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101
Ether Cleavage Decreases the Ion Exchange Capacity of Anion Exchange Membranes
Published 2025“…Recognizing that ether cleavage introduces significant chemical changes beyond polymer fragmentation provides critical insights into its interplay with other degradation mechanisms, such as the direct reduction of cationic sites by E2 and S<sub>N</sub>2, and provides molecular-level interpretations for the concurrent effects of polymer scission and increased hydrophilicity on membrane performance.…”
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102
Ether Cleavage Decreases the Ion Exchange Capacity of Anion Exchange Membranes
Published 2025“…Recognizing that ether cleavage introduces significant chemical changes beyond polymer fragmentation provides critical insights into its interplay with other degradation mechanisms, such as the direct reduction of cationic sites by E2 and S<sub>N</sub>2, and provides molecular-level interpretations for the concurrent effects of polymer scission and increased hydrophilicity on membrane performance.…”
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103
Gridding Triboelectric Nanogenerator for Raindrop Energy Harvesting
Published 2021“…This work contributes to the raindrop mechanical energy harvesting on a large scale.…”
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104
Gridding Triboelectric Nanogenerator for Raindrop Energy Harvesting
Published 2021“…This work contributes to the raindrop mechanical energy harvesting on a large scale.…”
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108
Image 5_Large scale deletion and rebalancing within the k1C kafirin family in sorghum.tif
Published 2025“…Despite confirming a ~400-kb deletion in the k1C family of both edited lines encompassing seven active genes, no significant decrease was observed in k1C expression or compensatory increase in non-kafirin proteins. A significant increase was observed in protein-bound amino acids in both k1C-deleted lines and in both edited lines relative to unedited RTx430, which increased total seed protein in one line. …”
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109
Image 4_Large scale deletion and rebalancing within the k1C kafirin family in sorghum.tif
Published 2025“…Despite confirming a ~400-kb deletion in the k1C family of both edited lines encompassing seven active genes, no significant decrease was observed in k1C expression or compensatory increase in non-kafirin proteins. A significant increase was observed in protein-bound amino acids in both k1C-deleted lines and in both edited lines relative to unedited RTx430, which increased total seed protein in one line. …”
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110
Image 1_Large scale deletion and rebalancing within the k1C kafirin family in sorghum.tif
Published 2025“…Despite confirming a ~400-kb deletion in the k1C family of both edited lines encompassing seven active genes, no significant decrease was observed in k1C expression or compensatory increase in non-kafirin proteins. A significant increase was observed in protein-bound amino acids in both k1C-deleted lines and in both edited lines relative to unedited RTx430, which increased total seed protein in one line. …”
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111
Image 3_Large scale deletion and rebalancing within the k1C kafirin family in sorghum.tif
Published 2025“…Despite confirming a ~400-kb deletion in the k1C family of both edited lines encompassing seven active genes, no significant decrease was observed in k1C expression or compensatory increase in non-kafirin proteins. A significant increase was observed in protein-bound amino acids in both k1C-deleted lines and in both edited lines relative to unedited RTx430, which increased total seed protein in one line. …”
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112
Image 6_Large scale deletion and rebalancing within the k1C kafirin family in sorghum.tif
Published 2025“…Despite confirming a ~400-kb deletion in the k1C family of both edited lines encompassing seven active genes, no significant decrease was observed in k1C expression or compensatory increase in non-kafirin proteins. A significant increase was observed in protein-bound amino acids in both k1C-deleted lines and in both edited lines relative to unedited RTx430, which increased total seed protein in one line. …”
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Mechanisms of sodium-glucose cotransporter-2 inhibition: Insights from Large-Scale Proteomics
Published 2020“…</div><div><i><br></i></div><div><i>Results </i>Empagliflozin significantly affected levels of 43 proteins, 6 related to cardiomyocyte function (fatty acid binding protein 3 and 4 (FABPA), neurotrophic receptor tyrosine kinase (NTRK2), renin, thrombospondin-4, and leptin receptor), 5 to iron handling (ferritin heavy chain 1, transferrin receptor protein 1 (TFRC), neogenin, growth differentiation factor 2 (GDF-2), and ß2-microglobulin) and 1 to spingosine/ceramide metabolism (neutral ceramidase), a known pathway of cardiovascular disease. …”