190 research outputs found

    Development and distribution of the non-indigenous Pacific oyster (Crassostrea gigas) in the Dutch Wadden Sea

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    Pacific oysters (Crassostrea gigas) were first observed in the Dutch Wadden Sea near Texel in 1983. The population increased slowly in the beginning but grew exponentially from the mid-1990s onwards, although now some stabilisation seems to be occurring. They occur on a variety of substrates such as mussel beds (Mytilus edulis), shell banks, dikes and poles. After initial settlement spat may fall on older individuals and congregate to dense clumps and subsequently form reefs. Individual Pacific oysters grow 3–4 cm long in their first year and 2–3 cm in their second year. Many mussel beds (Mytilus edulis) are slowly taken over by Pacific oysters, but there are also several reports of mussel spat settling on Pacific oyster reefs. This might in the end result in combined reefs. Successful Pacific oyster spat fall seems to be related to high summer temperatures, but also after mild summers much spat can be found on old (Pacific oyster) shells. Predation is of limited importance. Mortality factors are unknown, but every now and then unexplained mass mortality occurs. The gradual spread of the Pacific oyster in the Dutch Wadden Sea is documented in the first instance based on historical and anecdotal information. At the start of the more in-depth investigation in 2002, Pacific oysters of all size classes were already present near Texel. Near Ameland the development could be followed from the first observed settlement. On dense reefs each square metre may contain more than 500 adult Pacific oysters, weighing more than 100 kg per m² fresh weigh

    Correction: Zinc is required to ensure the expression of flagella and the ability to form biofilms in Salmonella enterica sv Typhimurium

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    : Correction for 'Zinc is required to ensure the expression of flagella and the ability to form biofilms in Salmonella enterica sv Typhimurium' by Serena Ammendola et al., Metallomics, 2016, DOI: 10.1039/c6mt00108d

    Proteomic and ionomic profiling reveals significant alterations of protein expression and calcium homeostasis in cystic fibrosis cells

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    Cystic fibrosis (CF) is an autosomal recessive disorder associated with mutations of the cystic fibrosis transmembrane conductance regulator (CFTR) gene and defective chloride transport across the epithelial cell membranes. Abnormal epithelial ion transport is the primary cause of persistent airway infections and chronic inflammation in CF patients. In order to gain further insight into the mechanisms of epithelial dysfunctions linked to CFTR mutations, we performed and integrated proteomic and ionomic analysis of human bronchial epithelial IB3-1 cells and compared them with a CFTR-complemented isogenic cell line (C38). Aside from changes that were consistent with known effects related to CFTR mutations, such as differences in glycolytic and gluconeogenic pathways and unfolded protein responses, differential proteomics highlighted significant alteration of protein expression and, in particular, of the 14-3-3 signalling pathway that is known to be involved in cellular calcium (Ca) homeostasis. Of note, restoring chloride efflux by acting on Ca cellular homeostasis has been shown to be a promising therapeutic intervention for CF. Ionomic analysis showed significant changes in the IB3-1 element profile compared with C38 cells and in particular we observed an increase of intracellular Ca that significantly correlates with intracellular zinc (Zn) levels, suggesting a synergistic role of Ca and Zn influx. This finding is particularly intriguing because Zn has been reported to be effective in CF treatment increasing Ca influx. Taken together, our proteomic and ionomic data reveal that CFTR mutation sets in motion endogenous mechanisms counteracting impaired chloride transport mainly acting on epithelial ion transport and increasing intracellular Ca, suggesting potential links between protein expression and this response

    Cerebrospinal fluid levels of AFP and hCG: Validation of the analytical method and application in the diagnosis of central nervous system germ cell tumors

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    The determination of Human Chorionic Gonadotropin (hCG) and Alpha Fetoprotein (AFP) levels on serum and amniotic fluid plays a fundamental role in the diagnosis and follow-up of specific physiological or pathological conditions (e.g., pregnancy, threat of abortion or germ cell tumors). Recently, the quantification of hCG and AFP in other biological fluids has gained great attention to support the diagnosis, prognosis and follow-up of neoplastic diseases deriving from trophoblastic cells, such as germinomas. Most of the commercial kits for hCG and AFP assays are developed to be used on biological fluids such as serum/plasma and/or urine by manufacturing companies. The aim of this work was to evaluate the suitability of the analytical method certified for the use on serum, and/or amniotic fluid for the quantification of hCG and AFP in cerebrospinal fluid, carrying out an internal validation protocol. The data reported here show that the automated immunochemical method is fit for quantification of hCG and AFP in cerebrospinal fluid (CSF), allowing selective and specific diagnosis of secreting germ cell tumors. This is confirmed by the positive correlation between elevated levels of hCG or AFP and the diagnosis of brain tumors

    Effects of Dietary Supplementation of Carnosine on Mitochondrial Dysfunction, Amyloid Pathology, and Cognitive Deficits in 3xTg-AD Mice

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    BACKGROUND: The pathogenic road map leading to Alzheimer's disease (AD) is still not completely understood; however, a large body of studies in the last few years supports the idea that beside the classic hallmarks of the disease, namely the accumulation of amyloid-β (Aβ) and neurofibrillary tangles, other factors significantly contribute to the initiation and the progression of the disease. Among them, mitochondria failure, an unbalanced neuronal redox state, and the dyshomeostasis of endogenous metals like copper, iron, and zinc have all been reported to play an important role in exacerbating AD pathology. Given these factors, the endogenous peptide carnosine may be potentially beneficial in the treatment of AD because of its free-radical scavenger and metal chelating properties. METHODOLOGY: In this study, we explored the effect of L-carnosine supplementation in the 3xTg-AD mouse, an animal model of AD that shows both Aβ- and tau-dependent pathology. PRINCIPAL FINDINGS: We found that carnosine supplementation in 3xTg-AD mice promotes a strong reduction in the hippocampal intraneuronal accumulation of Aβ and completely rescues AD and aging-related mitochondrial dysfunctions. No effects were found on tau pathology and we only observed a trend toward the amelioration of cognitive deficits. CONCLUSIONS AND SIGNIFICANCE: Our data indicate that carnosine can be part of a combined therapeutic approach for the treatment of AD

    Contribution of vitamin D3 and thiols status to the outcome of COVID-19 disease in Italian pediatric and adult patients

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    The coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2 (SARSCoV-2), was declared a global pandemic by the World Health Organization (WHO) on March 2020, causing unprecedented disease with million deaths across the globe, mostly adults. Indeed, children accounted for only a few percent of cases. Italy was the first Western country struck by the COVID-19 epidemic. Increasing age, which is one of the principal risk factors for COVID-19 mortality, is associated with declined glutathione (GSH) levels. Over the last decade, several studies demonstrated that both vitamin D (VD) and GSH have immunomodulatory properties. To verify the association between VD, GSH and the outcome of COVID-19 disease, we conducted a multicenter retrospective study in 35 children and 128 adult patients with COVID-19. Our study demonstrated a hypovitaminosis D in COVID-19 patients, suggesting a possible role of low VD status in increasing the risk of COVID-19 infection and subsequent hospitalization. In addition, we find a thiol disturbance with a GSH depletion associated to the disease severity. In children, who fortunately survived, both VD and GSH levels at admission were higher than in adults, suggesting that lower VD and thiols levels upon admission may be a modifiable risk factor for adverse outcomes and mortality in hospitalized patients with COVID-19

    p63 isoforms regulate metabolism of cancer stem cells

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    p63 is an important regulator of epithelial development expressed in different variants containing (TA) or lacking (\u394N) the N-terminal transactivation domain. The different isoforms regulate stem-cell renewal and differentiation as well as cell senescence. Several studies indicate that p63 isoforms also play a role in cancer development; however, very little is known about the role played by p63 in regulating the cancer stem phenotype. Here we investigate the cellular signals regulated by TAp63 and \u394Np63 in a model of epithelial cancer stem cells. To this end, we used colon cancer stem cells, overexpressing either TAp63 or \u394Np63 isoforms, to carry out a proteomic study by chemical-labeling approach coupled to network analysis. Our results indicate that p63 is implicated in a wide range of biological processes, including metabolism. This was further investigated by a targeted strategy at both protein and metabolite levels. The overall data show that TAp63 overexpressing cells are more glycolytic-active than \u394Np63 cells, indicating that the two isoforms may regulate the key steps of glycolysis in an opposite manner. The mass-spectrometry proteomics data of the study have been deposited to the ProteomeXchange Consortium (http://proteomecentral. proteomexchange.org) via the PRIDE partner repository with data set identifiers PXD000769 and PXD000768

    Kajian Perbedaan Konsentrasi Larutan Garam Pada Perendaman Rgh Dan Vaksin Terhadap Kelulushidupan Dan Pertumbuhan Benih Ikan Lele Sangkuriang (Clarias Gariepinus)

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    Berdasarkan data KKP (2013), pencapaian produksi ikan lele pada tahun 2013 mampu melampaui target. Ikan lele merupakan ikan yang mudah dibudidayakan, sehingga banyak dilakukan penelitian agar didapatkan benih lele dengan pertumbuhan dan kelulushidupan yang lebih baik, serta tahan terhadap serangan penyakit. Penelitian ini bertujuan untuk mengetahui pengaruh konsentrasi larutan garam yang berbeda dan konsentrasi yang terbaik pada perendaman rGH dan vaksin terhadap kelulushidupan dan pertumbuhan benih lele sangkuriang. Penelitian ini dilaksanakan pada tanggal 13 November 2014 – 15 Februari 2015 di Satuan Kerja Pembenihan dan Budidaya Ikan Air Tawar (SATKER PBIAT), Siwarak, Ungaran, Semarang. Ikan uji yang digunakan adalah benih lele sangkuriang umur 12 hari. Metode yang digunakan adalah eksperimental dengan rancangan acak lengkap (RAL) 4 perlakuan dan 3 ulangan, yaitu: (A) perlakuan tanpa larutan garam, (B) konsentrasi 0,5%, (C) konsentrasi 1,0% dan (D) konsentrasi 1,5%. Pemeliharaan ikan dilakukan selama 42 hari. Variabel data yang diamati meliputi kelulushidupan, SGR, panjang mutlak, FCR, EPP dan kelulushidupan setelah uji tantang. Analisa data dengan menggunakan anova untuk mengetahui pengaruh perlakuan yang berbeda nyata, apabila hasil yang didapatkan berbeda nyata, maka dilanjutkan dengan uji duncan untuk mengetahui perlakuan yang terbaik. Hasil penelitian menunjukkan perlakuan terbaik adalah perlakuan C, dengan nilai kelulushidupan (87,00±1,00%), SGR (7,79±0,03%), nilai panjang mutlak (6,75±0,15cm), nilai FCR (0,71±0,01) dan nilai EPP (140,28±1,25%), sedangkan untuk kelulushidupan setelah uji tantang didapatkan hasil yang tidak berbeda nyata, dimana: A (93,33±5,77%), B (96,67±5,77%), C (96,67±5,77%) dan D (96,67±5,77%). Kesimpulan dari penelitian ini ialah pemberian konsentrasi larutan garam yang berbeda berpengaruh sangat nyata terhadap kelulushidupan, SGR, panjang mutlak, FCR dan EPP, namun tidak berpengaruh nyata terhadap kelulushidupan setelah uji tantang. Konsentrasi larutan garam terbaik pada penelitian ini adalah 1,0%. Based on data from KKP (2013), the achievement of the production of catfish in 2013 was able of exceeding the target. Catfish is a fish that easily cultivated, so a lot of research done to get catfish\u27s seed with better survival and growth, and it can resistant to attack of deseases. This research was aimed to find out the effect of different salt solution concentrations and the best concentration from immersion of rGH and vaccine for survival rate and growth of sangkuriang catfish\u27s seed. This research was conducted on November 13th, 2014 – February 15th, 2015 at Satuan Kerja Pembenihan dan Budidaya Ikan Air Tawar (SATKER PBIAT), Siwarak, Ungaran, Semarang. The fish that used for this research is sangkuriang catfish\u27s seed aged 12 days. Completely randomized design (CRD) was used in this research with four treatments and three replication, which treatments are: (A) without salt solution concentration, (B) Using concentration 0.5%, (C) Concentration 1.0% and (D) Concentration 1.5%. The Fishes are maintained for 42 days. Observational variable are survival rate, SGR, absolute length, FCR, EPP and survival rate after challenge test. Data analysis using anova to know the effect of treatment is significantly different, if the result is significantly different, then continue with duncan test to know the best treatment. The best result is treatment C, with survival rate (87.00±1.00%), SGR (7.79±0.03%), absolute length (6.75±0.15cm), FCR (0.71±0.01), EPP (140.28±1.25%), and for survival rate after challenge test are not significantly different, where: treatment A (93.33±5.77%), B (96.67±5.77%), C (96.67±5.77%) and D (96.67±5.77%). The conclusion of this research is giving of salt solution with different concentration take significantly effect for survival rate, SGR, absolute length, FCR and EPP, but did not take significantly effect for survival rate after challenge test. The best salt solution concentration is 1.0%
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