[ASAP] Monitoring of CaCO3 Nanoscale Structuration through Real-Time Liquid Phase Transmission Electron Microscopy and Hyperpolarized NMR
Monitoring of CaCO3 Nanoscale Structuration through Real-Time Liquid Phase Transmission Electron Microscopy and Hyperpolarized NMR
Vinavadini Ramnarain, Tristan Georges, Nathaly Ortiz Pen?a, Dris Ihiawakrim, Mariana Longuinho, Herve? Bulou, Christel Gervais, Cle?ment Sanchez, Thierry Azai?s, and Ovidiu Ersen
https://pubs.acs.org/cms/10.1021/jacs.2c05731/asset/images/medium/ja2c05731_0013.gif
Journal of the American Chemical Society
DOI: 10.1021/jacs.2c05731
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08-19-2022 10:43 PM
[NMR paper] Monitoring of CaCO3 Nanoscale Structuration through Real-Time Liquid Phase Transmission Electron Microscopy and Hyperpolarized NMR
Monitoring of CaCO3 Nanoscale Structuration through Real-Time Liquid Phase Transmission Electron Microscopy and Hyperpolarized NMR
Calcium carbonate (CaCO(3)) is one of the most significant biominerals in nature. Living organisms are able to control its biomineralization by means of an organic matrix to tailor a myriad of hybrid functional materials. The soluble organic components are often proteins rich in acidic amino-acids such as l-aspartic acid. While several studies have demonstrated the influence of amino acids on the crystallization of calcium carbonate, nanoscopic insight of their...
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08-17-2022 06:05 PM
[NMR paper] Solvent Relaxation NMR: A Tool for Real-Time Monitoring Water Dynamics in Protein Aggregation Landscape
Solvent Relaxation NMR: A Tool for Real-Time Monitoring Water Dynamics in Protein Aggregation Landscape
Solvent dynamics strongly induce the fibrillation of an amyloidogenic system. Probing the solvation mechanism is crucial as it enables us to predict different proteins' functionalities, such as the aggregation propensity, structural flexibility, and toxicity. This work shows that a straightforward NMR method in conjunction with phenomenological models gives a global and qualitative picture of water dynamics at different concentrations and temperatures. Here, we study amyloid system A?40...
[NMR paper] Combining Hyperpolarized Real-Time Metabolic Imaging and NMR Spectroscopy To Identify Metabolic Biomarkers in Pancreatic Cancer.
Combining Hyperpolarized Real-Time Metabolic Imaging and NMR Spectroscopy To Identify Metabolic Biomarkers in Pancreatic Cancer.
http://www.bionmr.com//www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--pubs.acs.org-images-pubmed-acspubs.jpg Related Articles Combining Hyperpolarized Real-Time Metabolic Imaging and NMR Spectroscopy To Identify Metabolic Biomarkers in Pancreatic Cancer.
J Proteome Res. 2019 07 05;18(7):2826-2834
Authors: Dutta P, Perez MR, Lee J, Kang Y, Pratt M, Salzillo TC, Weygand J, Zacharias NM, Gammon ST, Koay EJ, Kim M,...
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07-22-2020 05:30 AM
Hyperpolarized 133Cs is a sensitive probe for real-time monitoring of biophysical environments
From The DNP-NMR Blog:
Hyperpolarized 133Cs is a sensitive probe for real-time monitoring of biophysical environments
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Karlsson, M., J.H. Ardenkjaer-Larsen, and M.H. Lerche, Hyperpolarized 133Cs is a sensitive probe for real-time monitoring of biophysical environments. Chemical Communications, 2017. 53(49): p. 6625-6628.
http://dx.doi.org/10.1039/C7CC02943H
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10-30-2017 10:19 PM
Real-time cardiac metabolism assessed with hyperpolarized [1-13C]acetate in a large-animal model
From The DNP-NMR Blog:
Real-time cardiac metabolism assessed with hyperpolarized acetate in a large-animal model
Flori, A., et al., Real-time cardiac metabolism assessed with hyperpolarized acetate in a large-animal model. Contrast Media & Molecular Imaging, 2014: p. n/a-n/a.
http://dx.doi.org/10.1002/cmmi.1618
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01-14-2015 04:22 PM
Direct enzyme-substrate affinity determination by real-time hyperpolarized (13)C-MRS
From The DNP-NMR Blog:
Direct enzyme-substrate affinity determination by real-time hyperpolarized (13)C-MRS
Friesen-Waldner, L.J., et al., Direct enzyme-substrate affinity determination by real-time hyperpolarized (13)C-MRS. Chem Commun (Camb), 2014. 50(89): p. 13801-4.
http://www.ncbi.nlm.nih.gov/pubmed/25253534