1,721,032 research outputs found

    Road for understanding cancer stem cells: model cell lines

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    There is increasing evidence suggesting that stem cells are susceptive to carcinogenesis and, consequently, can be the origin of many cancers. Recently, the neoplastic potential of stem cells has been supported by many groups showing the existence of subpopulations with stem cell characteristics in tumor biopsies such as brain and breast. Evidence supporting the cancer stem cell hypothesis has gained impact due to progress in stem cell biology and development of new models to validate the self-renewal potential of stem cells. Recent evidence on the possible identification of cancer stem cells may offer an opportunity to use these cells as future therapeutic targets. Therefore, model systems in this field have become very important and useful. This review will focus on the state of knowledge on cancer stem cell research, including cell line models for cancer stem cells. The latter will, as models, help us both in the identification and characterization of cancer stem cells and in the further development of therapeutic strategies including tissue engineering

    Effect of hormone replacement therapy on plasma lipoproteins and apolipoproteins, endothelial function and myocardial perfusion in postmenopausal women with estrogen receptor-alpha IVS1-397C/C genotype and established coronary artery disease

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    Effect of hormone replacement (HRT) therapy on plasma lipoproteins and apolipoproteins, endothelial function and myocardial perfusion in postmenopausal women with estrogen receptor-alpha (ER-alpha) IVS1-397 C/C genotype and established coronary artery disease. Background/ Aims: Associations between various ER-a polymorphisms and clinical phenotypes have been studied, including lipid levels and coronary atherosclerosis. We studied 48 postmenopausal women to determine the effect of ER-a IVS1-397 polymorphism on the response to treatment with HRT. Methods: The study had a randomized, double-blind, placebo-controlled and crossover design. Patients were divided into two groups according to ER-alpha IVS1-397 polymorphism: CC genotype (n = 9); CT or TT genotype (n = 39). HRT was given continuously for 4 weeks, with 4-week washout periods between the treatment periods. Brachial artery Doppler and TI-201 scintigraphy were performed at the end of each treatment period. Results: HRT lowered total cholesterol, LDL-c and Apo-B levels from baseline values (all p < 0.05) and to a similar degree in CC and CT/TT genotype patients. HRT increased estradiol, HDL-c and Apo A-1 levels relative to baseline values, but to a greater degree in CC patients (p = 0.04, 0.05 and 0.04 by ANOVA, respectively). HRT increased peak forearm blood flow, brachial artery diameter during reactive hyperemia and endothelium-dependent dilation in both groups, but to a greater degree in CC patients (p = 0.03, 0.03 and 0.04 by ANOVA, respectively). Summed stress and rest scores were also more markedly reduced in CC patients (p = 0.04 and 0.05, respectively). The increase in estradiol levels was strongly correlated with the improvement in endothelium-dependent dilation (r = 0.66, p < 0.01), which in turn showed negative correlation with summed stress (r =-0.62, p < 0.01) and rest scores (r =-0.52, p < 0.05) in the CC genotype group. Conclusion: These data suggest that the improvement in endothelium-dependent dilation and the reduction in perfusion abnormalities by increasing estradiol levels with HRT in postmenopausal women with coronary artery disease may differ with respect to different genotypes, the effect being more prominent in those patients with ER-alpha IVS1-397 CC genotype. Copyright (c) 2006 S. Karger AG, Basel

    Role of TRF2 and TPP1 regulation in idiopathic recurrent pregnancy loss

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    Telomeres are the tandem repeats (TTAGGG) present at the ends of the chromosomes that ensure chromosome stability and protect chromosomes from degradation. Telomeres in somatic human cells shorten after every cellular division and are linked to the cellular senescence. In this study we have investigated telomere length and expression of shelterin genes in aborted fetus material from idiopathic recurrent pregnancy losses. Telomere length was measured using Telomere Restriction Fragment Length (TRF) analysis. The gene expression levels for important shelterin complex proteins (TRF1, TRF2, POT1, and TPP1) were determined by Real-time Quantitative Reverse Transcriptase PCR (qRT-PCR). Our results demonstrated down regulation of TRF2 and TPP1 and a strong decline in average telomere length in abort material from women suffering from idiopathic recurrent pregnancy loss. We suggest that shorter telomere length and downregulation of the major shelterin components TRF2 and TPP1 leading to telomere uncapping, might play a critical role in recurrent pregnancy loss. (C) 2019 Elsevier B.V. All rights reserved

    Oxytocin or Social Housing Alleviates Local Burn Injury in Rats

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    Background. Thermal injury may cause distant organ inflammation and multiorgan failure. Oxytocin (OT), a nonapeptide, modulates the immune and inflammatory processes. Materials and Methods. To investigate the effects of oxytocin on burn-induced tissue injury, Sprague-Dawley rats were subjected to a partial thickness burn. Immediately after burn, half of the burned rats were placed single in the cages, while others were caged in groups. All the rats then were treated with either OT (5 mu g/kg, s.c) or saline twice daily for 5 d. The control rats had no burn injury and received no treatments. On day 5, the rats were decapitated, tissue and serum samples were obtained to score the severity of damage and to assay TNF-alpha levels. Results. Burn trauma resulted in oxidative ileal damage, as evidenced by increased apoptotic rate, increased neutrophil recruitment, and enhanced lipid peroxidation. OT treatment depressed the TNF-a level and alleviated dermal degeneration, while attenuating ileal damage. Although a higher degree of skin damage was observed in the animals kept isolated following burn injury, keeping the rats in groups did not affect the level of TNF-a or the severity of dermal or ileal injury, but abolished the burn-induced elevations in ileal lipid peroxidation and myeloperoxidase activity. Moreover, OT treatment reduced the ileal apoptosis when applied to rats housed in groups, while the treatment did not alter apoptotic ratio in the isolated rats. Conclusion. Oxytocin can be considered as a potential agent in treating burn-induced distant organ injury. (C) 2010 Elsevier Inc. All rights reserved

    Nesfatin-1 alleviates extrahepatic cholestatic damage of liver in rats

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    Obstructive jaundice (OJ) can be defined as cessation of bile flow into the small intestine due to benign or malignant changes. Nesfatin-1, recently discovered anorexigenic peptide derived from nucleobindin-2 in hypothalamic nuclei, was shown to have anti-inflammatory and antiapoptotic effects. This study is aimed to investigate the therapeutic effects of nesfatin-1 on OJ in rats. Twenty-four adult male Wistar-Hannover rats were randomly assigned to three groups: sham (n = 8), control (n = 8), and nesfatin (n = 8). After bile duct ligation, the study groups were treated with saline or nesfatin-1, for 10 days. Afterward, blood and liver tissue samples were obtained for biochemical analyses, measurement of cytokines, determination of the oxidative DNA damage, DNA fragmentation, and histopathologic analyses. Alanine aminotransferase and gamma-glutamyl transferase levels were decreased after the nesfatin treatment; however, these drops were statistically non-significant compared to control group (p = 0.345, p = 0.114). Malondialdehyde levels decreased significantly in nesfatin group compared to control group (p = 0.032). Decreases in interleukin-6 and tumor necrosis factor-a levels from the liver tissue samples were not statistically significant in nesfatin group compared to control group. The level of oxidative DNA damage was lower in nesfatin group, however this result was not statistically significant (p = 0.75). DNA fragmentation results of all groups were similar. Histopathological examination revealed that there was less neutrophil infiltration, edema, bile duct proliferation, hepatocyte necrosis, basement membrane damage, and parenchymal necrosis in nesfatin compared to control group. The nesfatin-1 treatment could alleviate cholestatic liver damage caused by OJ due to its anti-inflammatory and antioxidant effects

    Oxytocin ameliorates skin damage and oxidant gastric injury in rats with thermal trauma

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    Transient splanchnic vasoconstriction following major burns causes oxidative and/or nitrosative damage in gastrointestinal tissues due to ischemia, which is followed by reperfusion injury. Oxytocin (OT), a hypothalamic nonapeptide, possesses antisecretory and antiulcer effects, facilitates wound healing and is involved in immune and inflammatory processes. To assess the possible protective effect of oxytocin (OT) against burn-induced gastric injury, Sprague-Dawley rats (250-300 g) were randomly divided into three groups as control (n = 8), OT-treated burn (n = 8) and saline-treated burn (n = 8) groups. Under anesthesia, the shaved dorsal skin of rats was exposed to 90 degrees C water for 10 s to induce burn injury covering 30% of total body surface area in a standardized manner. Either oxytocin (5 mu g/kg) or saline was administered subcutaneously immediately after and at 24 h following burn, and the rats were decapitated at 48 h. Serum samples were assayed for TNF-alpha, and stomach was taken for the determination of malondialdehyde (MDA), myeloperoxidase (MPO) activity, DNA fragmentation rate (%) and histopathological examination. MDA and MPO were assayed for products of lipid peroxidation and as an index of tissue neutrophil infiltration, respectively. When compared to control group, burn caused significant increases in gastric MDA and MPO activity and increased microscopic damage scores at 48 h (p < 0.001). Oxytocin treatment reversed the burn-induced elevations in MDA and MPO levels and reduced the gastric damage scores (p < 0.001, p < 0.01), while TNF-alpha levels, which were increased significantly at 48th h after injury (p < 0.001), were abolished with OT treatment (p < 0.001). The results of this study suggest that oxytocin may provide a therapeutic benefit in diminishing burn-induced gastric inflammation by depressing tissue neutrophil infiltration and decreasing the release of inflammatory cytokines, but requires further investigation as a potential therapeutic agent in ameliorating the systemic effects of severe burn. (C) 2007 Elsevier Ltd and ISBI. All rights reserved

    The impact of vitamin B12 deficiency on infant gut microbiota

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    Although physiologic and neurologic consequences of micronutrient deficiencies have been addressed extensively, less is known about their impact on developing gut microbiota. Vitamin B12 deficiency is a common micronutrient deficiency in infants. We aimed to analyze the gut microbial composition of exclusively breastfed infants aged between 4 and 6 months with and without vitamin B12 deficiency by 16S rRNA gene sequencing. In a subgroup of infants with vitamin B12 deficiency, stool samples are recollected and reanalyzed after vitamin B12 supplementation. A total of 88 infants' stool samples (median age 4 months [IQR 4-5], 50% males) were analyzed, of which 28 (31.8%) were vitamin B12 sufficient and 60 (68.2%) were vitamin B12 insufficient. Comparisons between vitamin B12-sufficient and vitamin B12-insufficient infants revealed no evidence of differences in the microbiota. Proteobacteria, Firmicutes, Actinobacteria, and Bacteroidetes were the most abundant phyla in all groups. There was no difference between the pre- and post-treatment composition of gut microbiota. Conclusion: Vitamin B12-deficient infants have similar gut microbial composition as vitamin B12-sufficient infants. Since the samples were collected at an early period of life and the exposure to deficiency was relatively short, it may be possible that the effects were not fully established

    Antioxidant effect of alpha-lipoic acid against ethanol-induced gastric mucosal erosion in rats

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    Background/Aims: This investigation elucidates the role of free radicals in ethanol-induced gastric mucosal erosion and the protective effect of lipoic acid. Methods: After overnight fasting, Wistar albino rats were orally treated with 1 ml of absolute ethanol to induce gastric erosion. Lipoic acid (100 mg/kg) was given orally for 3 days before ethanol administration. Mucosal damage was evaluated 1 h after ethanol administration by macroscopic examination and histological analysis. Additional tissue samples were taken for measurement of malondialdehyde, glutathione (GSH), and myelo-per oxidase activity. Production of reactive oxidants and oxidant-induced DNA fragmentation and Na+,K+-ATPase activity were also assayed in the tissue samples. Results: Generation of reactive oxygen species and lipid peroxidation associated with neutrophil infiltration play an important role in the pathogenesis of gastric mucosal damage induced by ethanol. Furthermore, oxidants depleted tissue GSH stores and impaired membrane structure as Na+,K+-ATPase activity was inhibited. On the other hand, lipoic acid treatment reversed all these biochemical indices as well as the histopathological changes induced by ethanol. Conclusion: These data suggest that lipoic acid administration effectively counteracts the deleterious effect of ethanol-induced gastric mucosal injury and attenuates gastric damage through its antioxidant effects. Copyright (C) 2008 S. Karger AG, Basel
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