose-dependent way (P < 0.01 at 1 mM sodium sulfite and 50 mM sorbic acid). Data demonstrate a suppressive influence of sodium sulfite and sorbic acid on the activated Th1-type immune response.  相似文献   
3.
透明质酸钠对大鼠成肌细胞增殖和分化的影响   总被引:3,自引:2,他引:1  
目的 研究透明质酸钠对成肌细胞增殖和分化的影响。方法 采用酶消化法将新生SD大鼠骨骼肌组织分离、纯化、原代培养及传代培养;取第3代成肌细胞,分别加入浓度为0.05%、0.1%及0.2%的透明质酸钠溶液作为生长培养基行体外培养为实验A、B及C组,加入常规生长培养基为对照D组,观察各组成肌细胞增殖情况,并采用细胞计数及MTT法绘制生长曲线。另选择0.1%透明质酸钠融合培养基行体外成肌细胞培养,常规融合培养基作对照,观察透明质酸钠对成肌细胞分化功能的影响。结果A、B及C组成肌细胞增殖表现相似,2d时进入对数生长期,4d时均达顶峰;D组成肌细胞于3d时进入对数生长期,5d时细胞数倍增,6d时达顶峰。MTT法所测吸光度(A)值的变化反映成肌细胞的增殖情况,与细胞计数的结果一致,以B组细胞增殖作用最明显,B组A值在2~8d时均高于C、D组(P〈0.05),8d时高于A组(P〈0.05)。0.1%透明质酸钠融合培养基中的成肌细胞融合率较低且上升缓慢,7d时融合率最高,为11.7%;常规融合培养基成肌细胞融合率于6d时达到峰值,约为35.0%。结论 透明质酸钠与成肌细胞的细胞相容性较好,可以作为良好的成肌细胞培养基。  相似文献   
4.
Acupuncture analgesia (AA) caused by low frequency stimulation of the acupuncture point (AP) was abolished by hypophysectomy and adrenalectomy. Termination of the AA producing pathway from the AP to the pituitary gland was in the medial hypothalamic arcuate nucleus (M-HARN). The origin of the descending pain inhibitory system associated with AA was in the posterior HARN (P-HARN). AA in the hypophysectomized rats, and enhanced neuronal activity in the P-HARN that were abolished during acupuncture stimulation, were both restored by intraperitoneal microinjection of 0.5 mg/kg morphine or 0.1 micrograms beta-endorphin into the P-HARN during acupuncture stimulation. Of the analgesia produced by dopamine or beta-endorphin injected into the P-HARN, that caused by beta-endorphin disappeared after denervation of the M-HARN. The P-HARN neurons that responded to acupuncture stimulation also responded to iontophoretic dopamine, but not to iontophoretic morphine nor ultramicroinjected beta-endorphin. The transmission between the M-HARN and P-HARN may be dopaminergic, and beta-endorphin might presynaptically modulate this transmission. Reduction of sodium ions may have been the reason for abolition of AA after adrenalectomy.  相似文献   
5.
研究亚硫酸氢钠和氯化钠配伍使用的增敏性,建立了NaHSO3—NaCl—KIO3—KI四元无机体系测定碘盐中碘含量的新方法。测定碘的最佳条件:磷酸介质,pH 3~4,最大吸收波长479 nm,ε479=1.5×105L/(mol/cm),碘含量(以KIO3中I计)在0~2.24mg/L内符合比尔定律。用于测定食盐中碘的含量,回收率为99.49%~101.3%,结果满意。  相似文献   
6.
Severe myoclonic epilepsy (SMEI) or Dravet syndrome is caused by mutations of the SCN1A gene that encodes voltage-gated sodium channel alpha-1 subunit. Recently, we generated and characterized a knock-in (KI) mice with an SCN1A nonsense mutation that appeared in three independent SMEI patients. The SCN1A-KI mice well reproduced the SMEI disease phenotypes. Both homozygous and heterozygous knock-in mice developed epileptic seizures within the first postnatal month. In heterozygous knock-in mice, trains of evoked action potentials in inhibitory neurons exhibited pronounced spike amplitude decrement late in the burst but not in pyramidal neurons. We further showed that in wild-type mice the Nav1.1 protein is expressed dominantly in axons and moderately in somata of parbalbumin (PV) – positive inhibitory interneurons. Our immunohistochemical observations of the Nav1.1 are clearly distinct to the previous studies, and our findings has corrected the view of the Nav1.1 protein distribution. The data indicate that Nav1.1 plays critical roles in the spike output from PV interneurons and further, that the specifically altered function of these inhibitory circuits may contribute to epileptic seizures in the mice. These information should contribute to the understanding of molecular pathomechanism of SMEI and to develop its effective therapies.  相似文献   
7.
The tarantula venom peptides ProTx-I and ProTx-II inhibit voltage-gated sodium channels by shifting their voltage dependence of activation to a more positive potential, thus acting by a mechanism similar to that of potassium channel gating modifiers such as hanatoxin and VSTX1. ProTx-I and ProTx-II inhibit all sodium channel (Nav1) subtypes tested with similar potency and represent the first potent peptidyl inhibitors of TTX-resistant sodium channels. Like gating modifiers of potassium channels, ProTx-I and ProTx-II conform to the inhibitory cystine knot motif, and ProTx-II was demonstrated to bind to sodium channels in the closed state. Both toxins have been synthesized chemically, and ProTx-II, produced by recombinant means, has been used to map the interaction surface of the peptide with the Nav1.5 channel. In comparison, beta-scorpion toxins activate sodium channels by shifting the voltage dependence of activation to more negative potentials, and together these peptides represent valuable tools for exploring the gating mechanism of sodium channels.  相似文献   
8.
9.
GE 68 ((Rac.)-1-[3-(Phenylethyl)-2-benzofuryl]-2-(propylamino)-ethanol hydrochloride) is structurally related to propafenone, and exerts negative inotropic and negative chronotropic effects similar to the parent drug, but lacks any β-adrenoceptor blocking activity contrary to propafenone. Thus, the electrophysiological effects of GE 68 were studied in papillary muscles, left atria, Purkinje fibres, sinoatrial nodes and ventricular myocytes of the guinea-pig heart with the intracellular microelectrode technique and the patch-clamp technique in the cell-attached mode. The decrease of the maximum upstroke velocity (V˙max) by GE 68 (1 to 10 μM) was use- and frequency-dependent. V˙max recovered from the use-dependent block with a time constant of 4.1 ± 0.6 s. In papillary muscles and Purkinje fibres action potential duration was shortened, while it was prolonged in left atria and sinoatrial nodes. Half-maximal steady-state inactivation of the sodium channels was shifted to more negative membrane potentials (control: –91.5 ± 0.8 mV, 10 μM GE 68: –97.9 ± 2.5 mV). The peak of the current-voltage relationship and the reversal potential were not changed by GE 68. The amplitude of the unitary current remained unaltered, while open state probability was decreased. The most striking effect of GE 68 was an increase of the number of sweeps without single channel openings (1 μM: 2 fold, 10 μM: 6 fold). GE 68 also caused a decrease of the mean open times, and an increase of the mean closed times in unmodified and pronase-modified sodium channels. Besides the lack of β-adrenoceptor blocking activity, data present a faster recovery from the use-dependent block by GE 68 and a lower affinity to inactivated sodium channels compared to the reference drug propafenone, as well as differences in the effect on single channel kinetics. Received: 25 July 1996 / Accepted: 14 October 1996  相似文献   
10.
用二巯基丙磺酸钠对苯硫丹、多噻烷急性染毒小鼠进行保护解救。结果表明:二巯基丙磺酸钠对该两农药急性染毒小鼠具有显著的保护作用(P<0.05)。本实验填补了以二巯基丙磺酸钠作为首选药物治疗沙蚕毒系现有全部品种急性中毒解毒谱的空白。  相似文献   
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