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67981
Table_2_Distribution, Diversity, and Abundance of Nitrite Oxidizing Bacteria in the Subterranean Estuary of the Daya Bay.docx
Published 2022“…<p>The oxidation of nitrite to nitrate as the second step of nitrification is vital for the global nitrogen cycle, and the genus Nitrospira is the most widespread nitrite-oxidizing bacteria (NOB) in diverse natural ecosystems. …”
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67982
Table_4_Distribution, Diversity, and Abundance of Nitrite Oxidizing Bacteria in the Subterranean Estuary of the Daya Bay.docx
Published 2022“…<p>The oxidation of nitrite to nitrate as the second step of nitrification is vital for the global nitrogen cycle, and the genus Nitrospira is the most widespread nitrite-oxidizing bacteria (NOB) in diverse natural ecosystems. …”
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67983
Image_2_Distribution, Diversity, and Abundance of Nitrite Oxidizing Bacteria in the Subterranean Estuary of the Daya Bay.pdf
Published 2022“…<p>The oxidation of nitrite to nitrate as the second step of nitrification is vital for the global nitrogen cycle, and the genus Nitrospira is the most widespread nitrite-oxidizing bacteria (NOB) in diverse natural ecosystems. …”
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67984
Image_1_Distribution, Diversity, and Abundance of Nitrite Oxidizing Bacteria in the Subterranean Estuary of the Daya Bay.pdf
Published 2022“…<p>The oxidation of nitrite to nitrate as the second step of nitrification is vital for the global nitrogen cycle, and the genus Nitrospira is the most widespread nitrite-oxidizing bacteria (NOB) in diverse natural ecosystems. …”
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67985
Presentation_1_Distribution, Diversity, and Abundance of Nitrite Oxidizing Bacteria in the Subterranean Estuary of the Daya Bay.pdf
Published 2022“…<p>The oxidation of nitrite to nitrate as the second step of nitrification is vital for the global nitrogen cycle, and the genus Nitrospira is the most widespread nitrite-oxidizing bacteria (NOB) in diverse natural ecosystems. …”
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67986
Table_1_Distribution, Diversity, and Abundance of Nitrite Oxidizing Bacteria in the Subterranean Estuary of the Daya Bay.docx
Published 2022“…<p>The oxidation of nitrite to nitrate as the second step of nitrification is vital for the global nitrogen cycle, and the genus Nitrospira is the most widespread nitrite-oxidizing bacteria (NOB) in diverse natural ecosystems. …”
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67987
Data_Sheet_1_Toward Sharing Brain Images: Differentially Private TOF-MRA Images With Segmentation Labels Using Generative Adversarial Networks.PDF
Published 2022“…We identified a threshold of ϵ <5 for which the performance (DSC <0.61) became unstable and not usable. …”
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67988
Heterotrophic cell growth and dry cell yield of <i>Rhodovulum sulfidophilum</i> in artificial seawater (ASW) based growth medium of different salinities, wherein 100% corresponds t...
Published 2025“…<p><b>a,</b> Growth curve and <b>b,</b> dry cell yield (g L<sup>-1</sup>) of <i>R. sulfidophilum</i> in ASW supplemented with 0.1% yeast extract and 0.5% peptone, and <b>c,</b> dry cell yield (g L<sup>-1</sup>) of <i>R. sulfidophilum</i> in ASW supplemented with 1 mM sodium acetate and 2.5 mM sodium thiosulfate in decreasing concentrations of ASW, i.e., 100%, 90%, 80%, 70%, 60%, and 50% which correspond to 3%, 2.7%, 2.4%, 2.1%, 1.8%, and 1.5% salinities respectively. …”
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67989
Image_3_Persistent Exposure to Fusobacterium nucleatum Triggers Chemokine/Cytokine Release and Inhibits the Proliferation and Osteogenic Differentiation Capabilities of Human Gingi...
Published 2019“…The direct effect of Fusobacterium nucleatum (F. nucleatum) on oral stem cells has rarely been reported. In this study, we aimed to evaluate how gingiva-derived mesenchymal stem cells (GMSCs) respond to a direct challenge with F. nucleatum. …”
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67990
Table_1_Persistent Exposure to Fusobacterium nucleatum Triggers Chemokine/Cytokine Release and Inhibits the Proliferation and Osteogenic Differentiation Capabilities of Human Gingi...
Published 2019“…The direct effect of Fusobacterium nucleatum (F. nucleatum) on oral stem cells has rarely been reported. In this study, we aimed to evaluate how gingiva-derived mesenchymal stem cells (GMSCs) respond to a direct challenge with F. nucleatum. …”
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67991
Image_6_Persistent Exposure to Fusobacterium nucleatum Triggers Chemokine/Cytokine Release and Inhibits the Proliferation and Osteogenic Differentiation Capabilities of Human Gingi...
Published 2019“…The direct effect of Fusobacterium nucleatum (F. nucleatum) on oral stem cells has rarely been reported. In this study, we aimed to evaluate how gingiva-derived mesenchymal stem cells (GMSCs) respond to a direct challenge with F. nucleatum. …”
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67992
Image_4_Persistent Exposure to Fusobacterium nucleatum Triggers Chemokine/Cytokine Release and Inhibits the Proliferation and Osteogenic Differentiation Capabilities of Human Gingi...
Published 2019“…The direct effect of Fusobacterium nucleatum (F. nucleatum) on oral stem cells has rarely been reported. In this study, we aimed to evaluate how gingiva-derived mesenchymal stem cells (GMSCs) respond to a direct challenge with F. nucleatum. …”
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67993
Honokiol induces apoptosis and autophagy in dexamethasone-resistant T-acute lymphoblastic leukemia CEM-C1 cells
Published 2024“…<b>Results:</b> Cell Counting Kit (CCK)−8 assay shows that DEX-resistant CEM-C1 cell lines were highly resistant to dexamethasone with IC50 of 364.1 ± 29.5 µM for 48 h treatment. However, upon treatment with dexamethasone in combination with 1.5 µM of honokiol for 48 h, the IC50 of CEM-C1 cells significantly decreased to 126.2 ± 12.3 µM, and the reversal fold was 2.88. …”
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67994
Image_1_Skeletal Muscle-Restricted Expression of Human SOD1 in Transgenic Mice Causes a Fatal ALS-Like Syndrome.TIF
Published 2020“…It is uncertain whether this degeneration of MNs is triggered intrinsically and is autonomous, or if the disease initiating mechanisms are extrinsic to MNs. We hypothesized that skeletal muscle is a primary site of pathogenesis in ALS that triggers MN degeneration. …”
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67995
Video_1_Skeletal Muscle-Restricted Expression of Human SOD1 in Transgenic Mice Causes a Fatal ALS-Like Syndrome.MP4
Published 2020“…It is uncertain whether this degeneration of MNs is triggered intrinsically and is autonomous, or if the disease initiating mechanisms are extrinsic to MNs. We hypothesized that skeletal muscle is a primary site of pathogenesis in ALS that triggers MN degeneration. …”
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67996
Lack of CHOP protein does not protect T17M <b><i>RHO</i></b><b> retinas from degeneration, as measured by scotopic ERG responses at 10DB.</b>
Published 2013“…<p>We analyzed 4 groups of animals (N = 6). A: The a-wave of the scotopic ERG amplitude was diminished in T17M <i>RHO</i> CHOP−/− mice at 1 month of age and the values of a-wave amplitudes were 456.3 µv ±39.7 in wild-type; 509.1 µv ±24.9 in CHOP−/−; 169.0 µv ±7.9 in T17M <i>RHO</i>; and 54.4 µv ±16.4 in T17M <i>RHO</i> CHOP−/−. …”
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67997
Age-related reduction of Na, K-ATPase immunoreactivity in the stria vascularis.
Published 2014“…<p>Sox10 (green) and Na, K-ATPase (31B) immunoreactivity (red) in the StV of a young adult (A–C) and an aged (D–F) mouse. …”
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67998
Table1_Placental treatment with insulin-like growth factor 1 via nanoparticle differentially impacts vascular remodeling factors in guinea pig sub-placenta/decidua.DOCX
Published 2023“…Additionally, there are no effective in utero treatment options for FGR. We have developed a nanoparticle to deliver human insulin-like 1 growth factor (hIGF-1) in a trophoblast-specific manner which results in increased expression of hIGF-1. …”
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67999
Complexes with Redox-Active Ligands: Synthesis, Structure, and Electrochemical and Photophysical Behavior of the Ru(II) Complex with TTF-Annulated Phenanthroline
Published 2013“…Ru(II) complexes with chelating ligands, 4′,5′-ethylenedithiotetrathiafulvenyl[4,5-<i>f</i>][1,10]phenanthroline (<b>L1</b>), 1,3-dithiole-2-thiono[4,5-<i>f</i>][1,10]phenanthroline (<b>L2</b>), and 1,3-dithiole-2-ono[4,5-<i>f</i>][1,10]phenanthroline (<b>L3</b>), have been prepared and their structural, electrochemical, and photophysical properties investigated. …”
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68000
miRNA expression microarray.
Published 2015“…<p>(A). Heat map of genome-wide miRNA profiles in five ES cell lines and hMSCs. …”