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21.
Yohtaro Numachi Sumiko Yoshida Motoyasu Yamashita Ko Fujiyama Shigenobu Toda Hiroo Matsuoka Yasushi Kajii Toru Nishikawa 《Neuroscience letters》2007
Methamphetamine is a potent and indirect dopaminergic agonist which can cause chronic brain dysfunctions including drug abuse, drug dependence and drug-induced psychosis. Methamphetamine is known to trigger molecular mechanisms involved in associative learning and memory, and thereby alter patterns of synaptic connectivity. The persistent risk of relapse in methamphetamine abuse, dependence and psychosis may be caused by such alterations in synaptic connectivity. EphA5 receptors constitute large families of tyrosine kinase receptor and are expressed almost exclusively in the nervous system, especially in the limbic structures. Recent studies suggest EphA5 to be important in the topographic projection, development, and plasticity of limbic structures, and to be involved in dopaminergic neurotransmission. We used in situ hybridization to examine whether methamphetamine alters EphA5 mRNA expression in the brains of adult male Wister rats. EphA5 mRNA was widely distributed in the medial frontal cortex, cingulate cortex, piriform cortex, hippocampus, habenular nucleus and amygdala. Compared to baseline expression at 0 h, EphA5 mRNA was significantly decreased (by 20%) in the medial frontal cortex at 24 h, significantly increased (by 30%) in the amygdala at 9 and 24 h, significantly but transiently decreased (by 30%) in the habenular nucleus at 1 h after a single injection of methamphetamine. Methamphetamine did not change EphA5 mRNA expression in the cingulate cortex, piriform cortex or hippocampus. Our results that methamphetamine altered EphA5 mRNA expression in rat brain suggest methamphetamine could affect patterns of synaptic connectivity, which might be responsible for methamphetamine-induced chronic brain dysfunctions. 相似文献
22.
Nagai Y Fujikake N Ohno K Higashiyama H Popiel HA Rahadian J Yamaguchi M Strittmatter WJ Burke JR Toda T 《Human molecular genetics》2003,12(11):1253-1259
Polyglutamine (polyQ) diseases are a growing class of inherited neurodegenerative diseases including Huntington's disease, which are caused by abnormal expansions of the polyQ stretch in each unrelated disease protein. The expanded polyQ stretch is thought to confer toxic properties on the disease proteins through alteration of their conformation leading to pathogenic protein-protein interactions including oligomerization and/or aggregation. Hypothesizing that molecules with selective binding affinity to the expanded polyQ stretch may interfere with the pathogenic properties, we previously identified Polyglutamine Binding Peptide 1 (QBP1) from combinatorial peptide phage display libraries. We show here that a tandem repeat of the inhibitor peptide QBP1, (QBP1)(2), significantly suppresses polyQ aggregation and polyQ-induced neurodegeneration in the compound eye of Drosophila polyQ disease models, which express the expanded polyQ protein under the eye specific promoter. Most importantly, (QBP1)(2) expression dramatically rescues premature death of flies expressing the expanded polyQ protein in the nervous system, resulting in the dramatic increase of the median life span from 5.5 to 52 days. These results suggest that QBP1 can prevent polyQ-induced neurodegeneration in vivo. We propose that QBP1 prevents polyQ oligomerization and/or aggregation either by altering the toxic conformation of the expanded polyQ stretch, or by simply competing with the expanded polyQ stretches for binding to other expanded polyQ proteins. The peptide inhibitor QBP1 is a promising candidate with great potential as a therapeutic molecule against the currently untreatable polyQ diseases. 相似文献
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Masakatsu Takashima Wataru Tanaka Hiroki Matsuyama Hayato Tajiri Hiroyuki Sakakibara 《Nutrients》2021,13(4)
Quercetin has been shown to have anti-obesity effects, but it is unknown whether these effects can be transmitted from mothers to their progeny. In this study, we investigated whether maternal quercetin consumption during pregnancy has a protective effect on high-fat diet–induced hyper lipid levels and overweight in progeny. Female mice consumed a control diet or a diet containing 1.0% quercetin during breeding. The male progeny were then divided into four groups that were (1) sacrificed at postnatal day 3; (2) born to dams fed the control diet and also fed the control diet (C-C), (3) born to dams fed the control diet and then fed a 30% high-fat diet (C-HF), or (4) born to dams fed the Q-diet and then fed the HF diet (Q-HF). Maternal consumption of quercetin did not affect body weight or blood lipid parameters in either dams or neonates at postnatal day 3. After 13 weeks, the Q-HF group exhibited greater body and liver weights, and higher blood cholesterol levels than the C-HF group. However, the total cholesterol/ high density lipoprotein (HDL)-cholesterol ratios in the Q-HF and C-C groups remained similar. In conclusion, maternal quercetin consumption does not appear to protect the next generation from high-fat diet–induced hyper cholesterol level in the blood and liver, and consequently overweight, but may help regulate the total cholesterol/HDL-cholesterol ratio. 相似文献
27.
HIV-1-specific cell-mediated immune responses induced by DNA vaccination were enhanced by mannan-coated liposomes and inhibited by anti-interferon-gamma antibody. 总被引:2,自引:0,他引:2 下载免费PDF全文
S Toda N Ishii E Okada K I Kusakabe H Arai K Hamajima I Gorai K Nishioka K Okuda 《Immunology》1997,92(1):111-117
The adjuvant effect of mannan-coated liposomes on human immunodeficiency virus type-1 (HIV-1) DNA vaccine and the mechanism of this enhancement were studied. Coating of cationic liposomes with mannan significantly enhanced the ability of this vaccine to induce an HIV-specific delayed-type hypersensitivity (DTH) response. HIV-specific cytotoxic T-cell (CTL) activity elicited by DNA vaccination was also significantly enhanced with the mannan-liposome cocktail. This mannan-liposome-mediated activity was greatly inhibited by in vivo injection of anti-interferon (IFN)-gamma antibody, which suggests that IFN-gamma plays an important role in this HIV-specific immune response. The results of both isotype-specific antibody and cytokine analysis revealed that mannan-liposome-mediated DNA vaccination enhances Th1-mediated immunity. 相似文献
28.
Hirokazu Tsukahara Masahiro Hiraoka Masanori Kurivama Masakazu Saito Kiyoshi Morikawa Mitsuhiko Kuroda Toshiro Tominaga Masakatsu Sudo 《Pediatric nephrology (Berlin, Germany)》1993,7(2):199-201
Urinary 1-microglobulin (U-A1M) was measured in healthy term infants on days 1, 4, 7, 14, 28, 90 and 180 of life. U-A1M was high until day 14 and declined thereafter. It was significantly correlated with urinary 2-microglobulin (U-B2M) throughout the study, but not with serum A1M on days 1 or 7. Similar to U-B2M, U-A1M in the clinically stable term infants with intrauterine growth retardation (n=4–7) was not elevated on days 1–7. In the sick infants who needed immediate resuscitatio at birth (n=4–8), U-A1M as well as U-B2M was high on days 1–7 and then decreased to normal levels, suggesting that U-A1M can be used as a sensitive marker of acute proximal tubular damage and its recovery. These observations indicate that U-A1M is a useful index of proximal tubular function in early infancy. 相似文献
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Aims of this study were to functionally and histologically determine the localization of ganglia that distribute inhibitory nerves to the penile corpus cavernosum in dogs. In isolated corpus cavernosa from seven control dogs contracted with endothelin-1, transmural electrical stimulation (5 Hz for 40 s) elicited contractions which were reversed to relaxations by prazosin. The relaxation was abolished by NG-nitro-l-arginine (l-NNA), a nitric oxide (NO) synthase inhibitor, and restored by l-arginine. Parts of bilateral pelvic nerve plexuses running to the penis were surgically denervated in anesthetized three dogs, or the bilateral neuronal tissues close to the corpus cavernosum were removed for denervation in seven dogs. One week after the operation, the dogs were sacrificed. Denervation of pelvic plexus did not attenuate neurogenic relaxations, whereas denervation of the distal portion abolished the responses. In the tissues close to the corpus cavernosum excised for denervation, ganglia containing abundant nerve cells and fibers stained by nicotinamide adenine dinucleotide phosphate (NADPH) diaphorase method were histochemically detected. One week after the denervation, there were no NADPH diaphorase-positive nerve fibers in the trabecula of corpus cavernosum. It is concluded that neurogenic relaxations of canine corpus cavernosum are mediated by NO synthesized from l-arginine in nerve terminals, and this nerve is originated from ganglia located close to the corpus cavernosum but not directly from the pelvic nerve plexus. 相似文献